NZ616542B2 - 1,6-diazabicyclo[3,2,1]octan-7-one derivatives and their use in the treatment of bacterial infections - Google Patents
1,6-diazabicyclo[3,2,1]octan-7-one derivatives and their use in the treatment of bacterial infections Download PDFInfo
- Publication number
- NZ616542B2 NZ616542B2 NZ616542A NZ61654212A NZ616542B2 NZ 616542 B2 NZ616542 B2 NZ 616542B2 NZ 616542 A NZ616542 A NZ 616542A NZ 61654212 A NZ61654212 A NZ 61654212A NZ 616542 B2 NZ616542 B2 NZ 616542B2
- Authority
- NZ
- New Zealand
- Prior art keywords
- trans
- diaza
- bicyclo
- hydrazinocarbonyl
- oxo
- Prior art date
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- 208000035143 Bacterial infection Diseases 0.000 title claims abstract description 101
- 208000022362 bacterial infectious disease Diseases 0.000 title claims abstract description 101
- 238000011282 treatment Methods 0.000 title claims description 46
- LTBMTKNTTYEJSD-UHFFFAOYSA-N 1,6-diazabicyclo[3.2.1]octan-7-one Chemical class C1N2C(=O)NC1CCC2 LTBMTKNTTYEJSD-UHFFFAOYSA-N 0.000 title abstract description 4
- 150000001875 compounds Chemical class 0.000 claims abstract description 201
- 229960005256 sulbactam Drugs 0.000 claims abstract description 74
- 239000008194 pharmaceutical composition Substances 0.000 claims abstract description 72
- 239000003781 beta lactamase inhibitor Substances 0.000 claims abstract description 44
- 229940126813 beta-lactamase inhibitor Drugs 0.000 claims abstract description 44
- 229940126085 β‑Lactamase Inhibitor Drugs 0.000 claims abstract description 44
- HZZVJAQRINQKSD-UHFFFAOYSA-N Clavulanic acid Natural products OC(=O)C1C(=CCO)OC2CC(=O)N21 HZZVJAQRINQKSD-UHFFFAOYSA-N 0.000 claims abstract description 41
- HZZVJAQRINQKSD-PBFISZAISA-N clavulanic acid Chemical compound OC(=O)[C@H]1C(=C/CO)/O[C@@H]2CC(=O)N21 HZZVJAQRINQKSD-PBFISZAISA-N 0.000 claims abstract description 41
- 229960003324 clavulanic acid Drugs 0.000 claims abstract description 41
- LPQZKKCYTLCDGQ-WEDXCCLWSA-N tazobactam Chemical compound C([C@]1(C)S([C@H]2N(C(C2)=O)[C@H]1C(O)=O)(=O)=O)N1C=CN=N1 LPQZKKCYTLCDGQ-WEDXCCLWSA-N 0.000 claims abstract description 41
- 229960003865 tazobactam Drugs 0.000 claims abstract description 41
- 150000002148 esters Chemical class 0.000 claims description 152
- QAOWNCQODCNURD-UHFFFAOYSA-N sulfuric acid Substances OS(O)(=O)=O QAOWNCQODCNURD-UHFFFAOYSA-N 0.000 claims description 150
- 125000002347 octyl group Chemical group [H]C([*])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])[H] 0.000 claims description 148
- 150000003839 salts Chemical class 0.000 claims description 132
- 239000003242 anti bacterial agent Substances 0.000 claims description 126
- FKENQMMABCRJMK-RITPCOANSA-N sulbactam Chemical compound O=S1(=O)C(C)(C)[C@H](C(O)=O)N2C(=O)C[C@H]21 FKENQMMABCRJMK-RITPCOANSA-N 0.000 claims description 72
- 125000001424 substituent group Chemical group 0.000 claims description 62
- 125000000217 alkyl group Chemical group 0.000 claims description 61
- 229910052736 halogen Inorganic materials 0.000 claims description 57
- 150000002367 halogens Chemical class 0.000 claims description 57
- 239000003814 drug Substances 0.000 claims description 51
- 208000015181 infectious disease Diseases 0.000 claims description 46
- 238000004519 manufacturing process Methods 0.000 claims description 45
- 241000894006 Bacteria Species 0.000 claims description 44
- 230000002265 prevention Effects 0.000 claims description 39
- 102000006635 beta-lactamase Human genes 0.000 claims description 33
- 108090000204 Dipeptidase 1 Proteins 0.000 claims description 32
- 230000000844 anti-bacterial effect Effects 0.000 claims description 31
- 125000003118 aryl group Chemical group 0.000 claims description 31
- 125000000753 cycloalkyl group Chemical group 0.000 claims description 30
- 125000001072 heteroaryl group Chemical group 0.000 claims description 30
- 125000000623 heterocyclic group Chemical group 0.000 claims description 27
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- HVFLCNVBZFFHBT-ZKDACBOMSA-N cefepime Chemical compound S([C@@H]1[C@@H](C(N1C=1C([O-])=O)=O)NC(=O)\C(=N/OC)C=2N=C(N)SC=2)CC=1C[N+]1(C)CCCC1 HVFLCNVBZFFHBT-ZKDACBOMSA-N 0.000 claims description 26
- 229910052739 hydrogen Inorganic materials 0.000 claims description 24
- 159000000000 sodium salts Chemical class 0.000 claims description 23
- 229960000484 ceftazidime Drugs 0.000 claims description 22
- ORFOPKXBNMVMKC-DWVKKRMSSA-N ceftazidime Chemical compound S([C@@H]1[C@@H](C(N1C=1C([O-])=O)=O)NC(=O)\C(=N/OC(C)(C)C(O)=O)C=2N=C(N)SC=2)CC=1C[N+]1=CC=CC=C1 ORFOPKXBNMVMKC-DWVKKRMSSA-N 0.000 claims description 22
- 239000001257 hydrogen Substances 0.000 claims description 22
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- QTBSBXVTEAMEQO-UHFFFAOYSA-N acetic acid Substances CC(O)=O QTBSBXVTEAMEQO-UHFFFAOYSA-N 0.000 claims description 7
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- DKOQGJHPHLTOJR-WHRDSVKCSA-N cefpirome Chemical compound N([C@@H]1C(N2C(=C(C[N+]=3C=4CCCC=4C=CC=3)CS[C@@H]21)C([O-])=O)=O)C(=O)\C(=N/OC)C1=CSC(N)=N1 DKOQGJHPHLTOJR-WHRDSVKCSA-N 0.000 claims description 7
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- NNULBSISHYWZJU-LLKWHZGFSA-N ceftizoxime Chemical compound N([C@@H]1C(N2C(=CCS[C@@H]21)C(O)=O)=O)C(=O)\C(=N/OC)C1=CSC(N)=N1 NNULBSISHYWZJU-LLKWHZGFSA-N 0.000 claims description 7
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- IZXIZTKNFFYFOF-UHFFFAOYSA-N 2-Oxazolidone Chemical compound O=C1NCCO1 IZXIZTKNFFYFOF-UHFFFAOYSA-N 0.000 claims description 5
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- 229920001184 polypeptide Polymers 0.000 claims description 5
- 108090000765 processed proteins & peptides Proteins 0.000 claims description 5
- 102000004196 processed proteins & peptides Human genes 0.000 claims description 5
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- 150000003456 sulfonamides Chemical class 0.000 claims description 5
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- FUBFWTUFPGFHOJ-UHFFFAOYSA-N 2-nitrofuran Chemical class [O-][N+](=O)C1=CC=CO1 FUBFWTUFPGFHOJ-UHFFFAOYSA-N 0.000 claims description 4
- QYQDKDWGWDOFFU-IUODEOHRSA-N Cefotiam Chemical compound CN(C)CCN1N=NN=C1SCC1=C(C(O)=O)N2C(=O)[C@@H](NC(=O)CC=3N=C(N)SC=3)[C@H]2SC1 QYQDKDWGWDOFFU-IUODEOHRSA-N 0.000 claims description 4
- GNWUOVJNSFPWDD-XMZRARIVSA-M Cefoxitin sodium Chemical compound [Na+].N([C@]1(OC)C(N2C(=C(COC(N)=O)CS[C@@H]21)C([O-])=O)=O)C(=O)CC1=CC=CS1 GNWUOVJNSFPWDD-XMZRARIVSA-M 0.000 claims description 4
- 108010028921 Lipopeptides Proteins 0.000 claims description 4
- 150000001768 cations Chemical group 0.000 claims description 4
- 229960003972 cefacetrile Drugs 0.000 claims description 4
- RRYMAQUWDLIUPV-BXKDBHETSA-N cefacetrile Chemical compound S1CC(COC(=O)C)=C(C(O)=O)N2C(=O)[C@@H](NC(=O)CC#N)[C@@H]12 RRYMAQUWDLIUPV-BXKDBHETSA-N 0.000 claims description 4
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- QYIYFLOTGYLRGG-GPCCPHFNSA-N cefaclor Chemical compound C1([C@H](C(=O)N[C@@H]2C(N3C(=C(Cl)CS[C@@H]32)C(O)=O)=O)N)=CC=CC=C1 QYIYFLOTGYLRGG-GPCCPHFNSA-N 0.000 claims description 4
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- AFZFFLVORLEPPO-UVYJNCLZSA-N cefditoren pivoxil Chemical compound S([C@@H]1[C@@H](C(N1C=1C(=O)OCOC(=O)C(C)(C)C)=O)NC(=O)\C(=N/OC)C=2N=C(N)SC=2)CC=1\C=C/C=1SC=NC=1C AFZFFLVORLEPPO-UVYJNCLZSA-N 0.000 claims description 4
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- LQCLVBQBTUVCEQ-QTFUVMRISA-N troleandomycin Chemical compound O1[C@@H](C)[C@H](OC(C)=O)[C@@H](OC)C[C@@H]1O[C@@H]1[C@@H](C)C(=O)O[C@H](C)[C@H](C)[C@H](OC(C)=O)[C@@H](C)C(=O)[C@@]2(OC2)C[C@H](C)[C@H](O[C@H]2[C@@H]([C@H](C[C@@H](C)O2)N(C)C)OC(C)=O)[C@H]1C LQCLVBQBTUVCEQ-QTFUVMRISA-N 0.000 description 1
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- WVPSKSLAZQPAKQ-CDMJZVDBSA-N trovafloxacin Chemical compound C([C@H]1[C@@H]([C@H]1C1)N)N1C(C(=CC=1C(=O)C(C(O)=O)=C2)F)=NC=1N2C1=CC=C(F)C=C1F WVPSKSLAZQPAKQ-CDMJZVDBSA-N 0.000 description 1
- 208000019206 urinary tract infection Diseases 0.000 description 1
- 230000001018 virulence Effects 0.000 description 1
- 239000000080 wetting agent Substances 0.000 description 1
- 239000002132 β-lactam antibiotic Substances 0.000 description 1
Classifications
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- A—HUMAN NECESSITIES
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- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/16—Amides, e.g. hydroxamic acids
- A61K31/165—Amides, e.g. hydroxamic acids having aromatic rings, e.g. colchicine, atenolol, progabide
- A61K31/167—Amides, e.g. hydroxamic acids having aromatic rings, e.g. colchicine, atenolol, progabide having the nitrogen of a carboxamide group directly attached to the aromatic ring, e.g. lidocaine, paracetamol
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/40—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with one nitrogen as the only ring hetero atom, e.g. sulpiride, succinimide, tolmetin, buflomedil
- A61K31/407—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with one nitrogen as the only ring hetero atom, e.g. sulpiride, succinimide, tolmetin, buflomedil condensed with other heterocyclic ring systems, e.g. ketorolac, physostigmine
-
- A—HUMAN NECESSITIES
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/41—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
- A61K31/425—Thiazoles
- A61K31/427—Thiazoles not condensed and containing further heterocyclic rings
-
- A—HUMAN NECESSITIES
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/41—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
- A61K31/425—Thiazoles
- A61K31/429—Thiazoles condensed with heterocyclic ring systems
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- A—HUMAN NECESSITIES
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- A61K31/41—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
- A61K31/425—Thiazoles
- A61K31/429—Thiazoles condensed with heterocyclic ring systems
- A61K31/43—Compounds containing 4-thia-1-azabicyclo [3.2.0] heptane ring systems, i.e. compounds containing a ring system of the formula, e.g. penicillins, penems
-
- A—HUMAN NECESSITIES
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- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/439—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom the ring forming part of a bridged ring system, e.g. quinuclidine
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- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/44—Non condensed pyridines; Hydrogenated derivatives thereof
- A61K31/445—Non condensed piperidines, e.g. piperocaine
- A61K31/4523—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems
- A61K31/4545—Non condensed piperidines, e.g. piperocaine containing further heterocyclic ring systems containing a six-membered ring with nitrogen as a ring hetero atom, e.g. pipamperone, anabasine
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
- A61K31/496—Non-condensed piperazines containing further heterocyclic rings, e.g. rifampin, thiothixene or sparfloxacin
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- A61K31/33—Heterocyclic compounds
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- A61K31/495—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with two or more nitrogen atoms as the only ring heteroatoms, e.g. piperazine or tetrazines
- A61K31/505—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim
- A61K31/529—Pyrimidines; Hydrogenated pyrimidines, e.g. trimethoprim forming part of bridged ring systems
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/535—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one oxygen as the ring hetero atoms, e.g. 1,2-oxazines
- A61K31/5375—1,4-Oxazines, e.g. morpholine
- A61K31/5377—1,4-Oxazines, e.g. morpholine not condensed and containing further heterocyclic rings, e.g. timolol
-
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- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/54—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one sulfur as the ring hetero atoms, e.g. sulthiame
- A61K31/542—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one sulfur as the ring hetero atoms, e.g. sulthiame ortho- or peri-condensed with heterocyclic ring systems
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- A—HUMAN NECESSITIES
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- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
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- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/54—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one sulfur as the ring hetero atoms, e.g. sulthiame
- A61K31/542—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one sulfur as the ring hetero atoms, e.g. sulthiame ortho- or peri-condensed with heterocyclic ring systems
- A61K31/545—Compounds containing 5-thia-1-azabicyclo [4.2.0] octane ring systems, i.e. compounds containing a ring system of the formula:, e.g. cephalosporins, cefaclor, or cephalexine
- A61K31/546—Compounds containing 5-thia-1-azabicyclo [4.2.0] octane ring systems, i.e. compounds containing a ring system of the formula:, e.g. cephalosporins, cefaclor, or cephalexine containing further heterocyclic rings, e.g. cephalothin
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- A61K45/06—Mixtures of active ingredients without chemical characterisation, e.g. antiphlogistics and cardiaca
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- A—HUMAN NECESSITIES
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D471/00—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00
- C07D471/02—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed system contains two hetero rings
- C07D471/08—Bridged systems
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
Abstract
Disclosed herein are 1,6-diazabicyclo[3,2,1]octan-7-one compounds of Formula (I), wherein the substituents are as defined in the specification, which are suitable for treating or preventing bacterial infection of a subject. Also disclosed is a pharmaceutical composition comprising a compound of formula (I) and a beta-lactamase inhibitor selected from the group consisting of sulbactam, tazobactam, or clavulanic acid. Examples of a compound of formula (I) are: Trans-sulfuric acid mono-[2-(N’-[(R)-piperidin-3-carbonyl]-hydrazinocarbonyl)-7-oxo-1,6-diazabicyclo[3,2,1]oct-6-yl] ester trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidin-3-carbonyl]-hydrazinocarbonyl)-7-oxo-1,6- diaza-bicyclo[3,2,1]oct-6-yl] ester mula (I) and a beta-lactamase inhibitor selected from the group consisting of sulbactam, tazobactam, or clavulanic acid. Examples of a compound of formula (I) are: Trans-sulfuric acid mono-[2-(N’-[(R)-piperidin-3-carbonyl]-hydrazinocarbonyl)-7-oxo-1,6-diazabicyclo[3,2,1]oct-6-yl] ester trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidin-3-carbonyl]-hydrazinocarbonyl)-7-oxo-1,6- diaza-bicyclo[3,2,1]oct-6-yl] ester
Description
,6- Diazabicyclo [3,2,1] OctanOne Derivatives and Their Use in the
Treatment of Bacterial Infections
RELATED PATENT APPLICATIONS
This application claims the benefit of Indian Provisional Patent Application No.
2412/MUM/2011 filed on August 27, 2011, the disclosures of which are incorporated herein
by reference in its entirety as if fully rewritten herein. All references including patents, patent
applications, and literature cited in the specification are expressly incorporated herein by
reference in their entirety.
FIELD OF THE INVENTION
The invention relates to nitrogen containing compounds, their preparation and their
use in preventing and/or treating bacterial infections.
BACKGROUND OF THE INVENTION
Emergence of bacterial resistance to known antibacterial agents is becoming a major
challenge in treating bacterial infections. One way forward to treat bacterial infections, and
especially those caused by resistant bacteria, is to develop newer antibacterial agents that can
overcome the bacterial resistance. Coates et al. (Br. J. Pharmacol. 2007; 152(8 ), 1147–1154.)
have reviewed novel approaches to developing new antibiotics. However, the development of
new antibacterial agents is a challenging task. For example, Gwynn et al. ( Annals of the New
York Academy of Sciences, 2010, 1213: 5–19) have reviewed the challenges in the discovery
of antibacterial agents.
Several antibacterial agents have been described in the prior art (for example, see PCT
International Application Nos. , ,
, , ,
and ). However, there remains a need for potent antibacterial agents for
preventing and/or treating bacterial infections, including those caused by bacteria that are
resistant to known antibacterial agents.
The inventors have surprisingly discovered nitrogen containing compounds with
antibacterial properties.
SUMMARY OF THE INVENTION
Accordingly there are provided nitrogen containing compounds, methods for
preparation of these compounds, pharmaceutical compositions comprising these compounds,
and method for preventing or treating bacterial infection in a subject using these compounds.
In one general aspect, there are provided compounds of Formula (I):
Formula (I)
or a stereoisomer or a pharmaceutically acceptable salt thereof;
wherein:
R is:
(a) hydrogen,
(b) (CO) -R ,
(c) COOR , or
(d) COCH COR
n is 0, 1 or 2;
R is:
(a) SO M,
(b) SO NH ,
(c) PO M,
(d) CH COOM,
(e) CF COOM,
(f) CHFCOOM, or
(g) CF ;
M is hydrogen or a cation;
R is:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents
independently selected from halogen, OR , CN, COOR , CONR R , NR R ,
5 6 7 6 7
NR COR , NR CONR R heterocyclyl, heteroaryl, cycloalkyl or aryl,
8 5 6 7,
(c) CN,
(d) NR R ,
(e) CONR R ,
(f) NHCONR R ,
(g) aryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 6 7
(h) heterocyclyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, NHC(NH)NR R
6 7 2 2 2 2 6 7,
or NHCONR R ,
(i) heteroaryl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
6 7 2 2 2 2 6 7
(j) cycloalkyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
6 7 2 2 2 2 6 7
(k) cycloalkyl substituted with C -C alkyl wherein C -C alkyl is further
1 6 1 6
substituted with one or more substituents independently selected from OR ,
NR R , halogen, CN, or CONR R , or
6 7 6 7
(l) OR ;
R is:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents
independently selected from halogen, OR , CN, COOR , CONR R , NR R ,
5 6 7 6 7
NR COR , heterocyclyl, heteroaryl, cycloalkyl or aryl,
(c) aryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 6 7
(d) heterocyclyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
6 7 2 2 2 2 6 7
(e) heteroaryl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
6 7 2 2 2 2 6 7
(f) cycloalkyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 6 7
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ;
6 7 2 2 2 2 6 7
R and R are each independently:
(a) hydrogen, or
(b) C -C alkyl optionally substituted with one or more substituents
independently selected from halogen, CN, CONR R , NR R , heterocyclyl,
6 7 6 7
heteroaryl, cycloalkyl or aryl;
R and R are each independently:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents
independently selected from halogen, OR , CN, COOR , CONR R , NR R ,
5 5 8 5 8
NR COR , heterocyclyl, heteroaryl, cycloalkyl or aryl,
(c) aryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 5 8 5 8 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 5 8
(d) heterocyclyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 5 8
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
8 2 2 2 2 5 8
(e) heteroaryl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 5 8
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
8 2 2 2 2 5 8
(f) cycloalkyl optionally substituted with one or more substituents
independently selected from C -C alkyl, OR , NR R , halogen, CN,
1 6 5 5 8
CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
8 2 2 2 2 5 8
(g) R and R are joined together to form a four to seven member ring.
In another general aspect, there are provided pharmaceutical compositions comprising
a compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
In another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising a compound
of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising a compound
of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof.
In another general aspect, there are provided pharmaceutical compositions
comprising: (a) a compound of Formula (I), or a stereoisomer or a pharmaceutically
acceptable salt thereof, and (b) at least one beta-lactamase inhibitor selected from sulbactam,
tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof.
In another general aspect, there are provided pharmaceutical compositions
comprising: (a) a compound of Formula (I), or a stereoisomer or a pharmaceutically
acceptable salt thereof, and (b) at least one antibacterial agent or a pharmaceutically
acceptable derivative thereof.
In another general aspect, there are provided pharmaceutical compositions
comprising: (a) a compound of Formula (I), or a stereoisomer or a pharmaceutically
acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected from sulbactam,
tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c) at
least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic
acid, or a pharmaceutically acceptable derivative thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic
acid, or a pharmaceutically acceptable derivative thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof, (b)
at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or
a pharmaceutically acceptable derivative thereof, and (c) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof, (b)
at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or
a pharmaceutically acceptable derivative thereof, and (c) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In another general aspect, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof, and (c) at least one antibacterial agent or a pharmaceutically acceptable derivative
thereof.
In yet another general aspect, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof, and (c) at least one antibacterial agent or a pharmaceutically acceptable derivative
thereof.
In another general aspect, there are provided methods for increasing antibacterial
effectiveness of a antibacterial agent in a subject, said method comprising co-administering
said antibacterial agent or a pharmaceutically acceptable derivative thereof with a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
The invention also provides the use of a compound as hereinbefore described, for the
manufacture of a medicament for the prevention or treatment of a bacterial infection in a
subject.
The infection may be caused by bacteria producing one or more beta-lactamase
enzymes.
The invention also provides the use of: (a ) a compound of Formula (I) as hereinbefore
described or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one
beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) a compound as hereinbefore described, or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-( N ’-[(R )-
piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R ) -
pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of: ( a ) a compound of Formula ( I) as hereinbefore
described or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one
antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of
a medicament for the prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: ( a ) a compound as hereinbefore described or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial
agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a
medicament for the prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) a compound as hereinbefore described or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial
agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a
medicament for the prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-(N ’-[( R )-
piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial
agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a
medicament for the prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-( N ’-[(R )-
pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial
agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a
medicament for the prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R ) -
piperidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) cefepime or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R ) -
pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) cefepime or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-( N ’-[(R )-
piperidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) sulbactam or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-( N ’-[( R )-
pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) sulbactam or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: ( a ) a compound of Formula (I) as hereinbefore
described or a stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one
beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a
pharmaceutically acceptable derivative thereof, and (c ) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the
prevention or treatment of a bacterial infection in a subject.
The invention also provides the use of: ( a ) a compound as hereinbefore described, or a
stereoisomer or a pharmaceutically acceptable salt thereof; ( b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of: ( a ) trans-sulfuric acid mono-[2-(N ’-[(R ) -
piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R )-
pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase
inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically
acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically
acceptable derivative thereof, for the manufacture of a medicament for the prevention or
treatment of a bacterial infection in a subject.
The invention also provides the use of a compound as hereinbefore described, or a
stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a
medicament for increasing antibacterial effectiveness of a antibacterial agent in a subject.
The invention also provides the use of trans-sulfuric acid mono-[2-(N ’-[(R ) - piperidin-
3-carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a
medicament for increasing antibacterial effectiveness of a antibacterial agent in a subject.
The invention also provides the use of trans-sulfuric acid mono-[2-( N ’-[(R )-
pyrrolidincarbonyl]-hydrazinocarbonyl)- 7-oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a
stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a
medicament for increasing antibacterial effectiveness of a antibacterial agent in a subject.
The antibacterial agent may be selected from a group consisting of aminoglycosides,
ansamycins, carbacephems, cephalosporins, cephamycins, lincosamides, lipopeptides,
macrolides, monobactams, nitrofurans, penicillins, polypeptides, quinolones, sulfonamides,
tetracyclines, or oxazolidinone antibacterial agents.
The antibacterial agent may be a beta-lactam antibacterial agent.
The antibacterial agent may be selected from a group consisting of penicillins,
penems, carbapenems, cephalosporins, and monobactams.
The antibacterial agent may be a cephalosporin antibiotic selected from a group
consisting of cephalothin, cephaloridine, cefaclor, cefadroxil, cefamandole, cefazolin,
cephalexin, cephradine, ceftizoxime, cefoxitin, cephacetrile, cefotiam, cefotaxime,
cefsulodin, cefoperazone, ceftizoxime, cefmenoxime, cefmetazole, cephaloglycin, cefonicid,
cefodizime, cefpirome, ceftazidime, ceifriaxone, cefpiramide, cefbuperazone, cefozopran,
cefepime, cefoselis, cefluprenam, cefuzonam, cefpimizole, cefclidin, cefixime, ceftibuten,
cefdinir, cefpodoxime axetil, cefpodoxime proxetil, cefteram pivoxil, cefetamet pivoxil,
cefcapene pivoxil or cefditoren pivoxil, cefuroxime, cefuroxime axetil, loracarbacef,
ceftaroline and latamoxef.
The antibacterial agent may be selected from a group consisting of ceftazidime,
cefepime, cefpirome, piperacillin doripenem, meropenem, imipenem, ceftaroline and
ceftolozane.
The infection may be caused by bacteria producing one or more beta-lactamase
enzymes.
The details of one or more embodiments of the invention are set forth in the
description below. Other features, objects and advantages of the invention will be apparent
from the following description including claims.
DETAILED DESCRIPTION OF THE INVENTION
Reference will now be made to the exemplary embodiments, and specific language
will be used herein to describe the same. It should nevertheless be understood that no
limitation of the scope of the invention is thereby intended. Alterations and further
modifications of the inventive features illustrated herein, and additional applications of the
principles of the invention as illustrated herein, which would occur to one skilled in the
relevant art and having possession of this disclosure, are to be considered within the scope of
the invention. It must be noted that, as used in this specification and the appended claims, the
singular forms "a," "an," and "the" include plural referents unless the content clearly dictates
otherwise. All references including patents, patent applications, and literature cited in the
specification are expressly incorporated herein by reference in their entirety.The inventors
have surprisingly discovered novel nitrogen containing compounds having antibacterial
properties.
The term “C -C alkyl” as used herein refers to branched or unbranched acyclic
hydrocarbon radical with 1 to 6 carbon atoms. Typical, non-limiting examples of “C -C
alkyl” include methyl, ethyl, n-propyl, iso-propyl, n-butyl, iso-butyl, tert-butyl, n-pentyl, iso-
pentyl, n-hexyl and the like. The “C -C alkyl” may be unsubstituted, or substituted with one
or more substituents. Typical, non-limiting examples of such substituents include halogen,
alkoxy, CN, COOH, CONH , OH, -NH , -NHCOCH , cycloalkyl, heterocyclyl, heteroaryl,
2 2 3
aryl and the like.
The term “cycloalkyl” as used herein refers to three to seven member cyclic
hydrocarbon radicals. The cycloalkyl group optionally incorporates one or more double or
triple bonds, or a combination of double bonds and triple bonds, but which is not aromatic.
Typical, non-limiting examples of cycloalkyl groups include cyclopropane, cyclobutane,
cyclopentane, cyclohexane, and cycloheptane. The cycloalkyl may be unsubstituted, or
substituted with one or more substituents. Typical, non-limiting examples of such
substituents include C -C alkyl, halogen, alkoxy, CN, COOH, CONH , OH, NH ,
1 6 2 2
NHCOCH , heterocyclyl, heteroaryl, aryl, SO -alkyl, SO -aryl, OSO -alkyl, -OSO -aryl and
3 2 2 2 2
the like.
The term “heterocyclyl” as used herein refers to four to seven member cycloalkyl
group containing one or more heteroatoms selected from nitrogen, oxygen or sulfur. The
heterocycloalkyl group optionally incorporates one or more double or triple bonds, or a
combination of double bonds and triple bonds, but which is not aromatic. Typical, non-
limiting examples of heterocycloalkyl groups include azetidine, pyrrolidine, 2-oxo-
pyrrolidine, imidazolidinone, piperidine, oxazine, thiazine, piperazine, piperazin-2,3-
dione, morpholine, thiamorpholine, azapane, and the like. The heterocycloalkyl may be
unsubstituted, or substituted with one or more substituents. Typical, non-limiting examples of
such substituents include C -C alkyl, halogen, alkoxy, CN, COOH, CONH , OH, NH ,
1 6 2 2
NHCOCH , heterocyclyl, heteroaryl, aryl, SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl and
3 2 2 2 2
the like.
The term “aryl” as used herein refers to a monocyclic or polycyclic aromatic
hydrocarbon. Typical, non-limiting examples of aryl groups include phenyl, naphthyl,
anthracenyl, fluorenyl, phenanthrenyl, and the like. The aryl group may be unsubstituted, or
substituted with one or more substituents. Typical, non-limiting examples of such
substituents include C -C alkyl, halogen, alkoxy, CN, COOH, CONH , OH, NH ,
1 6 2 2
NHCOCH , heterocyclyl, heteroaryl, aryl, SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl and
3 2 2 2 2
the like.
The term “heteroaryl” as used herein refers to a monocyclic or polycyclic aromatic
hydrocarbon group wherein one or more carbon atoms have been replaced with heteroatoms
selected from nitrogen, oxygen, and sulfur. If the heteroaryl group contains more than one
heteroatom, the heteroatoms may be the same or different. Typical, non-limiting example of
heteroaryl groups include 1,2,4-oxadiazol, 1,3,4-oxadiazol, 1,3,4-thiadiazol, 1,2,3,4-tetrazol,
1,3-oxazol, 1,3-thiazole, pyridine, pyrimidine, pyrazine, pyridazine, furan, pyrrol, thiophene,
imidazole, pyrazole, benzofuran, benzothiophene, benzimidazole, benzoxazole,
benzothiazole, thiazole, and the like. The heteroaryl group may be unsubstituted, or
substituted with one or more substituents. Typical, non-limiting examples of such
substituents include C -C alkyl, halogen, alkoxy, CN, COOH, CONH , OH, NH ,
1 6 2 2
NHCOCH , heterocyclyl, heteroaryl, aryl, SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl and
3 2 2 2 2
the like.
The term “stereoisomers” as used herein refers to compounds that have identical
chemical constitution, but differ with regard to the arrangement of their atoms or groups in
space. The compounds of Formula (I) may contain asymmetric or chiral centers and,
therefore, exist in different stereoisomeric forms. It is intended, unless specified otherwise,
that all stereoisomeric forms of the compounds of Formula (I) as well as mixtures thereof,
including racemic mixtures, form part of the present invention. In addition, all geometric and
positional isomers (including cis and trans-forms) as well as mixtures thereof, are also
embraced within the scope of the invention. In general, a reference to a compound is intended
to cover its stereoisomers and mixture of various stereoisomers.
The term “optionally substituted” as used herein means that substitution is optional
and therefore includes both unsubstituted and substituted atoms and moieties. A “substituted”
atom or moiety indicates that any hydrogen on the designated atom or moiety can be replaced
with a selection from the indicated substituent group, provided that the normal valency of the
designated atom or moiety is not exceeded, and that the substitution results in a stable
compound.
The term “pharmaceutically acceptable salt” as used herein refers to one or more salts
of a given compound which possesses the desired pharmacological activity of the free
compound and which are neither biologically nor otherwise undesirable. In general, the
“pharmaceutically acceptable salts” refer to salts that are suitable for use in contact with the
tissues of human and animals without undue toxicity, irritation, allergic response and the like,
and are commensurate with a reasonable benefit/risk ratio. Pharmaceutically acceptable salts
are well known in the art. For example, S. M. Berge, et al. (J. Pharmaceutical Sciences, 66: 1-
19 (1977)), incorporated herein by reference in its entirety, describes various
pharmaceutically acceptable salts in details.
In general, the compounds according to the invention contain basic (e.g. nitrogen
atoms) as well as acid moieties (e.g. compounds of Formula (I) wherein M is hydrogen). A
person of skills in the art would appreciate that such compounds, therefore, can form acidic
salts (formed with inorganic and/or organic acids), as well as basic salts (formed with
inorganic and/or organic bases). Such salts can be prepared using procedures described in the
art. For example, the basic moiety can be converted to its salt by treating a compound with a
suitable amount of acid. Typical, non-limiting examples of such suitable acids include
hydrochloric acid, trifluoroacetic acid, methanesulphonic acid, or the like. Alternatively, the
acid moiety may be converted into its salt by treating with a suitable base. Typical non-
limiting examples of such bases include sodium carbonate, sodium bicarbonate, potassium
carbonate, potassium bicarbonate or the like. In case of compounds containing more than one
functional groups capable of being converted into salt, each such functional group may be
converted to salt independently. For example, in case of compounds containing two basic
nitrogen atoms, one basic nitrogen can form salt with one acid while the other basic nitrogen
can form salt with another acid. Some compounds according to the invention contain both,
acidic as well as basic moieties, and thus can form inner salts or corresponding zwitterions. In
general, all pharmaceutically acceptable salt forms of compounds of Formula (I) according to
invention including acid addition salts, base addition salts, zwitterions or the like are
contemplated to be within the scope of the present invention and are generically referred to as
pharmaceutically acceptable salts.
The term "halogen" or "halo" as used herein refers to chlorine, bromine, fluorine, or
iodine.
The term "infection" or “bacterial infection” as used herein includes presence of
bacteria, in or on a subject, which, if its growth were inhibited, would result in a benefit to the
subject. As such, the term "infection" in addition to referring to the presence of bacteria also
refers to normal flora, which is not desirable. The term "infection" includes infection caused
by bacteria.
The term “treat”, “treating” or “treatment” as used herein refers to administering a
medicament, including a pharmaceutical composition, or one or more pharmaceutically active
ingredients, for prophylactic and/or therapeutic purposes. The term "prophylactic treatment"
refers to treating a subject who is not yet infected, but who is susceptible to, or otherwise at a
risk of infection (preventing the bacterial infection). The term "therapeutic treatment" refers
to administering treatment to a subject already suffering from infection. The terms “treat”,
“treating” or “treatment” as used herein also refer to administering compositions or one or
more of pharmaceutically active ingredients discussed herein, with or without additional
pharmaceutically active or inert ingredients, in order to: (i) reduce or eliminate either a
bacterial infection or one or more symptoms of the bacterial infection, or (ii) retard the
progression of a bacterial infection or of one or more symptoms of the bacterial infection, or
(iii) reduce the severity of a bacterial infection or of one or more symptoms of the bacterial
infection, or (iv) suppress the clinical manifestation of a bacterial infection, or (v) suppress
the manifestation of adverse symptoms of the bacterial infection.
The term “pharmaceutically effective amount" or “therapeutically effective amount"
or “effective amount” as used herein refers to an amount, which has a therapeutic effect or is
the amount required to produce a therapeutic effect in a subject. For example, a
therapeutically or pharmaceutically effective amount of an antibacterial agent or a
pharmaceutical composition is the amount of the antibacterial agent or the pharmaceutical
composition required to produce a desired therapeutic effect as may be judged by clinical trial
results, model animal infection studies, and/or in vitro studies (e.g. in agar or broth media).
The pharmaceutically effective amount depends on several factors, including but not limited
to, the microorganism (e.g. bacteria) involved, characteristics of the subject (for example
height, weight, sex, age and medical history), severity of infection and the particular type of
the antibacterial agent used. For prophylactic treatments, a therapeutically or prophylactically
effective amount is that amount which would be effective in preventing a microbial (e.g.
bacterial) infection.
The term "administration" or "administering" includes delivery of a composition or
one or more pharmaceutically active ingredients to a subject, including for example, by any
appropriate methods, which serves to deliver the composition or its active ingredients or other
pharmaceutically active ingredients to the site of the infection. The method of administration
may vary depending on various factors, such as for example, the components of the
pharmaceutical composition or the nature of the pharmaceutically active or inert ingredients,
the site of the potential or actual infection, the microorganism involved, severity of the
infection, age and physical condition of the subject and a like. Some non-limiting examples
of ways to administer a composition or a pharmaceutically active ingredient to a subject
according to this invention includes oral, intravenous, topical, intrarespiratory,
intraperitoneal, intramuscular, parenteral, sublingual, transdermal, intranasal, aerosol,
intraocular, intratracheal, intrarectal, vaginal, gene gun, dermal patch, eye drop, ear drop or
mouthwash. In case of a pharmaceutical composition comprising more than one ingredient
(active or inert), one of way of administering such composition is by admixing the
ingredients (e.g. in the form of a suitable unit dosage form such as tablet, capsule, solution,
powder and a like) and then administering the dosage form. Alternatively, the ingredients
may also be administered separately (simultaneously or one after the other) as long as these
ingredients reach beneficial therapeutic levels such that the composition as a whole provides
a synergistic and/or desired effect.
The term "growth" as used herein refers to a growth of one or more microorganisms
and includes reproduction or population expansion of the microorganism (e.g. bacteria). The
term also includes maintenance of on-going metabolic processes of a microorganism,
including processes that keep the microorganism alive.
The term, “effectiveness” as used herein refers to ability of a treatment or a
composition or one or more pharmaceutically active ingredients to produce a desired
biological effect in a subject. For example, the term “antibacterial effectiveness” of a
composition or an antibacterial agent refers to the ability of the composition or the
antibacterial agent to prevent or treat the microbial (e.g. bacterial) infection in a subject.
The term "synergistic" or "synergy" as used herein refers to the interaction of two or
more agents so that their combined effect is greater than their individual effects.
The term “antibacterial agent” as used herein refers to any substance, compound or a
combination of substances or a combination compounds capable of: (i) inhibiting, reducing or
preventing growth of bacteria; (ii) inhibiting or reducing ability of a bacteria to produce
infection in a subject; or (iii) inhibiting or reducing ability of bacteria to multiply or remain
infective in the environment. The term "antibacterial agent" also refers to compounds capable
of decreasing infectivity or virulence of bacteria.
The term "beta-lactam antibacterial agent" as used herein refers to compounds with
antibacterial properties and containing a beta-lactam nucleus in their molecular structure.
The term “beta-lactamase” as used herein refers to any enzyme or protein or any other
substance that breaks down a beta-lactam ring. The term “beta-lactamase” includes enzymes
that are produced by bacteria and have the ability to hydrolyze the beta-lactam ring in a beta-
lactam compound, either partially or completely.
The term "beta-lactamase inhibitor” as used herein refers to a compound capable of
inhibiting activity of one or more beta-lactamase enzymes, either partially or completely.
The term “pharmaceutically inert ingredient” or “carrier" or "excipient" refers to a
compound or material used to facilitate administration of a compound, including for example,
to increase the solubility of the compound. Typical, non-limiting examples of solid carriers
include, starch, lactose, dicalcium phosphate, sucrose, and kaolin and so on. Typical, non-
limiting examples of liquid carriers include, sterile water, saline, buffers, non-ionic
surfactants, and edible oils such as oil, peanut and sesame oils and so on. In addition, various
adjuvants commonly used in the art may be included. These and other such compounds are
described in the literature, for example, in the Merck Index (Merck & Company, Rahway,
N.J.). Considerations for inclusion of various components in pharmaceutical compositions are
described, for example, in Gilman et al. (Eds.) (1990); Goodman and Gilman's: The
Pharmacological Basis of Therapeutics, 8th Ed., Pergamon Press., which is incorporated
herein by reference in its entirety.
The term "subject" as used herein refers to vertebrate or invertebrate, including a
mammal. The term “subject” includes human, animal, a bird, a fish, or an amphibian.
Typical, non-limiting examples of a "subject" includes humans, cats, dogs, horses, sheep,
bovine cows, pigs, lambs, rats, mice and guinea pigs.
The term “pharmaceutically acceptable derivative” as used herein refers to and
includes any pharmaceutically acceptable salt, pro-drugs, metabolites, esters, ethers, hydrates,
polymorphs, solvates, complexes, enantiomers or adducts of a compound described herein
which, upon administration to a subject, is capable of providing (directly or indirectly) the
parent compound. For example, the term “antibacterial agent or a pharmaceutically
acceptable derivative thereof” includes all derivatives of the antibacterial agent (such as salt,
pro-drugs, metabolites, esters, ethers, hydrates, polymorphs, solvates, complexes,
enantiomers or adducts) which, upon administration to a subject, is capable of providing
(directly or indirectly) the antibacterial compound.
In general, the term “cation” includes Na, K, Mg, Ca, NH , (CH CH ) N etc.
4 3 2 3
In one general aspect, there are provided compounds of Formula (I):
Formula (I)
or a stereoisomer or a pharmaceutically acceptable salt thereof;
wherein:
R is:
(a) hydrogen,
(b) (CO) -R ,
(c) COOR , or
(d) COCH COR
n is 0, 1 or 2;
R is:
(a) SO M,
(b) SO NH ,
(c) PO M,
(d) CH COOM,
(e) CF COOM,
(f) CHFCOOM, or
(g) CF ;
M is hydrogen or a cation;
R is:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents independently
selected from halogen, OR , CN, COOR , CONR R , NR R , NR COR ,
5 6 7 6 7 5 8
NR CONR R heterocyclyl, heteroaryl, cycloalkyl or aryl,
6 7,
(c) CN,
(d) NR R ,
(e) CONR R ,
(f) NHCONR R ,
(g) aryl optionally substituted with one or more substituents independently selected
from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, SO -aryl,
1 6 5 6 7 6 7 2 2
OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 6 7
(h) heterocyclyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, NHC(NH)NR R or NHCONR R ,
2 2 2 6 7, 6 7
(i) heteroaryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 6 7
(j) cycloalkyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 6 7
(k) cycloalkyl substituted with C -C alkyl wherein C -C alkyl is further
1 6 1 6
substituted with one or more substituents independently selected from OR ,
NR R , halogen, CN, or CONR R , or
6 7 6 7
(l) OR ;
R is:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents independently
selected from halogen, OR , CN, COOR , CONR R , NR R , NR COR ,
5 6 7 6 7 5 8
heterocyclyl, heteroaryl, cycloalkyl or aryl,
(c) aryl optionally substituted with one or more substituents independently selected
from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, SO -aryl,
1 6 5 6 7 6 7 2 2
OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 6 7
(d) heterocyclyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 6 7
(e) heteroaryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , or
2 2 2 6 7
(f) cycloalkyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 6 7 6 7 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ;
2 2 2 6 7
R and R are each independently:
(a) hydrogen, or
(b) C -C alkyl optionally substituted with one or more substituents independently
selected from halogen, CN, CONR R , NR R , heterocyclyl, heteroaryl,
6 7 6 7
cycloalkyl or aryl;
R and R are each independently:
(a) hydrogen,
(b) C -C alkyl optionally substituted with one or more substituents independently
selected from halogen, OR , CN, COOR , CONR R , NR R , NR COR ,
5 5 8 5 8 5 8
heterocyclyl, heteroaryl, cycloalkyl or aryl,
(c) aryl optionally substituted with one or more substituents independently selected
from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, SO -aryl,
1 6 5 5 8 5 8 2 2
OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 5 8
(d) heterocyclyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 5 8 5 8 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 5 8
(e) heteroaryl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 5 8 5 8 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ,
2 2 2 5 8
(f) cycloalkyl optionally substituted with one or more substituents independently
selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl,
1 6 5 5 8 5 8 2
SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , or
2 2 2 5 8
(g) R and R are joined together to form a four to seven member ring.
Typical non-limiting examples of compounds according to the invention include:
trans-sulfuric acid mono-[2-(N’-[(S)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((R)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-{7-oxo[N’-((R)-piperidincarbonyl)-hydrazinocarbonyl]-1,6-diaza-
bicyclo[3.2.1]-octyloxy}-acetic acid;
trans-difluoro-{7-oxo[N’-((R)-piperidincarbonyl)-hydrazinocarbonyl]-1,6-
diaza-bicyclo[3.2.1]-octyloxy}-acetic acid;
trans-sulfuric acid mono-[2-hydrazinocarbonyloxo-1,6-diaza-bicyclo[3.2.1]oct
yl]ester;
trans-sulfuric acid mono-[2-(N’-(amino-acetyl)-hydrazinocarbonyl)oxo-1,6-diaza-
bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(3-amino-propioyl)-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(4-amino-butanoyl)-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((2S)aminohydroxy-propioyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(2S,4S)fluoro-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(2S,4R)methoxy-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(piperidincarbonyl)-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((RS)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((S)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((RS)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((S)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((R)-piperidincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(piperazinyl-acetyl)-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((RS)aminophenyl-acetyl)-hydrazinocarbonyl)-
7-oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((RS)amino-butanoyl)-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(3-amino-2,2-dimethyl-propioyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(1-aminomethyl-cyclopropancarbonyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(2-aminocarboxamido-butanoyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(5-amino-pentanoyl)-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((2S)-2,6-diamino-hexanoyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((2-aminoethoxy)-acetyl)-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[azetidincarbonyl]-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[((S)pyrrolidinyl)-propionyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester;
trans-sulfuric acid mono-[2-(N’-[(RS)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(S)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(2S,4R)hydroxy-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(2S,4S)amino-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(2S,4S)guanidino-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-[(RS)piperidinyl-propionyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester;
trans-sulfuric acid mono-[2-(N’-((RS)-piperazincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((S)-morpholincarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(3-oxopiperazinyl-propionyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-((RS)aminopyridinyl-acetyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
trans-sulfuric acid mono-[2-(N’-(2-amino-thiazolcarbonyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-(cyano-acetyl)-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-N’-(7-oxosulfooxy-1,6-diaza-bicyclo[3.2.1]octane
carboxylic acid)-hydrazinecarboxylic acid tert-butyl ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-(morpholinyl-acetyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-(6-carboxamido-pyridincarbonyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-(morpholinoxo-carbonyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-[(S)carbamoyl-pyrrolidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-[(2S,4S)carbamoylfluoro-
pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-[(S)methanesulfonyl-pyrrolidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-(cyano-dimethyl-acetyl)-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
Sodium salt of trans-sulfuric acid mono-[2-(N’-[(S)oxo-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester;
or a stereoisomer or a pharmaceutically acceptable salt thereof.
In general, the compounds of the invention can be prepared according to the following
procedures (Scheme 1). A person of skills in the art would appreciate that the described
methods can be varied or optimized further to provide the desired and related compounds. In
the following procedures, all variables are as defined above.
As described in Scheme-1, transbenzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octane-
2-carboxylic acid (1a), which is described in PCT International Publication No. WO
2009/091856, was reacted with corresponding acid hydrazides in presence of a suitable
coupling agent such as EDC hydrochloride, or dicyclohexylcarbodiimide (DCC), in a solvent
such as N,N dimethyl formamide; N,N dimethyl acetamide; 1,4 dioxane; chloroform;
dichloromethane; or dichloroethane at a temperature ranging from –15°C to 60°C for about 1
to 24 hours to obtain intermediate compound (1b).
The intermediate compound (1b) was subjected for hydrogenolysis in presence of a
suitable catalyst (e.g. 5% or 10% palladium on carbon, or 20% palladium hydroxide on
carbon) in presence of a suitable hydrogen source (such as hydrogen gas, ammonium
formate, cyclohexene) in a suitable solvent (such as methanol, ethanol, methanol-
dichloromethane mixture, or N,N dimethyl formamide-dichloromethane mixture) at a
temperature ranging from about 25°C to 60°C for about 1 to 14 hours to obtain intermediate
compound (1c).
R1 N
R CONHNH R1 N
HO Hydrogenolysis
Coupling agent
R1 N
Sodium salt formation
Sulfonating agent
then Bu NHSO
N OSO R
OSO NBu
R = H or Na
Compound of invention
of Formula-1
CF COOH
(when R contains t-Boc-amino group)
Scheme-1
The intermediate compound (1c) was sulfonated by reacting it with a sulfonating
reagent (such as sulfur trioxide-pyridine complex, or sulfur trioxide-N,N-dimethyl formamide
complex) in a suitable solvent (such as pyridine, N,N-dimethyl formamide) at a temperature
ranging from about 25°C to 90°C for about 1 to 24 hours to obtain pyridine salt of sulfonic
acid which when treated with tetrabutyl ammonium sulfate provided terabutylammonium salt
of sulfonic acid as an intermediate compound (1d).
Some compounds according to the invention were isolated as a zwitterions, by
treating intermediate compound (1d) with trifluoroacetic acid, in a suitable solvent (such as
dichloromethane, chloroform, or acetonitrile) at a temperature ranging from about -10°C to
40°C for about 1 to 14 hours, especially when R in intermediate compound (1d) contained
tert-butoxycarbonyl protected amine function.
Some other compounds according to the invention were isolated as a corresponding
sodium salt, by passing intermediate compound (1d) through sodium form of Aberlite 200C
resin in a tetrahydrofuran-water mixture followed by evaporation of the solvent under
vacuum.
R1 N
R1 N
A A Base
A = H or F
R1 N
i) Hydrolysis
N OH
ii) Deprotection
(if R1 bears amine
function with Boc group)
Compound of invention
of formual-1
Scheme-2
As described in Scheme-2, the hydroxyl intermediate (1c) obtained as per Scheme-1,
was subjected for alkylation with alkylating agent (such as ethyl-bromoacetate, ethyl-
fluoroacetate or ethyl-difluoroacetate) in presence of a base (such as potassium carbonate,
diisopropylethylamine or triethylamine) in a suitable solvent (such as N,N dimethyl
formamide, N,N dimethyl acetamide or N-methyl pyrrolidine) to provide O-alkylated
compound (2d).
The compound (2d) was subjected for hydrolysis in presence of a base (such as
lithium hydroxide or potassium hydroxide) in a suitable solvent (such as aqueous
tetrahydrofuran, aquous dioxane) to provide compound of Formula (I) after pH adjustment.
Optionally, if R bears amine function protected with Boc group, then it was removed
in an additional step of deprotection by using a suitable deprotecting agent (such as
trifluoroacetic acid or HF pyridine) in a solvent (such as dichloromethane, chloroform or
acetonitrile) to provide compound of Formula (I).
In some embodiments, there are provided pharmaceutical compositions comprising a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
In some embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising a compound
of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising a compound
of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof.
In some embodiments, there are provided pharmaceutical compositions comprising:
(a) a compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt
thereof, and (b) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam,
clavulanic acid, or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there are provided pharmaceutical compositions
comprising: (a) a compound of Formula (I), or a stereoisomer or a pharmaceutically
acceptable salt thereof, and (b) at least one antibacterial agent or a pharmaceutically
acceptable derivative thereof.
In some other embodiments, there are provided pharmaceutical compositions
comprising: (a) a compound of Formula (I), or a stereoisomer or a pharmaceutically
acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected from sulbactam,
tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c) at
least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic
acid, or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic
acid, or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof, (b)
at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or
a pharmaceutically acceptable derivative thereof, and (c) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) a
compound of Formula (I), or a stereoisomer or a pharmaceutically acceptable salt thereof, (b)
at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or
a pharmaceutically acceptable derivative thereof, and (c) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, and (b) at least one antibacterial agent or a
pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof, and (c) at least one antibacterial agent or a pharmaceutically acceptable derivative
thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of: (a) a compound of Formula (I), or a stereoisomer or a
pharmaceutically acceptable salt thereof, (b) at least one beta-lactamase inhibitor selected
from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative
thereof, and (c) at least one antibacterial agent or a pharmaceutically acceptable derivative
thereof.
In some embodiments, there are provided pharmaceutical compositions comprising:
(a) trans-sulfuric acid mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt
thereof, and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) trans-sulfuric acid mono-[2-(N’-[(R)-piperidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer
or a pharmaceutically acceptable salt thereof, and (b) sulbactam or a pharmaceutically
acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) trans-sulfuric acid mono-[2-(N’-[(R)-piperidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer
or a pharmaceutically acceptable salt thereof, and (b) sulbactam or a pharmaceutically
acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) trans-
sulfuric acid mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-
bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) trans-
sulfuric acid mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-
bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some embodiments, there are provided pharmaceutical compositions comprising:
(a) trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-
1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt
thereof, and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer
or a pharmaceutically acceptable salt thereof, and (b) sulbactam or a pharmaceutically
acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, said method comprising administering to said subject a
pharmaceutically effective amount of: (a) trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidin
carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer
or a pharmaceutically acceptable salt thereof, and (b) sulbactam or a pharmaceutically
acceptable derivative thereof.
In some other embodiments, there is provided a method for preventing or treating
bacterial infection in a subject, said method comprising administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) trans-
sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-
bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some embodiments, there is provided a method for preventing or treating a
bacterial infection in a subject, said infection being caused by bacteria producing one or more
beta-lactamase enzymes, wherein the method comprises administering to said subject a
pharmaceutically effective amount of a pharmaceutical composition comprising: (a) trans-
sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-
bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof,
and (b) sulbactam or a pharmaceutically acceptable derivative thereof.
In some embodiments, there are provided methods for increasing antibacterial
effectiveness of a antibacterial agent in a subject, said method comprising co-administering
said antibacterial agent or a pharmaceutically acceptable derivative thereof with a
pharmaceutically effective amount of a compound of Formula (I) or a stereoisomer or a
pharmaceutically acceptable salt thereof.
In some embodiments, the compositions and methods according to the invention use
compounds of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof in
combination with at least one antibacterial agent or a pharmaceutically acceptable derivative
thereof. A wide variety of antibacterial agents can be used. Typical, non-limiting examples of
antibacterial agents include one or more of antibacterial compounds generally classified as
aminoglycosides, Ansamycins, Carbacephems, Cephalosporins, Cephamycins, Lincosamides,
Lipopeptides, Macrolides, Monobactams, Nitrofurans, Penicillins, Polypeptides, Quinolones,
Sulfonamides, Tetracyclines, Oxazolidinone and the like.
Typical, non-limiting examples of Aminoglycoside antibacterial agents include
Amikacin, Gentamicin, Kanamycin, Neomycin, Netilmicin, Tobramycin, Paromomycin,
Arbekacin, Streptomycin, Apramycin and the like.
Typical, non-limiting examples of Ansamycin antibacterial agents include
Geldanamycin, Herbimycin and the like.
Typical, non-limiting examples of Carbacephem antibacterial agents include
Loracarbef and the like.
Typical, non-limiting examples of Carbapenem antibacterial agents include
Ertapenem, Doripenem, Imipenem, Meropenem and the like.
Typical, non-limiting examples of Cephalosporin and Cephamycin antibacterial
agents include Cefazolin, Cefacetrile, Cefadroxil, Cefalexin, Cefaloglycin, Cefalonium,
Cefaloridine, Cefalotin, Cefapirin, Cefatrizine, Cefazedone, Cefazaflur, Cefradine,
Cefroxadine, Ceftezole, Cefaclor, Cefamandole, Cefminox, Cefonicid, Ceforanide, Cefotiam,
Cefprozil, Cefbuperazone, Cefuroxime, Cefuzonam, Cephamycin, Cefoxitin, Cefotetan,
Cefmetazole, Carbacephem, Cefixime, Ceftazidime, Ceftriaxone, Cefcapene, Cefdaloxime,
Cefdinir, Cefditoren, Cefetamet, Cefmenoxime, Cefodizime, Cefoperazone, Cefotaxime,
Cefpimizole, Cefpiramide, Cefpodoxime, Cefsulodin, Cefteram, Ceftibuten, Ceftiolene,
Ceftizoxime, Oxacephem, Cefepime, Cefozopran, Cefpirome, Cefquinome, Ceftobiprole,
Ceftiofur, Cefquinome, Cefovecin, CXA-101, Ceftaroline, Ceftobiprole etc.
Typical, non-limiting examples of Lincosamide antibacterial agents include
Clindamycin, Lincomycin and the like.
Typical, non-limiting examples of Macrolide antibacterial agents include
Azithromycin, Clarithromycin, Dirithromycin, Erythromycin, Roxithromycin,
Troleandomycin, Telithromycin, Spectinomycin, Solithromycin and the like.
Typical, non-limiting examples of Monobactam antibacterial agents include
Aztreonam and the like.
Typical, non-limiting examples of Nitrofuran antibacterial agents include
Furazolidone, Nitrofurantoin and the like.
Typical, non-limiting examples of Penicillin antibacterial agents include Amoxicillin,
Ampicillin, Azlocillin, Carbenicillin, Cloxacillin, Dicloxacillin, Flucloxacillin, Mezlocillin,
Methicillin, Nafcillin, Oxacillin, Penicillin G, Penicillin V, Piperacillin, Temocillin,
Ticarcillin and the like.
Typical, non-limiting examples of Polypeptide antibacterial agents include Bacitracin,
Colistin, Polymyxin B and the like.
Typical, non-limiting examples of Quinolone antibacterial agents include
Ciprofloxacin, Enoxacin, Gatifloxacin, Levofloxacin, Lomefloxacin, Moxifloxacin, Nalidixic
acid, Levonadifloxacin, Norfloxacin, Ofloxacin, Trovafloxacin, Grepafloxacin, Sparfloxacin,
Temafloxacin and the like.
Typical, non-limiting examples of Sulfonamide antibacterial agents include Mafenide,
Sulfonamidochrysoidine, Sulfacetamide, Sulfadiazine, Sulfamethizole, Sulfamethoxazole,
Sulfasalazine, Sulfisoxazole, Trimethoprim and the like.
Typical, non-limiting examples of Tetracycline antibacterial agents include
Demeclocycline, Doxycycline, Minocycline, Oxytetracycline, Tetracycline, Tigecycline and
the like.
Typical, non-limiting examples of Oxazolidinone antibacterial agents include
Tedizolid, Linezolid, Ranbezolid, Torezolid, Radezolid etc.
The pharmaceutical compositions according to the invention may include one or more
pharmaceutically acceptable carriers or excipients or the like, Typical, non-limiting examples
of such carriers or excipient include mannitol, lactose, starch, magnesium stearate, sodium
saccharine, talcum, cellulose, sodium crosscarmellose, glucose, gelatin, sucrose, magnesium
carbonate, wetting agents, emulsifying agents, solubilizing agents, pH buffering agents,
lubricants, stabilizing agents, binding agents etc.
The pharmaceutical compositions according to this invention can exist in various
forms. In some embodiments, the pharmaceutical composition is in the form of a powder or a
solution. In some other embodiments, the pharmaceutical compositions according to the
invention are in the form of a powder that can be reconstituted by addition of a compatible
reconstitution diluent prior to parenteral administration. Non-limiting example of such a
compatible reconstitution diluent includes water.
In some other embodiments, the pharmaceutical compositions according to the
invention are in the form of a frozen composition that can be diluted with a compatible
diluent prior to parenteral administration.
In some other embodiments, the pharmaceutical compositions according to the
invention are in the form ready to use for parenteral administration.
In the methods according to the invention, the pharmaceutical composition and/or
other pharmaceutically active ingredients disclosed herein may be administered by any
appropriate method, which serves to deliver the composition or its constituents or the active
ingredients to the desired site. The method of administration can vary depending on various
factors, such as for example, the components of the pharmaceutical composition and nature
of the active ingredients, the site of the potential or actual infection, the microorganism (e.g.
bacteria) involved, severity of infection, age and physical condition of the subject. Some non-
limiting examples of administering the composition to a subject according to this invention
include oral, intravenous, topical, intrarespiratory, intraperitoneal, intramuscular, parenteral,
sublingual, transdermal, intranasal, aerosol, intraocular, intratracheal, intrarectal, vaginal,
gene gun, dermal patch, eye drop, ear drop or mouthwash.
The compositions according to the invention can be formulated into various dosage
forms wherein the active ingredients and/or excipients may be present either together (e.g. as
an admixture) or as separate components. When the various ingredients in the composition
are formulated as a mixture, such composition can be delivered by administering such a
mixture. The composition or dosage form wherein the ingredients do not come as a mixture,
but come as separate components, such composition/dosage form may be administered in
several ways. In one possible way, the ingredients may be mixed in the desired proportions
and the mixture is then administered as required. Alternatively, the components or the
ingredients (active or inert) may be separately administered (simultaneously or one after the
other) in appropriate proportion so as to achieve the same or equivalent therapeutic level or
effect as would have been achieved by administration of the equivalent mixture.
Similarly, in the methods according to the invention, the active ingredients disclosed
herein may be administered to a subject in several ways depending on the requirements. In
some embodiments, the active ingredients are admixed in appropriate amounts and then the
admixture is administered to a subject. In some other embodiments, the active ingredients are
administered separately. Since the invention contemplates that the active ingredients agents
may be administered separately, the invention further provides for combining separate
pharmaceutical compositions in kit form. The kit may comprise one or more separate
pharmaceutical compositions, each comprising one or more active ingredients. Each of such
separate compositions may be present in a separate container such as a bottle, vial, syringes,
boxes, bags, and the like. Typically, the kit comprises directions for the administration of the
separate components. The kit form is particularly advantageous when the separate
components are preferably administered in different dosage forms (e.g., oral and parenteral)
ore are administered at different dosage intervals. When the active ingredients are
administered separately, they may be administered simultaneously or sequentially.
The pharmaceutical composition or the active ingredients according to the present
invention may be formulated into a variety of dosage forms. Typical, non-limiting examples
of dosage forms include solid, semi-solid, liquid and aerosol dosage forms; such as tablets,
capsules, powders, solutions, suspensions, suppositories, aerosols, granules, emulsions,
syrups, elixirs and a like.
In general, the pharmaceutical compositions and method disclosed herein are useful in
preventing or treating bacterial infections. Advantageously, the compositions and methods
disclosed herein are also effective in preventing or treating infections caused by bacteria that
are considered be less or not susceptible to one or more of known antibacterial agents or their
known compositions. Some non-limiting examples of such bacteria known to have developed
resistance to various antibacterial agents include Acinetobacter, E. coli, Pseudomonas
aeruginosa, Staphylococcus aureus, Enterobacter, Klebsiella, Citrobacter and a like. Other
non-limiting examples of infections that may be prevented or treated using the compositions
and/or methods of the invention include: skin and soft tissue infections, febrile neutropenia,
urinary tract infection, intraabdominal infections, respiratory tract infections, pneumonia
(nosocomial), bacteremia meningitis, surgical, infections etc.
Surprisingly, the compounds, compositions and methods according to the invention
are also effective in preventing or treating bacterial infections that are caused by bacteria
producing one or more beta-lactamase enzymes. The ability of compositions and methods
according to the present invention to treat such resistant bacteria with typical beta-lactam
antibiotics represents a significant improvement in the art.
In general, the compounds of Formula (I) or a stereoisomer or pharmaceutically
acceptable salt thereof according to invention are also useful in increasing antibacterial
effectiveness of a antibacterial agent in a subject. The antibacterial effectiveness of one or
more antibacterial agents may increased, for example, by co-administering said antibacterial
agent or a pharmaceutically acceptable derivative thereof with a pharmaceutically effective
amount of a compound of Formula (I) or a stereoisomer or a pharmaceutically acceptable salt
thereof according to the invention.
It will be readily apparent to one skilled in the art that varying substitutions and
modifications may be made to the invention disclosed herein without departing from the
scope and spirit of the invention. For example, those skilled in the art will recognize that the
invention may be practiced using a variety of different compounds within the described
generic descriptions.
EXAMPLES
The following examples illustrate the embodiments of the invention that are presently
best known. However, it is to be understood that the following are only exemplary or
illustrative of the application of the principles of the present invention. Numerous
modifications and alternative compositions, methods, and systems may be devised by those
skilled in the art without departing from the spirit and scope of the present invention. The
appended claims are intended to cover such modifications and arrangements. Thus, while the
present invention has been described above with particularity, the following examples
provide further detail in connection with what are presently deemed to be the most practical
and preferred embodiments of the invention.
Example-1
trans-sulfuric acid mono-[2-(N’-[(S)-pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl] ester
OSO H
Step-1: Preparation of trans[N’-(6-benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid tert-butyl ester:
To a clear solution of transbenzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carboxylic acid (15 gm, 0.054 mol) in N,N-dimethyl formamide (150 ml), was added EDC
hydrochloride (15.57 gm, 0.082 mol) followed by HOBt (11.0 gm, 0.082 mol) at about 25°C
to 35°C under stirring. The reaction mixture was stirred for 15 minutes and a solution of (S)-
N-tert-butoxycarbonyl-pyrrolidincarboxylic acid hydrazide (14.93 gm, 0.065 mol)
dissolved in N,N-dimethyl formamide (75 ml), followed by N,N-di-isopropyl ethylamine
(28.4 ml, 0.163 mol) were added. The reaction mixture was stirred at a temperature between
°C to 35°C for 16 hours. The reaction mixture was poured under stirring into 10% aqueous
citric acid solution (2250 ml). The resulting mixture was extracted with diethyl ether (1000
ml x 3). Combined organic layer was washed with water (1000 ml) followed by brine
solution (500 ml) and dried over sodium sulfate. Concentration of organic layer under
vacuum afforded the crude residue in 13 gm quantity. The residue was purified using silica
gel column chromatography to provide the product (trans[N’-(6-benzyloxyoxo-1,6-
diaza-bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid
tert-butyl ester) in 6.3 gm quantity as a white powder.
Analysis: MS (ES+) C H N O = 488.1 (M+1);
24 33 5 6
H NMR (DMSO-d ) = 9.86 (br d, 1H), 9.75 (br d, 1H), 7.34-7.44 (m, 5H), 4.92 (dd,
2H), 4.07-4.10 (m, 1H), 3.78-3.82 (m, 1H), 3.68 (br d, 1H), 3.20-3.25 (m, 3H), 2.87 (br d,
1H), 1.62-2.10 (m, 8H), 1.34 (s, 9H).
Step-2: Preparation of trans[N’-(6-hydroxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid tert-butyl ester:
To a clear solution of step-1 product (3.0 gm, 6.15 mmol) in methanol (30 ml) was
added 10% palladium on carbon (300 mg). The suspension was stirred under atmospheric
hydrogen pressure at a temperature of about 30°C for 2 hours. The catalyst was filtered over a
celite bed and catalyst-containing bed was washed with additional methanol (10 ml) and
dichloromethane (10 ml). The filtrate was concentrated in vacuum to provide a white powder,
which was triturated with diethyl ether to provide trans[N’-(6-hydroxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid tert-
butyl ester as a white powder in 2.00 gm quantity in 82% yield.
Analysis: MS (ES+) C H N O = 398.0 (M+1);
17 27 5 6
H NMR (DMSO-d ) = 9.82 (d, 1H), 9.70-9.80 (m, 2H), 4.08-4.15 (m, 1H), 3.4.0-3.78
(m, 1H), 3.59 (br s, 1H), 3.17-3.40 (m, 3H), 2.97 (br d, 1H), 1.55-2.15 (m, 8H), 1.35 (s, 9H).
Step-3: Preparation of tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid tetr-
butyl ester:
The product obtained in step-2 (2.00 gm, 5.03 mmol) was dissolved in pyridine (40
ml) and to the clear solution was added pyridine sulfur trioxide complex (4.03 gm, 25.18
mmol). The suspension was stirred at a temperature 25°C to 35°C for overnight. The
suspension was filtered and the solids were washed with dichloromethane (25 ml x 2). The
filtrate was evaporated under vacuum and the residue was stirred in 0.5 N aqueous potassium
dihydrogen phosphate solution (200 ml) for 0.5 hour. The solution was washed with ethyl
acetate (100 ml x 4) and layers were separated. To the aqueous layer was added
tetrabutylammonium sulphate (1.71 gm, 5.03 mmol) and stirred for four hours at about 25°C.
The mixture was extracted with dichloromethane (100 ml x 2). The combined organic extract
was washed with brine (50 ml) and dried on sodium sulfate and evaporated under vacuum to
provide solid, that was triturated with diethyl ether and filtered to provide white powder as a
step-3 product (tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(S)-pyrrolidincarboxylic acid tetr-
butyl ester), in 3.0 gm quantity (83% yield).
Analysis: MS (ES-) C H N O S.N(C H ) as a salt = 476.0 (M-1) as a free sulfonic
17 26 5 9 4 9 4
acid;
H NMR (CDCl ) = 9.13 (br s, 1H), 8.49 (br s, 1H), 4.35 (br s, 2H), 3.98 (d, 1H), 3.24-
3.50 (m, 10H), 3.13 (br d, 1H), 2.35 (dd, 2H), 2.16 (br s, 2H), 1.91-2.01 (m, 4H), 1.61-1.70
(m, 10H), 1.40-1.48 (m, 17H), 0.98-1.02 (m, 12H).
Step-4: trans-sulfuric acid mono-[2-(N’-[(S)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester:
To the powder obtained in step-3 (3.0 gm, 4.17 mmol) was added, a solution of
trifluoroacetic acid (7 ml) in dichloromethane (7 ml) slowly by syringe at -5°C over a period
of 5 minutes. The mixture was maintained under stirring for 1 hr. Solvents were removed
below 40°C under high vacuum to provide a residue, which was triturated with diethyl ether
(50 ml x 5) and each time diethyl ether was decanted. The obtained white solid was further
triturated with acetonitrile (100 ml x 2). The resultant solid was stirred in dichloromethane
(100 ml) and the suspension was filtered. The solid was dried under vacuum to provide title
compound of the invention (trans-sulfuric acid mono-[2-(N’-[(S)-pyrrolidincarbonyl]-
hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester ) in 1.2 gm quantity (59%
yield).
Analysis: MS (ES-) C H N O S = 376.2 (M-1) as a free sulfonic acid;
12 19 5 7
H NMR (DMSO-d ) = 10.39 (br s, 1H), 10.15 (s, 1H), 8.96 (br s, 2H), 4.19 (t, 1H),
4.03 (br s, 1H), 3.86 (d, 1H), 3.16-3.25 (m, 3H), 3.02 (br d, 1H), 2.27-2.33 (m, 1H), 1.92-2.23
(m, 1H), 1.84-1.90 (m, 4H), 1.69-1.75 (m, 1H), 1.54-1.62 (m, 1H).
Example-2
trans-sulfuric acid mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl] ester
OSO H
Step-1: Preparation of trans[N’-(6-benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-piperidincarboxylic acid tert-butyl ester:
By using the procedure described in Step-1 of Example-1 above, and by using trans
benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarboxylic acid (25 gm, 0.084 mol), N,N-
dimethyl formamide (625 ml), EDC hydrochloride (24 gm, 0.126 mol), HOBt (16.96 gm,
0.126 mol), (R)-N-tert-butoxycarbonyl-piperidincarboxylic acid hydrazide (21.40 gm ,
0.088 mol) to provide the title compound in 17.0 gm quantity, 41% yield as a white solid.
Analysis: MS (ES+) C H N O = 502.1 (M+1);
35 5 6
H NMR (CDCl ) = 8.40 (br s, 1H), 7.34-7.44 (m, 5H), 5.05 (d, 1H), 4.90 (d, 1H), 4.00
(br d, 1H), 3.82 (br s, 1H), 3.30 (br s, 1H), 3.16-3.21 (m, 1H), 3.06 (br d, 1H), 2.42 (br s, 1H),
2.29-2.34 (m, 1H), 1.18-2.02 (m, 4H), 1.60-1.75 (m, 4H), 1.45-1.55 (m, 2H),1.44 (s, 9H).
Step-2: Preparation of trans[N’-(6-hydroxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-piperidincarboxylic acid tert-butyl ester:
By using the procedure described in Step-2 of Example-1 above, and by using trans
[N’-(6-benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-
piperidincarboxylic acid tert-butyl ester (16.5 gm , 0.033 mol), methanol (170 ml) and
% palladium on carbon (3.5 gm) to provide the title compound in 13.5 gm quantity as a
pale pink solid and it was used for the next reaction immediately.
Analysis: MS (ES+) C H N O = 411.1 (M+1);
18 29 5 6
Step-3: Preparation of tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-piperidincarboxylic acid tert-
butyl ester:
By using the procedure described in Step-3 of Example-1 above, and by using trans
[N’-(6-hydroxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-
piperidincarboxylic acid tert-butyl ester (13.5 gm , 0.033 mol), pyridine (70 ml) and
pyridine sulfur trioxide complex (26.11 gm, 0.164 mol), 0.5 N aqueous potassium dihydrogen
phosphate solution (400 ml) and tetrabutylammonium sulphate (9.74 gm, 0.033 mol) to
provide the title compound in 25 gm quantity as a yellowish solid, in quantitative yield.
Analysis: MS (ES-) C H N O S.N(C H ) as a salt = 490.0 (M-1) as a free sulfonic
18 28 5 9 4 9 4
acid;
Step-4: trans-sulfuric acid mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester:
By using the procedure described in Step-4 of Example-1 above, and by using
tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-piperidincarboxylic acid tert-butyl ester (24 gm , 0.032
mmol), dichloromethane (60 ml) and trifluoroacetic acid (60 ml) to provide the title
compound in 10 gm quantity as a white solid, in 79% yield.
Analysis: MS (ES-)= C H N O S = 390.2 (M-1) as a free sulfonic acid;
13 21 5 7
H NMR (DMSO-d ) = 9.97 (d, 2H), 8.32 (br s, 2H), 4.00 (br s, 1H), 3.81 (d, 1H),
3.10-3.22 (m, 3H), 2.97-3.02 (m, 2H), 2.86-2.91 (m, 1H), 2.65-2.66 (m, 1H), 1.97-2.03 (m,
1H), 1.57-1.88 (m, 7H).
[] = -32.6°, (c 0.5, water).
Example-3
trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl] ester
OSO H
Step-1: Preparation of trans[N’-(6-benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-pyrrolidincarboxylic acid tert-butyl ester:
By using the procedure described in Step-1 of Example-1, and by using trans
benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarboxylic acid (15.7 gm, 0.057mol),
N,N-dimethyl formamide (390 ml), EDC hydrochloride (16.24 gm, 0.085 mol), HOBt (11.48
gm, 0.085 mol), (R)-N-tert-butoxycarbonyl-pyrrolidincarboxylic acid hydrazide (13.7 gm ,
0.06 mol) to provide the title compound in 11.94 gm quantity, 43% yield as a white solid.
Analysis: MS (ES+) C H N O = 488.2 (M+1);
24 33 5 6
H NMR (CDCl ), D O exchange = 7.30-7.39 (m, 5H), 4.85 (s, 2H), 3.77 (d, 1H), 3.68
(br s, 1H), 3.39-3.41 (m, 1H), 3.17-3.26 (m, 3H), 3.01 (d, 1H), 2.90-2.92 (m, 2H), 1.97-2.03
(m, 2H), 1.79-1.89 (m, 2H), 1.66-1.70 (m, 1H), 1.55-1.57 (m, 1H),1.32 (s, 9H).
Step-2: Preparation of trans[N’-(6-hydroxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-pyrrolidincarboxylic acid tert-butyl ester:
By using the procedure described in Step-2 of Example-1, and by using trans[N’-
(6-benzyloxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-
pyrrolidincarboxylic acid tert-butyl ester (11.5 gm , 0.024 mol), methanol (115 ml) and
% palladium on carbon (3.0 gm) to provide the title compound in 9.5 gm quantity as a pale
brown solid and it was used for the next reaction immediately.
Analysis: MS (ES+) C H N O = 398.2 (M+1);
17 27 5 6
Step-3: Preparation of tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-pyrrolidincarboxylic acid tert-
butyl ester:
By using the procedure described in Step-3 of Example-1, and by using trans[N’-
(6-hydroxyoxo-1,6-diaza-bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-
pyrrolidincarboxylic acid tert-butyl ester (9.5 gm , 0.024 mol), pyridine (95 ml) and
pyridine sulfur trioxide complex (19.08 gm, 0.12 mol), 0.5 N aqueous potassium dihydrogen
phosphate solution (300 ml) and tetrabutylammonium sulphate (8.15 gm, 0.024 mol) to
provide the title compound in 15.3 gm quantity as a yellowish solid, in 87% yield.
Analysis: MS (ES-) C H N O S.N(C H ) as a salt = 476.1 (M-1) as a free sulfonic
17 26 5 9 4 9 4
acid;
H NMR (DMSO-d ) = 9.82 (d, 2H), 3.97 (br s, 1H), 3.79 (d, 1H), 3.42-3.44 (m, 1H),
3.00-3.18 (m, 10H), 2.65-2.97 (m, 2H), 1.98-2.01 (m, 2H), 1.74-1.83 (m, 2H), 1.63-1.72 (m,
1H), 1.38-1.55 (m, 9H), 1.33 (s, 9H), 1.24-1.28 (m. 8H), 0.91-0.99 (m, 12H).
Step-4: trans-sulfuric acid mono-[2-(N’-[(R)-pyrrolidincarbonyl]-hydrazinocarbonyl)
oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester:
By using the procedure described in Step-4 of Example-1, and by using
tetrabutylammonium salt of trans[N’-(6-sulfooxyoxo-1,6-diaza-bicyclo[3.2.1]octane
carbonyl)-hydrazinocarbonyl]-(R)-pyrrolidincarboxylic acid tert-butyl ester (15 gm , 0.021
mmol), dichloromethane (37 ml) and trifluoroacetic acid (37 ml) to provide the title
compound in 7.7 gm quantity as a white solid.
Analysis: MS (ES-) = C H N O S = 376.1 (M-1) as a free sulfonic acid;
12 19 5 7
H NMR (DMSO-d ) = 10.04 (s, 1H), 9.96 (s, 1H), 8.79 (br s, 1H), 8.68 (br s, 1H),
4.00 (br s, 1H), 3.82 (d, 1H), 3.18-3.32 (m, 4H), 3.08-3.12 (m, 1H), 3.00 (br d, 1H), 2.05-2.29
(m, 1H), 1.96-2.05 (m, 2H), 1.84-1.87 (m, 1H), 1.69-1.73 (m, 1H), 1.56-1.67 (m, 1H)..
[] = -44.2°, (c 0.5, water).
Example-4
trans-{7-oxo[N’-((R)-piperidincarbonyl)-hydrazinocarbonyl]-1,6-diaza-bicyclo[3.2.1]-
octyloxy}-acetic acid
N OH
Step-1: Preparation of trans{N’-(6-ethoxycarbonylmethoxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl}-(R)-piperidincarboxylic acid tert-
butyl ester:
The intermediate compound trans[N’-(6-hydroxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl]-(R)-piperidincarboxylic acid tert-
butyl ester (4.0 gm, 9.73 mmol), obtained in Step-2 of Example-2) was dissolved in DMF
(12 ml) and to the clear solution was added potassium carbonate (1.61 gm, 11.6 mmol)
followed by ethyl bromo acetate (1.2 ml, 10.0 mmol) under stirring and the suspension was
stirred for 18 hours at about 25°C. The reaction was monitored by TLC. DMF was
evaporated under vacuum to provide a residue. The residue was purified by silica gel column
chromatography to provide titled Step-1 intermediate compound in 2.6 gm quantity as a solid
in 53.7% yield.
Analysis: MS (+)= C H N O = 498.1 (M+1);
22 35 5 8
H NMR (CDCl ) = 8.45 (br s, 2H), 4.58 (s, 2H), 4.19-4.27 (m, 2H), 4.02-4.12 (m,
2H), 3.25 (br d, 1H), 3.15 (br d, 1H), 2.38 (br s, 1H), 2.35 (dd, 1H), 2.15-2.20 (m, 1H), 1.79-
2.02 (m, 4H), 1.67-1.77 (m, 4H), 1.44-1.51 (m, 11H), 1.28 (t, 3H).
Step-2: Preparation of trans{N’-(6-carboxymethoxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl}-(R)-piperidincarboxylic acid tert-
butyl ester:
To a clear solution of trans{N’-(6-ethoxycarbonylmethoxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl}-(R)-piperidincarboxylic acid tert-
butyl ester (600 mg, 1.20 mmol) in tetrahydrofuran (32 ml) and water (12 ml) was added
lithium hydroxide (43.2 mg, 1.8 mmol) at 0°C. The reaction mixture was stirred for 3 hours
and was neutralized to pH 6 by addition of aqueous 1 N potassium hydrogen sulfate. It was
exacted with ethyl acetate (3 X 25 ml). Layers were separated and aqueous layer was
acidified with 1 N potassium hydrogen sulfate to pH 1 and extracted with ethyl acetate (3 X
ml). The Organic layer was dried over sodium sulfate and evaporated to dryness under
vacuum to provide 160 mg of tilted intermediate as a solid in 27% yield.
Analysis: MS (ES+)= C H N O = 470.1 (M+1)
31 5 8
H NMR (CDCl ) = 8.40 (br s, 2H), 4.67 (d, 1H), 4.52 (d, 1H), 4.07-4.14 (m, 2H), 3.95
(br s, 1H), 3.43 (br d, 1H), 3.19 (br d, 1H), 2.47 (br s, 1H), 2.39 (dd, 1H), 2.09-2.13 (m, 2H),
1.77-2.00 (m, 4H), 1.68-1.77 (m, 2H), 1.45-1.51 (m, 11H)..
Step-3: trans-{7-oxo[N’-((R)-piperidincarbonyl)-hydrazinocarbonyl]-1,6-diaza-
bicyclo[3.2.1]-octyloxy}-acetic acid:
To a clear solution of trans{N’-(6-carboxymethoxyoxo-1,6-diaza-
bicyclo[3.2.1]octanecarbonyl)-hydrazinocarbonyl}-(R)-piperidincarboxylic acid tert-
butyl ester (150 mg, 0.32 mmol) in dichloromethane (2 ml) was added trifluoroacetic acid
under stirring at -10°C. The reaction mixture was stirred for about 1 hour at -10°C and the
solvents were evaporated under vacuum to provide a residue. The residue was triturated
successively with diethyl ether (25 ml) and acetonitrile (25 ml) and solvents were decanted to
provide solid that was dried under vacuum to provide 59 mg of titled compound in 50 %
yield.
Analysis: MS (ES-)= C H N O = 368.0 (M-1)
23 5 6
H NMR (DMSO-d ) = 9.97 (br s, 2H), 4.48 (d, 1H), 4.29 (d, 1H), 3.91 (s, 1H), 3.83
(d, 1H), 3.36 (q, 1H), 3.11-3.21 (m, 4H), 2.84-3.01 (m, 3H), 2.66 (br s, 1H), 1.90-2.05 (m,
3H), 1.69-1.76 (m, 2H), 1.59-1.66 (m, 3H).
Example-5
trans-difluoro-{7-oxo[N’-((R)-piperidincarbonyl)-hydrazinocarbonyl]-1,6-diaza-
bicyclo[3.2.1]-octyloxy}-acetic acid
N OH
By using procedure the described in Example 4 and by using ethyl-bromo
difluoroacetate (2.0 gm, 10.0 mmol) in the place of ethyl bromo acetate, the titled compound
was prepared in 30 mg quantity as a solid.
Analysis: MS (ES+)= C H F N O = 406.2 (M+1)
21 2 5 6
H NMR (DMSO-d ) = 10.99 (d, 2H), 8.59 (br s, 2H), 3.89-4.00 (m, 2H), 3.13-3.31
(m, 4H), 2.95-3.07 (m, 2H), 2.81-2.88 (m, 1H), 2.62-2.78 (m, 1H), 1.97-2.05 (m, 1H), 1
1.95 (m, 1H), 1.72-1.79 (m, 2H), 1.59-1.64 (m, 3H).
Compounds 6 to 42 (Table 1) were prepared using the procedure described as in
Example-1 and using corresponding R CONHNH , in place of (S)-N-tert-butoxycarbonyl-
pyrrolidincarboxylic acid hydrazide.
OSO H
Table 1.
Example Acid hydrazide R H NMR (DMSO-d ) Mass (ES-1)
No. (R CONHNH ) as free acid
(MF)
6. t-Boc-NHNH H 11.05 (br s, 1H), 9.39 (br s, 2H), 4.04 (d, 1H), 3.92 (d, 279.1
1H), 3.04 (br d, 1H), 2.48 (d, 1H), 1.99-2.05 (m, 1H), (C H N O S)
7 12 4 6
1.86-1.90 (m, 1H), 1.63-1.77 (m, 2H).
7. t-Boc-HNCH -CO NHNH H NCH -CO- 10.20 (bs, 1H), 8.20 (br s, 3H), 4.01 (br s, 1H), 3.86 (br 336.2
2 2 2 2
d, 1H), 3.61 (s, 2H), 2.99 (d, 1H), 1.97-2.05 (m, 1H), (C H N O S)
9 15 5 7
1.78-1.88 (m, 1H), 1.68-1.72 (m, 1H), 1.54-1.67 (m,
2H).
8. t-Boc-HNCH CH -CONHNH H NCH CH -CO- 9.34 (d, 2H), 7.66 (br s, 2H), 4.00 (br d, 1H), 3.84 (d, 350.2
2 2 2 2 2 2
1H), 3.16 (d, 1H), 2.92-3.00 (m, 3H), 2.43-2.53 (m, (C H N O S)
16 5 7
2H), 1.85-2.05 (m, 1H), 1.74-1.75 (m, 1H), 1.51-1.73
(m, 2H).
9. t-Boc-HN-(CH ) -CONHNH H N(CH ) -CO- 9.87 (s, 1H), 9.77 (s, 1H), 7.63 (br s, 3H), 4.00 (br s, 363.9
2 3 2 2 2 3
1H), 3.86 (d, 1H), 3.16 (d, 1H), 2.76-2.73 (m, 2H), 2.20 (C H N O S)
11 19 5 7
(t, 2H), 1.97-2.01 (m, 1H), 1.51-1.84 (m, 6H).
O HO
.33 (s, 1H), 10.09 (s, 1H), 8.19 (br s, 3H), 5.48 (br s, 366.2
NHNH
. 1H), 4.02 (br s, 1H), 3.86 (d, 1H), 3.79 (d, 1H), 3.64- (C H N O S)
N H N
17 5 8
3.68 (m, 1H), 3.21 (d, 1H), 3.02 (d, 1H), 1.98-2.05 (m,
1H), 1.82-1.88 (m, 1H), 1.68-1.75 (m, 1H), 1.54-1.62
(m, 1H).
.46 (s, 1H), 10.20 (s, 1H), 9.73 (br s, 1H), 9.15 (br s, 393.9
11. 1H), 5.44 (br s, 1H), 5.31-4.45 (d, 1H), 3.99 (s, 1H), (C H N FO S)
12 18 5 7
NHNH
3.87 (d, 1H), 3.61 (dd, 2H), 3.28-3.42 (m, 1H), 3.02-
3.12 (m, 2H), 2.60-2.82 (m, 1H), 2.30-2.42 (m, 1H),
1.99-2.04 (m, 1H), 1.80-1.90 (m, 1H), 1.58-1.74 (m,
2H).
MeO MeO
.41 (s, 1H), 10.19 (s, 1H), 9.59 (br s, 1H), 8.97 (br s, 406.2
12. 1H), 4.19-4.24 (m, 1H), 4.13 (br s, 1H), 4.02 (br s, 1H), (C H N O S)
13 21 5 8
NHNH
3.87 (d, 1H), 3.38 (s, 3H), 3.16-3.33 (m, 3H), 3.02 (br
d, 1H), 1.57-2.05 (m, 6 H).
9.82 (d, 1H), 8.41 (br d, 1H), 8.19 (br d, 1H), 3.99 (br 390.3
Boc-N HN
NHNH
13. s, 1H), 3.80 (d, 1H), 3.18-3.39 (m, 5H), 2.90-3.00 (m, (C H N O S)
2 13 21 5 7
3H), 1.97-2.03 (m, 1H), 1.75-1.84 (m, 2H), 1.67-1.71
(m, 3H), 1.57-1.62 (m, 2H).
9.99 (d, 2H), 8.40 (br s, 2H), 4.00 (br s, 1H), 3.81 (d, 389.9
Boc-N NHNH
14. HN 1H), 3.10-3.21 (m, 4H), 2.91-3.01 (m, 3H), 2.65-2.66 (C H N O S)
2 13 21 5 7
O O (m, 1H), 1.97-2.05 (m, 1H), 1.54-1.88 (m, 7H).
9.96 (d, 2H), 8.39 (br s, 2H), 4.00 (br s, 1H), 3.81 (d, 390.2
Boc-N NHNH HN
. 1H), 3.09-3.17 (m, 3H), 2.97-3.02 (m, 1H), 2.87-2.92 (C H N O S)
2 13 21 5 7
(m, 1H), 2.60-2.65 (m, 1H), 1.97-2.02 (m, 1H), 1.58-
1.84 (m, 8H).
.29 (d, 1H), 10.16 (d, 1H), 8.90-9.03 (m, 1H), 8.70- 390.2
NHNH
16. 8.78 (m, 1H), 4.02 (br s, 1H), 3.82-3.87 (m, 2H), 3.12- (C H N O S)
2 13 21 5 7
3.22 (m, 2H), 2.93-3.03 (m, 2H), 1.86-2.10 (m, 2H),
boc O O
1.24-1.72 (m, 8H).
.30 (s, 1H), 10.14 (s, 1H), 9.00 (br d, 1H), 8.70-8.75 390.3
NHNH
17. (m, 1H), 4.02 (br s, 1H), 3.81-3.87 (m, 2H), 3.17-3.21 (C H N O S)
2 13 21 5 7
(m, 2H), 2.93-3.03 (m, 2H), 2.10 (br d, 1H),1.98-2.05
(m, 1H), 1.85-1.92 (m, 1H), 1.69-1.77 (m, 3H), 1.46-
1.66 (m, 4H).
.27 (s, 1H), 10.17 (s, 1H), 8.93 (br d, 1H), 8.76-8.78 390.3
NHNH
18. (m, 1H), 4.02 (br s, 1H), 3.79-3.86 (m, 2H), 3.18-3.23 (C H N O S)
2 13 21 5 7
(m, 2H), 2.93-3.02 (m, 2H), 2.14 (br d, 1H), 1.97-2.05
boc O O
(m, 1H), 1.83-1.93 (m, 1H), 1.46-1.77 (m, 7H).
NHNH
.00 (d, 1H), 9.68 (br s, 1H), 4.01 (br s, 1H), 3.83 (d, 404.9
Boc-N O
19. 1H), 3.42 (s, 1H), 3.12-3.21 (m, 6H), 2.93-3.02 (m, (C H N O S)
13 22 6 7
HN O
4H), 1.98-2.05 (m, 1H), 1.84-1.92 (m, 1H), 1.68-1.72
(m, 1H), 1.54-1.62 (m, 1H).
.44 (d, 1H), 10.18 (d, 1H), 8.67 (br d, 3H), 7.43-7.55 411.9
. (m, 5H), 4.98 (br s, 1H), 4.01 (s, 1H), 3.83 (br d, 1H), (C H N O S)
19 5 7
3.19 (d, 1H), 3.00 (br d, 1H), 1.85-2.05 (m, 2H), 1.59-
NHNH
Boc-NH
1.72 (m, 2H).
21. (RS)-t-Boc-HNCH(CH )CH - (RS)- 10.00 (s, 1H), 9.95 (d, 1H), 7.74 (br s, 3H), 4.01 (br s, 364.1
CONHNH H NCH(CH )CH 1H), 3.83 (d, 1H), 3.53-3.48 (m, 1H), 3.12-3.19 (m, (C H N O S)
2 2 3 2 11 19 5 7
-CO- 1H), 3.00 (br d, 1H), 2.36-2.42 (m, 1H), 1.98-2.06 (m,
1H), 1.78-1.87 (m, 1H), 1.66-1.76 (m, 1H), 1.54-1.62
(m, 2H), 1.19 (d, 3H)
H C CH H C CH
22. 9.92 (S, 1H), 9.82 (S, 1H), 7.71 (br s, 3H), 4.01 (br s, 378.2
3 3 3 3
Boc-HN H N
NHNH 2
1H), 3.84 (d, 1H), 3.21 (d, 1H), 3.01 (br d, 1H), 2.85- (C H N O S)
12 21 5 7
2.92 (m, 2H), 1.98-2.04 (m, 1H), 1.85-1.87 (m, 1H),
1.69-1.73 (m, 1H), 1.57-1.60 (m, 1H), 1.22 (d, 6 H).
23. 9.82 (s, 1H), 7.76 (br s, 3H), 4.00 (br s, 1H), 3.81 (d, 376.2
Boc-HN H N
NHNH 2
1H), 3.22 (d, 1H), 2.00 (d, 2H), 2.88 (d, 1H), 1.97-2.05 (C H N O S)
12 19 5 7
(m, 1H), 1.74-1.85 (m, 1H), 1.16-1.73 (m, 1H), 1.54-
1.61 (m, 1H), 1.27 (t, 2H) 1.01-1.08 (m, 2H).
NH-Boc NH
24. 10.37 (s, 1H), 10.16 (s, 1H), 8.24 (br s, 3H), 7.39 (br s, 407.2
NHNH
1H), 6.95 (br s, 1H), 4.02 (br s, 1H), 3.86 (d, 1H), 3.19 (C H N O S)
12 20 6 8
NH NH
(d, 1H), 3.02 (br d, 1H), 2.20-2.34 (m, 2H), 1.92-2.05
(m, 4H), 1.67-1.79 (m, 1H), 1.55-1.63 (m, 1H).
. t-Boc-HN-(CH ) -CONHNH H N(CH ) -CO- 9.18 (s, 1H), 9.70 (s, 1H), 7.58 (br s, 3H), 3.99 (br s, 378.2
2 4 2 2 2 4
1H), 3.80 (d, 1H), 3.21 (d, 1H), 3.99 (br d, 1H), 2.76- (C H N O S)
12 21 5 7
(br s, 2H), 2.15-2.20 (m, 1H), 1.97-2.01 (m, 1H), 1.82-
1.85 (m, 1H),1.67-1.73 (m, 1H), 1.55-1.62 (m, 6H).
NH-Boc
26. 10.16 (s, 1H), 7.86 (br s, 6H), 4.03 (br s, 1H), 3.88 (d, 407.3
NHNH
1H), 3.77 (t, 1H), 3.16 (d, 1H), 3.02 (br d, 1H), 2.73 (t, (C H N O S.CF COOH)
13 24 6 7 3
NH-Boc NH 2H), 1.99-2.05 (m, 1H), 1.72-1.76 (m, 1H), 1.62-1.71
(m, 3H), 1.13-1.60 (m, 6H).
NHNH
27. 9.97 (s, 1H), 9.71 (s, 1H), 7.74 (br s, 3H), 4.04 (s, 2H), 380.2
NH-Boc 4.01 (br s, 1H), 3.83 (d, 1H), 3.64 (t, 2H), 3.20 (d, 1H), (C H N O S)
NH 11 19 5 8
3.00-3.05 (m, 3H), 1.98-2.05 (m, 1H), 1.82-1.86 (m,
1H), 1.68-1.73 (m, 1H), 1.58-1.63 (m, 1H).
28. 10.03 (br s, 1H), 8.66 (br s, 1H), 4.05-4.12 (m, 1H), 362.2
Boc-N HN
NHNH
3.96-4.01 (m, 4H), 3.84 (d, 1H), 3.53-3.58 (m, 1H), (C H N O S)
11 17 5 7
3.21 (d, 1H), 3.01 (br d, 1H), 1.98-2.03 (m, 1H), 1.72-
1.85 (m, 1H), 1.68-1.71 (m, 1H), 1.57-1.62 (m, 1H).
29. 9.49 (s, 1H), 8.08 (s, 1H), 3.98 (br s, 1H), 3.76 (d, 1H), 376.1
N NHNH N
3.35 (d, 2H), 3.20-3.25 (m, 4H), 2.96 (br d, 1H), 1.86- (C H N O S)
12 19 5 7
2.06 (m, 1H), 1.57-1.80 (m, 7H).
. 10.35 (br s, 1H), 10.18 (s, 1H), 8.96 (br s, 2H), 4.18 (t, 376.2
NHNH
1H), 4.01 (br s, 1H), 3.86 (d, 1H), 3.17-3.25 (m, 3H), (C H N O S)
12 19 5 7
3.01 (br d, 1H), 2.31-2.35 (m, 1H), 1.98-2.03 (m, 1H),
1.76-1.91 (m, 4H), 1.66-1.74 (m, 1H), 1.57-1.62 (m,
1H).
31. 9.88 (s, 1H), 9.81 (s, 1H), 8.77 (br s, 1H), 8.29 (br s 404.2
NHNH
1H), 4.00 (br s, 1H), 3.81 (d, 1H), 3.37-3.43 (m, 1H), (C H N O S)
14 23 5 7
3.12-3.19 (m, 4H), 2.63 (br d,1H), 2.08-2.24 (m, 2H),
1.69-2.06 (m, 6H), 1.47-1.61 (m, 3H).
32. 10.02 (d, 1H), 9.96 (s, 1H), 8.80 (br s, 1H), 8.68 (br s, 376.2
Boc-NH HN
NHNH
1H), 4.00 (br s, 1H), 3.83 (d, 1H), 3.08-3.17 (m, 6H), (C H N O S)
12 19 5 7
3.00 (br d, 1H), 2.06-2.21 (m, 1H), 1.98-2.06 (m, 2H),
1.78-1.82 (m, 1H), 1.67-1.75 (m, 1H), 1.53-1.65 (m,
1H).
33. 10.03 (s, 1H), 9.96 (s, 1H), 8.80 (br s, 1H), 8.68 (br s, 376.1
Boc-NH HN
NHNH
1H), 4.00 (br s, 1H), 3.82 (d, 1H), 3.26-3.37 (m, 4H), (C H N O S)
12 19 5 7
3.17-3.25 (m, 1H), 3.06-3.10 (m, 1H), 3.00 (br d, 1H),
2.16-2.23 (m, 1H), 2.00-2.05 (m, 1H), 1.86-1.85 (m,
1H), 1.65-1.75 (m, 1H), 1.53-1.61 (m, 1H).
34. 10.44 (s,1H), 10.17 (s,1H), 9.62 (br s,1H), 8.92 (br s, 392.3
Si O
1H), 5.48-5.52 (m, 1H), 4.44 (br s,1H), 4.33 (t, 1H), (C H N O S)
12 19 5 8
4.01 (s,1H), 3.86 (d,1H), 3.19 (d,1H), 3.00-3.10 (m,
NHNH
2H), 2.26-2.31 (m, 1H), 1.87-2.06 (m, 4H), 1.66-1.75
(m, 1H), 1.54-1.62 (m, 1H).
H H N
. 2 10.28 (s, 1H), 9.11 ( br s, 1H), 8.05 (br s, 2H), 4.29 (t, 391.2
1H), 4.03 (br s, 1H), 3.87-3.95 (m, 2H), 3.48-3.53 (m, (C H N O S)
20 6 7
NHNH
2 2H), 3.04-3.24 (m, 3H), 3.02 (br d, 1H), 2.72-2.79 (m,
1H), 1.99-2.04 (m, 1H), 1.88-1.93 (m, 2 H), 1.69-1.78
(m, 1H), 1.54-1.63 (m, 1H).
Boc-NH
36. 10.48 (br s, 1H), 10.20 (s, 1H), 7.73 (d, 1H), 7.32 (br s, 433.2
NH-Boc
4H), 4.16-4.26 (m, 2H), 4.03 (br s, 1H), 3.87 (d, 1H), (C H N O S)
13 22 8 7
3.51-3.56 (m, 1H), 3.01-3.17 (m, 3H), 2.74-2.86 (m,
NHNH
1H), 1.99-2.05 (m, 1H), 1.55-1.86 (m, 5 H).
37. D O exchange: 3.98 (br s, 1H), 3.85 (d, 1H) 3.17 (br d, 418.0
NHNH
1H), 3.02-3.11 (m, 2H), 2.92-2.98 (m, 1H), 2.77 (t, (C H N O S)
2 15 25 5 7
O 1H), 2.25-2.28 (m, 2H), 2.00-2.04 (m, 1H), 1.75-1.86
boc O
(m, 3H), 1.60-1.71 (m, 4H), 1.23-1.47 (m, 4H).
38. 10.54 (br s, 1H), 10.22 (d, 1H), 8.96 (br s, 2H), 4.09 (d, 391.3
1H), 4.02 (br s, 1H), 3.87 (d, 1H), 3.62 (t, 2H), 3.38 (t, (C H N O S.CF COOH)
12 20 6 7 3
NHNH N
3H), 3.01-3.17 (m, 4H), 1.98-2.05 (m, 1H), 1.86-1.88
boc O
(m, 1H), 1.68-1.75 (m, 1H), 1.55-1.62 (m, 1H).
39. 10.46 (s, 1H), 10.18 (s, 1H), 9.37 (br d, 2H), 4.13 (br d, 392.2
NHNH 2H), 4.02 (br s, 1H), 3.86 (br d, 2H), 3.57-3.62 (m, (C H N O S)
2 12 19 5 8
2H), 3.17 (br d, 3H), 3.02 (br d, 1H), 1.98-2.04. (m,
boc O O
1H), 1.85-1.94 (m, 1H), 1.66-1.76 (m, 1H), 1.56-1.61
(m, 1H).
O O O O
40. D O exchange: 3.97 (br s, 1H), 3.83 (d, 1H), 3.59-3.68 433.3
N NHNH N (m, 4H), 3.40 (s, 2H), 3.03-3.06 (m, 6H), 1.98-2.04 (C H N O S)
14 22 6 8
Boc-N HN
(m, 1H), 1.75-1.84 (m, 1H), 1.65-1.73 (m, 1H), 1.57-
1.61 (m, 1H).
.62 (s, 1H), 10.23 (d, 1H), 8.72 (br s, 3H), 8.62 (br s, 413.2
41. N N 1H), 7.94 (t, 1H), 7.76 (dd, 1H), 7.47 (t, 1H), 5.09-5.10 (C H N O S. CF COOH)
19 18 6 7 3
(m, 1H), 4.00 (br s, 1H), 3.84 (br d, 1H), 3.14-3.21 (m,
NHNH
Boc-NH
1H), 2.99 (br d, 1H), 1.94-2.02 (m, 1H), 1.82-1.91 (m,
1H), 1.66-1.76 (m, 1H), 1.57-1.62 (m, 1H).
D O exchange: 7.33 (s, 1H), 4.00 (br s, 1H), 3.83 (d, 405.1
42. 1H), 3.28 (d, 1H), 3.00 (br d, 1H), 2.00-2.05 (m, 1H), (C H N O S )
11 14 6 7 2
boc N H N
NHNH
H 1.76-1.86 (m, 1H), 1.67-1.75 (m, 1H), 1.59-1.64 (m,
1H).
Example- 43
Sodium salt of trans-sulfuric acid mono-[2-( N ’-(cyano-acetyl)- hydrazinocarbonyl)oxo-1,6-
diaza-bicyclo[3.2.1]octyl]ester
OSO Na
Tetrabutylammonium salt of trans-sulfuric acid mono-[2-(N ’-(cyano-acetyl)-
hydrazinocarbonyl)- 7-oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester (600 mg, obtained using
procedure described in Step-1 to Step-3 of Example 1 (usi ng cyano acetic acid hydrazide in
the place of (S )-N-tert-butoxycarbonyl-pyrrolidinecarboxylic acid hydrazide) was loaded
in tetrahydrofuran and water 1:9 mixture (10 ml) and passed slowly through freshly activated
Amberlite 200C resin in sodium form (100 gm). The column was eluted with 10%
tetrahydrofuran in water mixture. The fractions were analyzed on TLC and desired fractions
were evaporated to remove volatile solvent under vacuum below 40°C. The aqueous layer
was then washed with dichloromethane (25 ml x 2) and layers were separated. The aqueous
layer was concentrated under vacuum below 40°C to provide residue, which was azeotroped
with acetone and triturated with diethyl ether to provide a suspension. The suspension was
filtered to provide title compound (S odium salt of trans-sulfuric acid mono-[2-(N ’-(2 -cyano-
acetyl)- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester) in 300 mg quantity
and in 81% yield.
Analysis: MS (E S-) C H N O SNa, 346.2 (M -1) as a free sulfonic acid;
12 5 7
H NMR (D MSO-d ) = 10.2 (s, 1H), 10.05 (s, 1H), 3.99 (s, 1H), 3.82 (d, 1H) , 3.72 (s,
1H), 3.36 (s, 1H), 3.14 ( br d, 1H), 2.99 ( d, 1H), 1.98-2.03 (m , 1H), 1.75-1.84 (m , 1H) , 1.56-
1.72 (m , 2H).
Compounds 44 to 52 ( T able 2) were using a procedure described in Example-16 and
using corresponding R CONHNH , in the place of cyano acetic acid hydrazide.
OSO Na
Table 2
Example Acid hydrazide R H NMR (DMSO-d ) Mass (ES-1)
No. (R CONHNH ) as free acid
(MF)
44. t-Boc-NHNH t-C H -O-CO- 9.70 (s, 1H), 8.71 (s, 1H), 3.98 (s, 1H), 3.73, (d, 1H), 379.3
2 4 9
3.13 (d, 1H), 2.97 (br d, 1H), 1.97-2.01 (m, 1H), 1.73- (C H N O SNa)
12 19 4 8
1.83 (m, 1H), 155-2.72 (m, 2H), 1.38 (s, 9H).
45. 10.02 (br s, 2H), 3.98 (br s, 1H), 3.85 (d, 1H), 3.66-2.70 406.3
O O O O
(m, 4H), 3.37 (br s, 2H), 3.05 (s, 2H), 2.76 (br s, 4H), (C H N O SNa)
13 20 5 8
NHNH
2.00-2.04 (m, 1H), 1.73-1.82 (m, 1H), 1.58-1.70 (m, 2H).
46. 11.00 (s, 1H), 10.17 (s, 1H), 8.91 (s, 1H), 8.17-8.20 (m, 426.9
NHNH
3H), 7.74 (s, 1H), 4.04 (br s, 1H), 3.91 (d, 1H), 3.06 (br (C H N O SNa)
14 15 6 8
H NCO N
H NCO N
d, 1H), 1.90-2.06 (m, 2H), 1.77-1.87 (m, 1H), 1.61-1.77
(m, 2H).
47. 10.45 (br s, 1H), 10.08 (br s, 1H), 3.99 (br s, 1H), 3.81 419.9
NHNH
N N (br d, 1H), 3.56-3.58 (m, 4H), 3.41-3.51 (m, 2H), 2.99- (C H N O SNa)
13 18 5 9
O O O O
3.10 (m, 2H), 2.06 (br s, 2H) 2.01-2.03 (m, 1H), 2.82-
1.83 (m, 1H), 1.59-1.72 (m, 2H).
9.81 (br s, 1H), 9.69 (br s, 1H), 5.77 (s, 2H), 4.21 (t, 1H), 419.2
NHNH
48. 3.98 (br s, 1H), 3.77 (d, 1H), 3.34-3.38 (m, 1H), 3.16- (C H N O S.Na)
N 13 19 6 8
O NH O 3.29 (m, 2H), 2.96 (br d, 1H), 1.73-1.98 ( m, 6H), 1.58-
1.72 (m, 2H).
49. 9.77 (br s, 2H), 5.95 (s, 2H), 5.32 (s, 0.5H), 5.18 (br s 437.2
0.5H), 4.38 (dd, 1H), 3.98 (br s, 1H), 3.81 (d, 1H), 3.35- (C H N O FS.Na)
13 18 6 8
NHNH
3.59 (m, 2H), 2.97-3.25 (m, 1H), 2.96 (br d, 1H), 1.99-
NH NH
2.39 (m, 2H), 1.82-1.95 (m, 1H), 1.75-1.82 (m, 1H),
1.59-1.69 (m, 2H).
50. 9.83 (br s, 2H), 7.32 (s, 1H), 4.21 (dd, 1H), 3.98 (br s, 454.2
NHNH
N 1H), 3.77 (d, 1H), 3.38-3.44 (m, 1H), 3.21-3.25 (m, 1H), (C H N O S .Na)
N 13 20 5 9 2
2.90-2.98 (m, 4H), 1.56-2.12 (m, 8H).
H C CH H C CH
D O exchange: 3.95-4.05 (m, 2H), 3.10-3.19 (m, 1H), 374.2
3 3 3 3
NHNH
NC NC
51. 2.95-3.05 (m, 1H), 1.68-1.98 (m, 4H), 1.29 (s, 3H), 1.21 (C H N O S.Na)
12 16 5 7
(s, 3H).
52. 9.95 (s, 2H), 7.93 (s, 1H), 4.03-4.05 (m, 1H), 3.99 (br s,
NHNH
1H), 3.81 (d, 1H), 3.19 (d, 1H), 2.98 (br d, 1H), 2.28-
2.48 (m, 1H), 1.84-2.25 (m, 5H), 1.56-1.75 (m, 2H).
Compounds of the invention from Example 1 to 52 were prepared using (S)-pyrroglutamic acid as a starting compound. The absolute
stereochemistry is therefore (2S, 5R) 7-oxo-1,6-diaza-bicyclo[3.2.1]octane ring. Thus, the compound of Example-2, trans-sulfuric acid mono-[2-(N’-
[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester has the absolute stereochemistry as (2S,5R)-sulfuric acid
mono-[2-(N’-[(R)-piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester. Alternatively, if the starting compound
used is (R)-pyrroglutamic acid the resulting compounds will have (2R, 5S) stereochemistry in 7-oxo-1,6-diaza-bicyclo[3.2.1]octane ring. A reference
to a compound according to the invention also includes corresponding compounds having (2S, 5R) and (2R, 5S) stereochemistry.
Biological Activity
The biological activity of representative compounds according to the invention
against various bacterial strains was investigated. In a typical study, overnight grown
bacterial cultures were diluted appropriately and inoculated on the agar media containing
doubling dilutions of the test compounds. Observation for growth or no growth was
performed after 16-20 hours of incubation at 35 ± 2°C in ambient air. The overall procedure
was performed as per Clinical and Laboratory Standards Institute (CLSI) recommendations
(Clinical and Laboratory Standards Institute (CLSI), Performance Standards for
Antimicrobial Susceptibility Testing, 20th Informational Supplement, M 100 – S20, Volume
, No. 1, 2010). The results of these studies are summarized in Tables 3 to 8.
Table 3 details antibacterial activity of representative compounds according to the
invention against various E. coli strains (NCTC 13351, M 50 and 7 MP) expressing ESBL
(Extended Spectrum Beta Lactamases).
Table 3. Antibacterial activity of representative compounds according to the invention
(MIC expressed in mcg/ml)
Bacterial Strain
Sr. Compound of
E. coli E. coli E. coli
Example No.
NCTC 13351 M 50 7 MP
1. 1 0.025 0.25 0.25
2. 2 0.25 0.25 1
3. 3 0.25 0.25 1
4. 4 8 8 16
. 5 0.25 0.25 0.5
6. 6 32 64 128
7. 7 2 2 4
8. 8 1 1 2
9. 9 1 2 4
. 10 1 8 32
11. 11 2 1 4
12. 12 1 8 32
13. 13 1 1 2
14. 14 0.5 0.25 2
. 15 8 4 16
16. 16 1 1 2
17. 17 0.5 0.5 2
18. 18 8 4 32
19. 19 1 1 2
. 20 2 2 8
21. 21 1 1 4
22. 22 4 4 8
23. 23 4 4 8
24. 24 1 1 4
. 25 1 1 4
26. 26 1 1 2
27. 27 4 2 8
28. 28 1 1 4
29. 29 32 16 128
. 30 16 8 32
31. 31 1 1 4
32. 32 0.5 0.5 1
33. 33 1 0.5 2
34. 34 2 2 8
. 35 1 1 4
36. 36 1 1 2
37. 37 2 2 4
38. 38 4 2 8
39. 39 4 2 8
40. 40 1 1 4
41. 41 4 4 16
42. 42 32 32 64
43. 43 1 2 8
44. 44 32 32 64
45. 45 4 8 8
46. 46 32 64 128
47. 47 32 64 128
48. 48 16 8 32
49. 49 32 16 16
50. 50 16 16 32
51. 51 16 16 32
52. 52 0.5 0.5 2
Tables 4 and 5 provide antibacterial activity of representative compounds according
to the invention against various Multi Drug Resistant (MDR) Gram-negative bacterial strains
expressing various ESBLs. The activities are expressed as MICs (mcg/ml). For comparison,
the activity of several known antibacterial agents (for example, Ceftazidime, Aztreonam,
Imipenem, Ciprofloxacin and Tigecycline) are also included. As can be seen, the
representative compounds according to the invention exhibit antibacterial activity against
various MDR strains. The data in Table 4 and 5 also indicates that the compounds according
to the invention exhibit potent activity against a wide variety of bacteria, even against those
producing different types of beta-lactamase enzymes. In general, the activity of the
compounds according to the invention against various beta-lactamase producing bacterial
strains is even better than the other antibacterial agents currently employed in the clinical
practice to treat such infections.
The antibacterial activity of representative compounds according to the invention was
also investigated in combination with at least one antibacterial agent using the above study
protocol and the results are given Table 6. As can be seen, the use of compounds according to
the invention significantly lowered MIC values of the antibacterial agent (e.g. in this case
Ceftazidime). The results also suggest the compounds according the invention increase
antibacterial effectiveness of the antibacterial agent when said antibacterial agent is co-
administered with a pharmaceutically effective amount of a compound of Formula (I) or a
stereoisomer or a pharmaceutically acceptable salt thereof.
The antibacterial activity of representative compounds according to the invention was
also investigated in combination with a beta-lactamase inhibitor using the above study
protocol and the results are given in Table 7. As can be seen, the compounds according to the
invention in combination with a beta lactam inhibitor exhibited excellent antibacterial activity
against various bacterial strains. For example, a combination comprising compound of
Example 2 (and also Example 3) according to the invention in combination with sulbactam
exhibited much superior MIC values compared with when these were used alone. The results
also suggest that compounds according to the invention in combination with a beta-lactam
inhibitor can be effectively used in preventing or treating a bacterial infection in a subject,
including those infections caused by bacteria producing one or more beta-lactamase enzymes.
The antibacterial activity of representative compounds according to the invention was
also investigated in combination with a beta-lactamase inhibitor and a antibacterial agent
using the above study protocol and the results are given in Table 8. As can be seen, the
compounds according to the invention in combination with at least one beta lactam inhibitor
and at least one antibacterial agent exhibited excellent antibacterial activity against various
bacterial strains. For example, a combination comprising compound of Example 2 (and also
Example 3) according to the invention in combination with sulbactam and Cefepime
exhibited better MIC values compared with when these were used alone. The results also
suggest that compounds according to the invention in combination with at least one beta-
lactam inhibitor and at least one antibacterial agent can be effectively used in preventing or
treating a bacterial infection in a subject, including those infections caused by bacteria
producing one or more beta-lactamase enzymes.
Table 4. Comparative antibacterial activity of representative compounds according to the invention against various Multi Drug Resistant (MDR)
Gram negative strains (expressed as MICs (mcg/ml).
Class A ESBL Class C ESBL KPC ESBL
Compound
E. Coli E. Coli E. Coli E. Coli E. Coli E. Coli K penumoniae K penumoniae K penumoniae
W 13353 W 13351 W 13352 M 50 H 484 B 89 H 521 H 523 H 525
Ceftazidime 32 32 > 32 > 32 > 32 > 32 > 32 > 32 > 32
Aztreonam > 32 > 32 > 32 > 32 > 32 > 32 > 32 > 32 > 32
Imipenem 0.25 0.25 0.25 0.5 4 0.5 16 16 16
Ciprofloxacin > 32 0.5 0.12 > 32 > 32 > 32 32 8 32
Tigecyclin 1 1 0.25 0.5 0.25 0.5 2 8 2
Example 1 0.25 0.5 0.5 0.5 2 0.5 0.5 0.5 0.5
Example 2 0.12 0.25 0.25 0.25 0.12 0.25 0.5 1 0.5
Example 3 0.25 0.5 0.5 0.5 0.5 0.25 0.5 0.5 0.5
Example 5 0.5 0.25 0.5 1 1 0.5 1 1 2
Example 7 0.5 2 1 2 4 4 2 1 2
Example 8 1 1 1 1 2 1 1 0.5 1
Example 9 1 1 1 1 2 1 1 0.5 0.5
Example 11 2 2 2 2 16 2 4 2 2
Example 13 1 1 2 1 4 1 1 0.5 1
Example 14 0.5 0.5 0.5 0.5 2 0.5 0.5 0.25 0.25
Example 17 0.25 0.5 0.5 0.5 4 0.5 0.5 0.5 0.5
Example 19 2 2 2 2 4 1 1 1 1
Example 30 8 16 16 8 8 8 8 8 > 32
Example 35 1 1 1 1 1 1 2 1 1
Example 38 2 4 4 2 8 2 2 2 2
Example 43 1 1 1 1 8 1 2 1 1
Table 5. Comparative antibacterial activity of representative compounds according to the invention against various Multi Drug Resistant
(MDR) Gram negative strains (expressed as MICs (mcg/ml).
Compound Class B ESBL P. aeruginosa
K. penumoniae E. Coli E. Coli ATCC Ps Ps
S 48 M 3 M 44 27853 21 32
Ceftazidime > 32 > 32 > 32 1 > 32 > 32
Aztreonam > 32 > 32 > 32 2 8 8
Imipenem 16 8 32 4 > 32 > 32
Ciprofloxacin > 32 > 32 > 32 0.5 32 0.12
Tigecyclin 1 4 0.25 16 16 16
Example 1 2 1 0.25 16 16 32
Example 2 0.5 2 0.5 8 8 8
Example 3 0.5 0.5 0.12 2 4 4
Example 5 2 1 0.5 > 32 > 32 > 32
Example 7 4 4 2 > 32 > 32 > 32
Example 8 1 4 0.5 8 16 8
Example 9 1 2 0.5 8 8 16
Example 11 2 8 1 > 32 > 32 > 32
Example 13 1 1 1 32 32 16
Example 14 4 0.5 0.25 8 16 8
Example 17 0.5 0.5 0.5 > 32 > 32 > 32
Example 19 4 1 1 32 > 32 > 32
Example 30 > 32 8 16 > 32 > 32 > 32
Example 35 2 1 2 > 32 > 32 32
Example 38 4 1 4 > 32 > 32 > 32
Example 43 1 4 0.5 > 32 > 32 > 32
Table 6. Antibacterial activity of Ceftazidime in presence of representative compounds of the invention against various Multi
Drug Resistant (MDR) Gram negative strains.
Ceftazidime MIC (expressed in mcg/ml)
Sr. Composition
K. pneumoniae P. vulgaris
ATCC 700603 S-137B
(ESBL type: Class A) (ESBL type: Class C)
1. Ceftazidime alone > 32 > 32
2. Ceftazidime + Compound of Example 1 (4 mcg/ml) 0.06 1
3. Ceftazidime + Compound of Example 2 (4 mcg/ml) 0.06 1
4. Ceftazidime + Compound of Example 3 (4 mcg/ml) 0.06 1
. Ceftazidime + Compound of Example 5 (4 mcg/ml) 0.25 4
6. Ceftazidime + Compound of Example 8 (4 mcg/ml) 0.06 0.5
7. Ceftazidime + Compound of Example 9 (4 mcg/ml) 0.12 1
8. Ceftazidime + Compound of Example 14 (4 mcg/ml) 0.03 0.5
Note: The MICs of each of compounds of Example 1, 2, 3, 5, 8, 9 and 14 when used alone (in the absence of Ceftazidime) is > 32
mcg/ml.
Table 7. Antibacterial activity of sulbactam in combination with a compound according to the invention.
MIC of sulbactam (expressed in mcg/ml)
Sr. Composition
A. baumannii A. baumannii A. baumannii A. baumannii
J-143 1460648 S-334 G-165
1. Sulbactam alone 32 32 32 32
2. Sulbactam + compound of Example 2 (4 mcg/ml) 4 4 4 2
3. Sulbactam + compound of Example 2 (8 mcg/ml) 4 4 2 2
4. Sulbactam + compound of Example 3 (4 mcg/ml) 8 4 8 2
. Sulbactam + compound of Example 3 (8 mcg/ml) 1 2 4 2
Standalone MIC of compound of Example 2 and Example 3 for each of the strains was > 32 mcg/ml.
Table 8. Antibacterial activity of an antibacterial agent in combination with sulbactam and a compound according to the invention.
MIC of Cefepime (expressed in mcg/ml)
Sr. Composition
A. baumannii A. baumannii A. baumannii A. baumannii
J-143 1460648 S-334 G-165
1. Cefepime alone > 32 > 32 32 > 32
2. Cefepime + compound of Example 2 (4 mcg/ml) > 32 32 32 > 32
3. Cefepime + compound of Example 2 (8 mcg/ml) 32 32 32 32
4. Cefepime + Sulbactam (4 mcg/ml) 16 32 16 16
. Cefepime + Sulbactam (8 mcg/ml) 16 16 8 8
6. Cefepime + Sulbactam (8 mcg/ml) + compound of Example 2 (4 mcg/ml) 0.25 0.25 0.25 0.25
7. Cefepime + Sulbactam (8 mcg/ml) + compound of Example 2 (8 mcg/ml) 0.25 0.25 0.25 0.25
8. Cefepime + compound of Example 3 (4 mcg/ml) > 32 32 32 > 32
9. Cefepime + compound of Example 3 (8 mcg/ml) 32 32 32 32
. Cefepime + Sulbactam (8 mcg/ml) + compound of Example 3 (4 mcg/ml) 0.12 0.12 0.12 0.12
11. Cefepime + Sulbactam (8 mcg/ml) + compound of Example 3 (8 mcg/ml) 0.06 0.06 0.06 0.06
Standalone MIC of sulbactam for each of the strains was 32 mcg/ml.
Standalone MIC of compound of Example 2 and Example 3 for each of the strains was > 32 mcg/ml.
Where the terms “comprise”, “comprises”, “comprised” or “comprising” are used in
this specification , they are to be interpreted as specifying the presence of the stated features,
integers, steps or components referred to, but not to preclude the presence or addition of one
or more other feature, integer, step, component or group thereof.
Further, any prior art reference or statement provided in the specification is not to be
taken as an admission that such art constitutes, or is to be understood as constituting, part of
the common general knowledge.
Claims (58)
1. A compound of Formula (I) Formula (I) or a stereoisomer or a pharmaceutically acceptable salt thereof; wherein: R is: ( a ) hydrogen, ( b ) (C O) -R , (c ) COOR , or (d ) COCH COR n is 0, 1 or 2; R is: (a ) SO M, (b ) SO NH , (c ) PO M, (d ) CH COOM, (e ) CF COOM, (f ) CHFCOOM, or (g ) CF ; M is hydrogen or a cation; R is: (a ) hydrogen, ( b ) C -C alkyl optionally substituted with one or more substituents independently selected from halogen, OR , CN, COOR , CONR R , NR R , 5 5 6 7 6 7 NR COR , NR CONR R heterocyclyl, heteroaryl, cycloalkyl or aryl, 5 8 5 6 7, (c ) CN, (d ) NR R , (e ) CONR R , (f ) NHCONR R , (g ) aryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, 1 6 5 6 7 6 7 2 SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 2 2 2 6 7 ( h ) heterocyclyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, NHC( N H) N R R 6 7 2 2 2 2 6 7, or NHCONR R , (i ) heteroaryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 6 7 2 2 2 2 6 7 (j ) cycloalkyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 6 7 2 2 2 2 6 7 (k ) cycloalkyl substituted with C -C alkyl wherein C -C alkyl is further 1 6 1 6 substituted with one or more substituents independently selected from OR , NR R , halogen, CN, or CONR R , or 6 7 6 7 ( l ) OR ; R is: (a ) hydrogen, (b ) C -C alkyl optionally substituted with one or more substituents independently selected from halogen, OR , CN, COOR , CONR R , NR R , 5 5 6 7 6 7 NR COR , heterocyclyl, heteroaryl, cycloalkyl or aryl, (c ) aryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, 1 6 5 6 7 6 7 2 SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 2 2 2 6 7 ( d ) heterocyclyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 6 7 2 2 2 2 6 7 (e ) heteroaryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 6 7 2 2 2 2 6 7 (f ) cycloalkyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 6 7 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R ; 6 7 2 2 2 2 6 7 R and R are each independently: (a ) hydrogen, or ( b ) C -C alkyl optionally substituted with one or more substituents independently selected from halogen, CN, CONR R , NR R , heterocyclyl, 6 7 6 7 heteroaryl, cycloalkyl or aryl; R and R are each independently: (a ) hydrogen, (b ) C -C alkyl optionally substituted with one or more substituents independently selected from halogen, OR , CN, COOR , CONR R , NR R , 5 5 5 8 5 8 NR COR , heterocyclyl, heteroaryl, cycloalkyl or aryl, (c ) aryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, CONR R , SO -alkyl, 1 6 5 5 8 5 8 2 SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 2 2 2 5 8 (d ) heterocyclyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 5 8 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 5 8 2 2 2 2 5 8 (e ) heteroaryl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 5 8 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 5 8 2 2 2 2 5 8 (f ) cycloalkyl optionally substituted with one or more substituents independently selected from C -C alkyl, OR , NR R , halogen, CN, 1 6 5 5 8 CONR R , SO -alkyl, SO -aryl, OSO -alkyl, OSO -aryl, or NHCONR R , 5 8 2 2 2 2 5 8 (g ) R and R are joined together to form a four to seven member ring.
2. The compound according to Claim 1, selected from: trans-sulfuric acid mono-[2-(N ’-[(S )- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( R )-piperidincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-{7-oxo[N’-(( R )-piperidincarbonyl)- hydrazinocarbonyl]-1,6-diaza- bicyclo[3.2.1]-octyloxy}-acetic acid; trans-difluoro-{7-oxo[N’-(( R )-piperidincarbonyl)-hydrazinocarbonyl]-1,6- diaza-bicyclo[3.2.1]-octyloxy}-acetic acid; trans-sulfuric acid mono-[2-hydrazinocarbonyloxo-1,6-diaza-bicyclo[3.2.1]oct yl]ester; trans-sulfuric acid mono-[2-( N ’-(a mino-acetyl) -hydrazinocarbonyl)oxo-1,6-diaza- bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( 3 -amino-propioyl) - hydrazinocarbonyl) oxo-1,6- diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(4 -amino-butanoyl)- hydrazinocarbonyl)oxo-1,6- diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( 2S )aminohydroxy-propioyl) - hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(2S ,4S)- 4-fluoro-pyrrolidincarbonyl]- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-[(2S ,4R)- 4-methoxy-pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(pi peridincarbonyl) -hydrazinocarbonyl)oxo- 1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(( R S) - piperidincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( S )-piperidincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( ( R S)- piperidincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(( S )-piperidincarbonyl) - hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(( R ) -piperidincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( pi perazinyl-acetyl)-hydrazinocarbonyl)oxo- 1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( R S)- 1-aminophenyl-acetyl)- hydrazinocarbonyl)- 7-oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( R S)- 3-amino-butanoyl)-hydrazinocarbonyl) oxo- 1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( 3 -amino-2,2-dimethyl-propioyl)-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(1 -aminomethyl-cyclopropancarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( 2 -aminocarboxamido-butanoyl)- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(5 -amino-pentanoyl)- hydrazinocarbonyl)oxo-1,6- diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(( 2S )-2,6-diamino-hexanoyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-(( 2 -aminoethoxy) -acetyl)-hydrazinocarbonyl)oxo- 1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[azetidincarbonyl]-hydrazinocarbonyl)oxo-1,6- diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[pyrrolidincarbonyl]-hydrazinocarbonyl)oxo- 1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-[(( S )- 3-pyrrolidinyl)- propionyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester; trans-sulfuric acid mono-[2-(N ’-[( R S)- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-( N ’-[(S )- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(2S ,4R)- 4-hydroxy-pyrrolidincarbonyl]- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(2S ,4S)- 4-amino-pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(2S ,4S)- 4-guanidino-pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-[(R S)- 3-piperidinyl-propionyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester; trans-sulfuric acid mono-[2-(N ’-( ( R S) - piperazincarbonyl)-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( S ) -morpholincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(3 -oxopiperazinyl-propionyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-(( R S) - 1-aminopyridinyl-acetyl)- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; trans-sulfuric acid mono-[2-(N ’-( 2 -amino-thiazolcarbonyl)-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; or a stereoisomer or a pharmaceutically acceptable salt thereof.
3. The compound according to Claim 1, selected from: Sodium salt of trans-sulfuric acid mono-[2-(N ’-(cyano-acetyl) - hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-N’-(7-oxosulfooxy-1,6-diaza-bicyclo[3.2.1]octane carboxylic acid)-hydrazinecarboxylic acid tert-butyl ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-(morpholinyl-acetyl) - hydrazinocarbonyl) - 7-oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-(6 -carboxamido-pyridincarbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-(morpholinoxo-carbonyl)- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-[(S) - 1-carbamoyl-pyrrolidin carbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-( N ’-[( 2S,4S)carbamoylfluoro- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-[(S)- 1-methanesulfonyl-pyrrolidin carbonyl]-hydrazinocarbonyl)- 7-oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-(cyano-dimethyl-acetyl)- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; Sodium salt of trans-sulfuric acid mono-[2-(N ’-[( S)- 5-oxo-pyrrolidincarbonyl]- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl]ester; or a stereoisomer thereof.
4. The compound according to Claim 1, which is trans-sulfuric acid mono-[2- (N ’-[( R ) - piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof.
5. The compound according to Claim 1, which is trans-sulfuric acid mono-[2- (N ’-[(R ) - pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof.
6. Use of a compound according to any one of Claims 1 to 3, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
7. Use of a compound according to Claim 4, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
8. Use of a compound according to Claim 5, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
9. A pharmaceutical composition comprising a compound according to any one of Claims 1 to 3.
10. A pharmaceutical composition comprising a compound according to Claim 4.
11. A pharmaceutical composition comprising a compound according to Claim 5.
12. The pharmaceutical composition according to Claim 9, further comprising at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof.
13. The pharmaceutical composition according to Claim 10, further comprising at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof.
14. The pharmaceutical composition according to Claim 11, further comprising at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof.
15. The pharmaceutical composition according to Claim 9, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
16. The pharmaceutical composition according to Claim 10, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
17. The pharmaceutical composition according to Claim 11, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
18. The pharmaceutical composition according to Claim 12, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
19. The pharmaceutical composition according to Claim 13, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
20. The pharmaceutical composition according to Claim 14, further comprising at least one antibacterial agent or a pharmaceutically acceptable derivative thereof.
21. The pharmaceutical composition according to any one of Claims 15 to 20, wherein the antibacterial agent is selected from a group consisting of aminoglycosides, ansamycins, carbacephems, cephalosporins, cephamycins, lincosamides, lipopeptides, macrolides, monobactams, nitrofurans, penicillins, polypeptides, quinolones, sulfonamides, tetracyclines, or oxazolidinone antibacterial agents.
22. The pharmaceutical composition according to any one of Claims 15 to 20, wherein the antibacterial agent is a beta-lactam antibacterial agent.
23. The pharmaceutical composition according to any one of Claims 15 to 20, wherein the antibacterial agent is selected from a group consisting of penicillins, penems, carbapenems, cephalosporins, and monobactams.
24. A pharmaceutical composition according to any one of Claims 15 to 20, wherein the antibacterial agent is a cephalosporin antibiotic selected from a group consisting of cephalothin, cephaloridine, cefaclor, cefadroxil, cefamandole, cefazolin, cephalexin, cephradine, ceftizoxime, cefoxitin, cephacetrile, cefotiam, cefotaxime, cefsulodin, cefoperazone, ceftizoxime, cefmenoxime, cefmetazole, cephaloglycin, cefonicid, cefodizime, cefpirome, ceftazidime, ceifriaxone, cefpiramide, cefbuperazone, cefozopran, cefepime, cefoselis, cefluprenam, cefuzonam, cefpimizole, cefclidin, cefixime, ceftibuten, cefdinir, cefpodoxime axetil, cefpodoxime proxetil, cefteram pivoxil, cefetamet pivoxil, cefcapene pivoxil or cefditoren pivoxil, cefuroxime, cefuroxime axetil, loracarbacef, ceftaroline and latamoxef.
25. The pharmaceutical composition according to any one of Claims 15 to 20, wherein the antibacterial agent is selected from a group consisting of ceftazidime, cefepime, cefpirome, piperacillin doripenem, meropenem, imipenem, ceftaroline and ceftolozane.
26. A pharmaceutical composition comprising: (a ) trans-sulfuric acid mono-[2- (N ’-[(R )- piperidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) sulbactam or a pharmaceutically acceptable derivative thereof.
27. A pharmaceutical composition comprising: (a ) trans-sulfuric acid mono-[2- (N ’-[(R )- pyrrolidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) sulbactam or a pharmaceutically acceptable derivative thereof.
28. A pharmaceutical composition comprising: ( a ) trans-sulfuric acid mono-[2- (N ’-[(R ) - piperidincarbonyl]-hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) cefepime or a pharmaceutically acceptable derivative thereof.
29. A pharmaceutical composition comprising: ( a ) trans-sulfuric acid mono-[2- ( N ’-[(R )- pyrrolidincarbonyl]-hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) cefepime or a pharmaceutically acceptable derivative thereof.
30. Use of a pharmaceutical composition according to any one of Claims 9 to 29, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
31. The use according to Claim 30, wherein the infection is caused by bacteria producing one or more beta-lactamase enzymes.
32. Use of: (a ) a compound of Formula (I) according to Claim 1 or a stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
33. Use of: (a ) a compound according to any one of Claims 2 or 3, or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
34. Use of: ( a ) trans-sulfuric acid mono-[2-(N ’-[(R )- piperidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
35. Use of: ( a) trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
36. Use of: (a ) a compound of Formula (I) according to Claim 1 or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
37. Use of: (a ) a compound according to Claim 2 or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
38. Use of: (a) a compound according to Claim 3 or a stereoisomer or a pharmaceutically acceptable salt thereof, and ( b ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
39. Use of: (a) trans-sulfuric acid mono-[2-(N ’-[(R )- piperidincarbonyl]- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
40. Use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R ) - pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
41. Use of: (a) trans-sulfuric acid mono-[2-(N ’-[(R )- piperidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) cefepime or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
42. Use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) cefepime or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
43. Use of: (a) trans-sulfuric acid mono-[2-(N ’-[( R )- piperidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) sulbactam or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
44. Use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, and (b ) sulbactam or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
45. Use of: (a ) a compound of Formula (I) according to Claim 1 or a stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
46. Use of: (a ) a compound according to any one of Claims 2 or 3, or a stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
47. Use of: (a ) trans-sulfuric acid mono-[2-(N ’-[(R )- piperidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
48. Use of: (a) trans-sulfuric acid mono-[2-(N ’-[(R )- pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof; (b ) at least one beta-lactamase inhibitor selected from sulbactam, tazobactam, clavulanic acid, or a pharmaceutically acceptable derivative thereof, and (c ) at least one antibacterial agent or a pharmaceutically acceptable derivative thereof, for the manufacture of a medicament for the prevention or treatment of a bacterial infection in a subject.
49. Use of a compound according to any one of Claims 1 to 3, or a stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a medicament for increasing antibacterial effectiveness of an antibacterial agent in a subject.
50. Use of trans-sulfuric acid mono-[2-(N ’-[(R )- piperidincarbonyl]- hydrazinocarbonyl) oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a medicament for increasing antibacterial effectiveness of an antibacterial agent in a subject.
51. Use of trans-sulfuric acid mono-[2-(N’-[(R )- pyrrolidincarbonyl]- hydrazinocarbonyl)oxo-1,6-diaza-bicyclo[3.2.1]octyl] ester or a stereoisomer or a pharmaceutically acceptable salt thereof, for the manufacture of a medicament for increasing antibacterial effectiveness of an antibacterial agent in a subject.
52. The use according to any one of Claims 36 to 40 and 45 to 51, wherein the antibacterial agent is selected from a group consisting of aminoglycosides, ansamycins, carbacephems, cephalosporins, cephamycins, lincosamides, lipopeptides, macrolides, monobactams, nitrofurans, penicillins, polypeptides, quinolones, sulfonamides, tetracyclines, or oxazolidinone antibacterial agents.
53. The use according to any one of Claims 36 to 40 and 45 to 51, wherein the antibacterial agent is a beta-lactam antibacterial agent.
54. The use according to any one of Claims 36 to 40 and 45 to 51, wherein the antibacterial agent is selected from a group consisting of penicillins, penems, carbapenems, cephalosporins, and monobactams.
55. The use according to any one of Claims 36 to 40 and 45 to 51, wherein the antibacterial agent is a cephalosporin antibiotic selected from a group consisting of cephalothin, cephaloridine, cefaclor, cefadroxil, cefamandole, cefazolin, cephalexin, cephradine, ceftizoxime, cefoxitin, cephacetrile, cefotiam, cefotaxime, cefsulodin, cefoperazone, ceftizoxime, cefmenoxime, cefmetazole, cephaloglycin, cefonicid, cefodizime, cefpirome, ceftazidime, ceifriaxone, cefpiramide, cefbuperazone, cefozopran, cefepime, cefoselis, cefluprenam, cefuzonam, cefpimizole, cefclidin, cefixime, ceftibuten, cefdinir, cefpodoxime axetil, cefpodoxime proxetil, cefteram pivoxil, cefetamet pivoxil, cefcapene pivoxil or cefditoren pivoxil, cefuroxime, cefuroxime axetil, loracarbacef, ceftaroline and latamoxef.
56. The use according to any one of Claims 36 to 40 and 45 to 51, wherein the antibacterial agent is selected from a group consisting of ceftazidime, cefepime, cefpirome, piperacillin doripenem, meropenem, imipenem, ceftaroline and ceftolozane.
57. The use according to any one of Claims 32 to 56, wherein the infection is caused by bacteria producing one or more beta-lactamase enzymes.
58. The compound according to Claim 1, substantially as hereinbefore described with reference to the accompanying Examples and/or
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
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IN2412MU2011 | 2011-08-27 | ||
IN2412/MUM/2011 | 2011-08-27 | ||
PCT/IB2012/054290 WO2013030733A1 (en) | 2011-08-27 | 2012-08-24 | 1,6- diazabicyclo [3,2,1] octan-7-one derivatives and their use in the treatment of bacterial infections |
Publications (2)
Publication Number | Publication Date |
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NZ616542A NZ616542A (en) | 2015-01-30 |
NZ616542B2 true NZ616542B2 (en) | 2015-05-01 |
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