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US20140018540A1 - Casein kinase 1delta (ck 1delta) inhibitors - Google Patents

Casein kinase 1delta (ck 1delta) inhibitors Download PDF

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Publication number
US20140018540A1
US20140018540A1 US13/993,303 US201113993303A US2014018540A1 US 20140018540 A1 US20140018540 A1 US 20140018540A1 US 201113993303 A US201113993303 A US 201113993303A US 2014018540 A1 US2014018540 A1 US 2014018540A1
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Prior art keywords
alkyl
aryl
groups
heteroaryl
conh
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US13/993,303
Inventor
Joseph M. Sheridan
Jonathan R. Heal
William D.O. Hamilton
Ian Pike
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Proteome Sciences PLC
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Electrophoretics Ltd
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Priority claimed from GBGB1021161.3A external-priority patent/GB201021161D0/en
Priority claimed from GBGB1109162.6A external-priority patent/GB201109162D0/en
Application filed by Electrophoretics Ltd filed Critical Electrophoretics Ltd
Assigned to ELECTROPHORETICS LIMITED reassignment ELECTROPHORETICS LIMITED ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: HAMILTON, WILLIAM D.O., HEAL, JONATHAN R., PIKE, IAN, SHERIDAN, JOSEPH M.
Publication of US20140018540A1 publication Critical patent/US20140018540A1/en
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Definitions

  • the invention relates to pharmaceutical compositions comprising casein kinase 1 delta (CK1 ⁇ ) inhibitors and to the use of said inhibitors in the treatment of neurodegenerative disorders such as Alzheimer's disease.
  • CK1 ⁇ casein kinase 1 delta
  • Alzheimer's disease also known as senile dementia of the Alzheimer type (SDAT), primary degenerative dementia of the Alzheimer's type (PDDAT), or Alzheimer's
  • SDAT senile dementia of the Alzheimer type
  • PDAT primary degenerative dementia of the Alzheimer's type
  • Alzheimer's is the most common form of dementia. Most often, Alzheimer's disease is diagnosed in people over 65 years of age, although the less-prevalent early-onset Alzheimer's can occur much earlier. In 2006, there were 26.6 million sufferers worldwide. Alzheimer's is predicted to affect 1 in 85 people globally by 2050.
  • Alzheimer's disease is a neurodegenerative disease characterised by the presence of senile plaques and neurofibrillary tangles in the brain.
  • the degree of dementia at death correlates better with neurofibrillary tangle numbers than with senile plaques counts.
  • the presence of neurofibrillary tangles in neurons results in the death of those neurons, implying that prevention of tangle formation is an important therapeutic goal.
  • the principal protein that forms the neurofibrillary tangle is the microtubule-associated protein, tau, which assembles into filaments that have the appearance of twisting about each other in pairs and are referred to as paired helical filaments (PHF).
  • PHF paired helical filaments
  • Intraneuronal deposits of tau in the form of typical neurofibrillary tangles of AD or other morphologically distinct tau aggregates in a number of other neurodegenerative diseases is the basis for grouping these conditions as tauopathies.
  • the main examples of the tauopathies are frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, and multisystem atrophy (MSA).
  • the intracellular tau deposits (usually neuronal but can also be glial) are all filamentous and mostly in a hyperphosphorylated state compared to the level of phosphorylation of tau from control human brain. In the case of AD, this hyperphosphorylated tau is often referred to as PHF-tau because it is derived from the PHF.
  • Tau is a phosphoprotein, the function of phosphorylation remaining to be unequivocally established.
  • increased phosphorylation of tau on multiple serine and threonine residues reduces the ability of tau to promote microtubule assembly and to stabilise assembled microtubules, effects that have been demonstrated both in vitro and in cells.
  • Many studies have shown that PHF-tau from AD brain is more heavily phosphorylated on serine and threonine than tau from control brain.
  • casein kinase 1 Mammalian casein kinase-1 exists as multiple isoforms CK1 ⁇ , CK1 ⁇ , CK1y1, CK1y2, CK1y3, CK1 ⁇ and CK1 ⁇ .
  • the role of CK1 ⁇ as a potential tau kinase is of particular interest since it has been reported that CK1 ⁇ protein is increased more than 30-fold in the hippocampus of Alzheimer brain compared to equivalent controls (Ghoshal, N. et al (1999) Am. J.
  • Pathol 155, 1163-1172 while its mRNA content is increased 24-fold (Yasojima, K. et al (2000) Brain Res 865, 116-120) and CK1 has also been shown to be tightly associated with PHF (Kuret, J. et al (1997) J. Neurochem 69, 2506-2515).
  • CK1 ⁇ has also been reported to phosphorylate tau at two epitopes detecting using phospho-specific monoclonal antibodies to tau, and exogenous expression of CK1 ⁇ in non-neuronal cells reduces binding of tau to microtubules (Li, G. et al (2004) J. Biol. Chem. 279, 15938-15945).
  • CK1 activity is stimulated by amyloid beta-peptide (A ⁇ ), a component of the senile neuritic plaques that, together with tangles, characterise Alzheimer brain (Chauhan, A. et al (1993) Brain Res. 629, 47-52). Additional evidence for possible involvement of CK1 in Alzheimer's disease comes from the reported influence of CK1 in the regulation of A ⁇ production in neurons (Flajolet, M. et al (2007) PNAS USA 104, 4159-4164). Further work has confirmed that at least 6 newly identified phosphorylation sites in PHF-tau (all on serine or threonine residues) can be generated by CK1 ⁇ .
  • a ⁇ amyloid beta-peptide
  • CK1 ⁇ inhibitors which may be of potential therapeutic benefit in the treatment of neurodegenerative diseases, such as tauopathies including Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, and multisystem atrophy (MSA).
  • tauopathies including Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, and multisystem atrophy (MSA).
  • a pharmaceutical composition comprising a compound of formula (IB) or a pharmaceutically acceptable salt or solvate thereof:
  • Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
  • Z represents a bond, —C(R 7b )(R 8b )—, (CH 2 ) 2 , —O—, —S—, —CH 2 —O—, —(CH 2 ) 2 —O—, NR 6b , —N(R 6b )—C(R 7b )(R 8b )—, —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—(CH 2 ) 3 —, —CH 2 —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—CO—, —CH 2 —NH—CO—(
  • R 4b represents halogen, C 1-6 alkyl, C 1-6 alkenyl, C 1-6 alkynyl, C 3-8 cycloalkyl, haloC 1-6 alkyl, hydroxyl, C 1-6 alkoxy, —O—C 1-6 alkenyl, haloC 1-6 alkoxy, —COOH, —CO—C 1-6 alkyl, —COO—C 1-6 alkyl, —CONH 2 , —CH 2 —CONH 2 , —NH—C 1-6 alkyl, —NH—C 2-6 alkenyl, —NH—CO—C 1-6 alkyl, —CO—NH—C 1-6 alkyl, —O—CH 2 —CO—NH—C 1-6 alkyl, —CH 2 —CH 2 —CO—NH—C 1-6 alkyl, —S—C 1-6 alkyl, —SO—C 1-6 alkyl, —SO—C 1-6 alkyl,
  • Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
  • Z represents a bond, —C(R 7b )(R 8b )—, (CH 2 ) 2 , —O—, —S—, —CH 2 —O—, —(CH 2 ) 2 —O—, NR 6b , —N(R 6b )—C(R 7b )(R 8b )—, —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—(CH 2 ) 3 —, —CH 2 —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—CO—, —CH 2 —NH—CO—(
  • R 4b represents halogen, C 1-6 alkyl, C 1-6 alkenyl, C 1-6 alkynyl, C 3-8 cycloalkyl, haloC 1-6 alkyl, hydroxyl, C 1-6 alkoxy, —O—C 1-6 alkenyl, haloC 1-6 alkoxy, —COOH, —CO—C 1-6 alkyl, —COO—C 1-6 alkyl, —CONH 2 , —CH 2 —CONH 2 , —NH—C 1-6 alkyl, —NH—C 2-6 alkenyl, —NH—CO—C 1-6 alkyl, —CO—NH—C 1-6 alkyl, —O—CH 2 —CO—NH—C 1-6 alkyl, —CH 2 —CH 2 —CO—NH—C 1-6 alkyl, —S—C 1-6 alkyl, —SO—C 1-6 alkyl, —SO—C 1-6 alkyl,
  • Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
  • Z represents a bond, —C(R 7b )(R 8b )—, (CH 2 ) 2 , —O—, —S—, —CH 2 —O—, —(CH 2 ) 2 —O—, NR 6b , —N(R 6b )—C(R 7b )(R 8b )—, —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—(CH 2 ) 3 —, —CH 2 —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—CO—, —CH 2 —NH—CO—(
  • R 4b represents halogen, C 1-6 alkyl, C 1-6 alkenyl, C 1-6 alkynyl, C 3-8 cycloalkyl, haloC 1-6 alkyl, hydroxyl, C 1-6 alkoxy, —O—C 1-6 alkenyl, haloC 1-6 alkoxy, —COOH, —CO—C 1-6 alkyl, —COO—C 1-6 alkyl, —CONH 2 , —CH 2 —CONH 2 , —NH—C 1-6 alkyl, —NH—C 2-6 alkenyl, —NH—CO—C 1-6 alkyl, —CO—NH—C 1-6 alkyl, —O—CH 2 —CO—NH—C 1-6 alkyl, —CH 2 —CH 2 —CO—NH—C 1-6 alkyl, —S—C 1-6 alkyl, —SO—C 1-6 alkyl, —SO—C 1-6 alkyl,
  • Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system;
  • Z represents a bond, —C(R 7b )(R 8b )—, —O—, —S—, —CH 2 —O—, —N(R 6b )—C(R 7b )(R 8b )—, —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—(CH 2 ) 3 —, —N(R 6b )—CO—, —N(R 6b )—CO—CH 2 —, —N(R 7b )—CH ⁇ , ⁇ CH—, —N ⁇ CH—, —C(R 6b ) ⁇ CH—, —C( ⁇ C(R 7b )(R 8
  • R 4b represents halogen, hydroxyl, —O—C 1-6 alkenyl, —COO—C 1-6 alkyl, —NH—C 1-6 alkyl, —SO 2 —NH 2 , amino, cyano, ⁇ O, —CH 2 —CO—NH—C 3-8 cycloalkyl, —CH 2 -aryl, —OCH 2 -heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R 4b may be optionally substituted by one or more halogen, C 1-6 alkyl, C 1-6 alkoxy, ⁇ S or hydroxyl groups and wherein said C 1-6 alkyl or C 2-6 alkenyl groups of R 4b may be optionally substituted by one or more hydroxyl, amino, cyano, C 1-6 alkoxy, CONH
  • Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system.
  • Het B represents benzoxazolyl, indolyl or indolizinyl.
  • R 5b represents hydrogen
  • R 6b represents hydrogen, C 1-6 alkyl, C 1-6 alkoxy, —COOH, —CO-aryl, —O—CO-heteroaryl, —CO-heteroaryl or —C(R 7b )(R 8b )-heteroaryl, wherein said aryl groups of R 6b may be optionally substituted by one or more halogen or C 1-6 alkoxy groups.
  • R 1b represents a monocyclic aryl or heteroaryl ring system, wherein R 1b may be substituted by one or more (e.g. 1, 2 or 3) R 4b groups.
  • R 1b represents a monocyclic aryl group such as phenyl optionally substituted by one or more (e.g. 1) R 4b groups.
  • R 1b represents a monocyclic heteroaryl group such as thienyl, pyrimidinyl or pyrazolinyl optionally substituted by one or more (e.g. 1 or 2) R 4b groups.
  • R 4b represents halogen, hydroxyl, —O—C 1-6 alkenyl, —COO—C 1-6 alkyl, —NH—C 1-6 alkyl, —SO 2 —NH 2 , amino, cyano, ⁇ O, —CH 2 —CO—NH—C 3-8 cycloalkyl, —CH 2 -aryl, —OCH 2 -heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R 4b may be optionally substituted by one or more halogen, C 1-6 alkyl, C 1-6 alkoxy, ⁇ S or hydroxyl groups and wherein said C 1-6 alkyl or C 2-6 alkenyl groups of R 4b may be optionally substituted by one or more hydroxyl, amino, cyano, C 1-6 alkoxy, CONH 2 or —COO
  • R 4b represents halogen (e.g. fluorine), amino or heteroaryl (e.g. pyridyl).
  • Z represents a bond, —C(R 7b )(R 8b )—, —O—, —S—, —CH 2 —O—, —N(R 6b )—C(R 7b )(R 8b )—, —N(R 6b )—(CH 2 ) 2 —, —N(R 6b )—(CH 2 ) 3 —, —N(R 6b )—CO—, —N(R 6b )—CO—CH 2 —, —N(R 7b )—CH ⁇ , ⁇ CH—, —N ⁇ CH—, —C(R 6b ) ⁇ CH—, —C( ⁇ C(R 7b )(R 8b ))—, SO 2 , —CH 2 —NH—SO 2 —, CO, —O—CH 2 —CO—, —SO 2 —N(R 6b )—C(R 7b )(R 8b )—, SO
  • Z represents a bond or CO.
  • n represents an integer from 0 to 2. In one embodiment, m represents 0. In an alternative embodiment, m represents 2.
  • R 2b represents halogen, haloC 1-6 alkyl, C 1-6 alkyl, C 3-8 cycloalkyl, hydroxyl, C 1-6 alkoxy, —S—C 1-6 alkyl, amino, cyano, NO 2 , ⁇ O, —CONH 2 , —CO—C 1-6 alkyl, —COO—C 1-6 alkyl, C 1-6 alkyl, —CO—NH—C 1-6 alkyl or —CO—NH—CH(Me)-COOH, wherein said C 1-6 alkyl groups of R 2b may be optionally substituted by one or more cyano or hydroxyl groups.
  • R 2b represents amino or —CONH 2 .
  • the compound of formula (IB) is selected from any of compounds 2-3, 26-28, 30-33, 35, 47-48, 51, 57-60, 63-64, 78, 84, 113, 123, 127-129, 145, 155-157, 171-173, 204, 206-207, 210, 225, 227, 233, 235-236, 241-242, 244, 249, 269, 285, 288, 303, 307-312, 314-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 384-391, 396, 399-402, 404-405, 407-411, 414, 424-425, 427-428, 437, 448, 456-457, 482, 484-485, 489-491, 495, 497-498, 505, 507, 516, 519, 524, 526, 553, 559-560, 568, 570, 575, 609, 615-616
  • the compound of formula (IB) is selected from any of compounds 2-3, 26-28, 30, 32-33, 47-48, 51, 59-60, 84, 113, 123, 127, 129, 145, 155, 157, 172-173, 204, 206-207, 210, 225, 233, 235-236, 241, 244, 269, 285, 288, 307-311, 315-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 385-386, 388-391, 396, 399-402, 404-405, 407-410, 414, 424, 427-428, 437, 457, 482, 490, 495, 497-498, 505, 516, 519, 553, 559-560 or 568 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compound of formula (IB) is selected from any of compounds 30, 314, 324-325, 391, 405, 626, 705, 753-754, 759, 770, 784, 808, 833 or 847 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compound of formula (IB) is selected from any of compounds 324-325, 405, 754 or 847 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compound of formula (IB) is selected from any of compounds 30, 288, 314, 324-325, 336, 374, 391, 405, 615-616, 626, 705, 740, 753-754, 756, 759, 770, 784, 808, 819, 833, 844, 847, 869, 872, 875, 933, 952, 955, 969, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compounds of this embodiment were tested in the CK1 ⁇ inhibition assay as described herein and exhibited inhibition of greater than 5%.
  • the compound of formula (IB) is selected from any of compounds 324-325, 405, 754, 847, 952, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compounds of this embodiment were tested in the CK1 ⁇ inhibition assay as described herein and exhibited inhibition of greater than 50%.
  • the compound of formula (IB) is selected from any one of compounds:
  • the compound of formula (IB) is selected from any of compounds 324, 952, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compounds of this embodiment were tested in the CK1 ⁇ inhibition assay as described herein and exhibited inhibition of greater than 90%.
  • the compound of formula (IB) is selected from any of compounds 324, 952, 987 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compounds of this embodiment were tested in a range of kinase inhibition assays and not only exhibited inhibition of greater than 90% in the CK1 ⁇ inhibition assay as described herein, but also demonstrated significant and selective inhibition for CK1 ⁇ when compared with other kinases.
  • compound number 324 (5-(1,3-benzoxazol-2-yl)-4-(pyridin-4-yl)pyrimidin-2-amine) demonstrated selectivity for CK1 ⁇ over ABL2/ARG, ALK4/ACVR1B, ALK5/TGFBR1, CDK5/p25, CK1a1, CK1g1, CK1g3, CLK2, c-SRC, EGFR, EPHA2, FGFR1, GSK3b, HGK/MAP4K4, JNK2, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKA, PKCa, PKCb2, RIPK2, ROCK1, TNIK and YES/YES1 each of which were inhibited at levels lower than 40%.
  • compound number 952 (2-[3-(pyridin-4-yl)-1H-pyrazol-4-yl]-1,3-benzoxazole) demonstrated selectivity for CK1 ⁇ over ABL2/ARG, ALK4/ACVR1B, ALK5/TGFBR1, CDK5/p25, CK1g1, CK1g2, CK1g3, c-SRC, EGFR, EPHA2, FGFR1, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKA, PKCa, PKCb2, ROCK1 and YES/YES1 each of which were inhibited at levels lower than 40%.
  • compound number 987 (2-amino-3-[(4-fluorophenyl)carbonyl]indolizine-1-carboxamide) demonstrated selectivity for CK1 ⁇ over ABL2/ARG, CDK5/p25, CK1 g1, CK1g2, CK1g3, CLK2, c-SRC, FGFR1, GSK3b, HGK/MAP4K4, JNK2, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKCa, PKCb2, ROCK1 and TNIK each of which were inhibited at levels lower than 40%.
  • compound number 999 (2-amino-1-[(4-fluorophenyl)carbonyl]-1H-indole-3-carboxamide) demonstrated selectivity for CK1 ⁇ over ABL2/ARG, CDK5/p25, CK1 g1, CK1g2, CLK2, c-SRC, FGFR1, GSK3b, HGK/MAP4K4, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKCa, PKCb2 and ROCK1 each of which were inhibited at levels lower than 40%.
  • the compound of formula (IB) is selected from any of compounds 324 and 987 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compounds of this embodiment have been demonstrated to have a protective effect on cell viability as can be seen in the data presented herein and in particular within FIGS. 1 and 2 .
  • the compounds of this embodiment have also been demonstrated to inhibit phosphorylation of two different amino acid residues within Tau proteins (i.e. Ser 396 and Thr 391) as shown in FIGS. 4 and 5 .
  • the compound of formula (IB) is compound 324 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • the compound of this embodiment has been demonstrated to have a protective effect on cell viability in a dose dependent manner as can be seen in the data presented herein and in particular within FIG. 1 .
  • the compound of this embodiment has also been demonstrated to inhibit phosphorylation of two different amino acid residues within Tau proteins (i.e. Ser 396 and Thr 391) as shown in FIGS. 4A and 5 .
  • salts are intended to indicate salts which are not harmful to the patient.
  • Such salts include pharmaceutically acceptable acid addition salts, pharmaceutically acceptable metal salts and pharmaceutically acceptable alkaline addition salts.
  • Acid addition salts include salts of inorganic acids as well as organic acids.
  • suitable inorganic acids include hydrochloric, hydrobromic, hydroiodic, phosphoric, sulfuric, nitric acids and the like.
  • suitable organic acids include formic, acetic, trichloroacetic, trifluoroacetic, propionic, benzoic, cinnamic, citric, fumaric, glycolic, lactic, maleic, malic, malonic, mandelic, oxalic, picric, pyruvic, salicylic, succinic, methanesulfonic, ethanesulfonic, tartaric, ascorbic, pamoic, bismethylene salicylic, ethanedisulfonic, gluconic, citraconic, aspartic, stearic, palmitic, EDTA, glycolic, p-aminobenzoic, glutamic, benzenesulfonic, p-toluenesulfonic acids and the like.
  • compositions include the pharmaceutically acceptable salts listed in J. Pharm. Sci. 1977, 66, 2, which is incorporated herein by reference.
  • metal salts include lithium, sodium, potassium, magnesium salts and the like.
  • ammonium and alkylated ammonium salts include ammonium, methylammonium, dimethylammonium, trimethylammonium, ethylammonium, hydroxyethylammonium, diethylammonium, butylammonium, tetramethylammonium salts and the like.
  • alkaline salts include, for example, sodium, potassium, lithium, calcium, magnesium or ammonium or organic bases such as, for example, methylamine, ethylamine, propylamine, trimethylamine, diethylamine, triethylamine, N,N-dimethylethanolamine, tris(hydroxymethyl)aminomethane, ethanolamine, pyridine, piperidine, piperazine, picoline, dicyclohexylamine, morpholine, benzylamine, procaine, lysine, arginine, histidine, N-methylglucamine.
  • bases such as, for example, methylamine, ethylamine, propylamine, trimethylamine, diethylamine, triethylamine, N,N-dimethylethanolamine, tris(hydroxymethyl)aminomethane, ethanolamine, pyridine, piperidine, piperazine, picoline, dicyclohexylamine, morpholine, benzyl
  • the compounds of formula (IB) can be in racemic forms, as well as in the form of pure enantiomers or non racemic (scalemic) mixture of enantiomers, including when the compounds of formula (IB) have more than one stereogenic centre.
  • the compounds of formula (IB) have unsaturated carbon carbon double bonds, both the cis (Z) and trans (E) isomers and their mixtures belong to the invention.
  • halogen means a fluorine, chlorine, bromine or iodine atom.
  • C 1-6 alkyl means any linear, branched hydrocarbon groups having 1 to 6 carbon atoms, or cyclic hydrocarbon groups having 3 to 6 carbon atoms.
  • Representative examples of such alkyl groups include methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl and t-butyl, n-pentyl, isopentyl, neopentyl, cyclopropyl, cyclobutyl, cyclopentyl and cyclohexyl.
  • References to “haloC 1-6 alkyl” mean a C 1-6 alkyl group substituted by one or more halogen atoms as herein defined.
  • C 1-6 alkylene means a saturated divalent hydrocarbon chain having the specified number of member atoms.
  • C 1-6 alkylene refers to a bond or an alkylene group having from 1 to 6 member atoms.
  • Alkylene groups may be straight or branched. Representative branched alkylene groups have one or two branches.
  • Alkylene includes methylene, ethylene, propylene (n-propylene and isopropylene) and butylene (n-butylene, isobutylene, and t-butylene).
  • C 2-6 alkenyl means any linear, branched hydrocarbon groups of 2 to 6 carbon atoms, or cyclic hydrocarbon group having 3 to 6 carbon atoms having at least one double bond.
  • alkenyl groups include ethenyl, propenyl, butenyl and cyclohexenyl.
  • C 2-6 alkynyl means any linear, or branched hydrocarbon groups of 2 to 6 carbon atoms, having at least one triple bond.
  • Representative examples of such alkynyl groups include ethynyl, propargyl and butynyl.
  • C 1-6 alkoxy means an —O—C 1-6 alkyl group wherein C 1-6 alkyl is as defined herein. Examples of such groups include methoxy, ethoxy, propoxy, butoxy, pentoxy or hexoxy and the like.
  • C 3-8 cycloalkyl means a saturated monocyclic hydrocarbon ring of 3 to 8 carbon atoms. Examples of such groups include cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl or cyclooctyl and the like.
  • aryl means a C 6-12 monocyclic or bicyclic hydrocarbon ring wherein at least one ring is aromatic. Examples of such groups include phenyl, indyl or naphthyl and the like.
  • heteroatom means a nitrogen, sulphur, or oxygen atom.
  • heterocyclyl means a saturated or unsaturated non-aromatic ring containing from 1 to 4 heteroatoms as member atoms in the ring. Heterocyclyl groups containing more than one heteroatom may contain different heteroatoms. Heterocyclyl groups may be optionally substituted with one or more substituents as defined herein. Heterocyclyl groups are monocyclic ring systems or fused bicyclic or polycyclic ring systems or bicyclic structures known as heterocyclic “spiro” ring systems. In certain embodiments, heterocyclyl is saturated. In other embodiments, heterocyclyl is unsaturated and non-aromatic.
  • Non-limiting examples of monocyclic heterocyclyl ring systems include pyrrolidinyl, tetrahydrofuranyl, dihydrofuranyl, pyranyl, tetrahydropyranyl, dihydropyranyl, tetrahydrothienyl, pyrazolidinyl, oxazolidinyl, thiazolidinyl, piperidinyl, homopiperidinyl, piperazinyl, morpholinyl, thiamorpholinyl, 1,3-dioxolanyl, 1,3-dioxanyl, 1,4-dioxanyl, 1,3-oxathiolanyl, 1,3-oxathianyl, 1,3-dithianyl, and azetidinyl.
  • heteroaryl means an aromatic ring containing from 1 to 4 heteroatoms as member atoms in the ring. Heteroaryl groups containing more than one heteroatom may contain different heteroatoms. Heteroaryl groups may be optionally substituted with one or more substituents as defined herein. Heteroaryl groups are monocyclic ring systems or are fused bicyclic or polycyclic ring systems. Monocyclic heteroaryl rings have 5 or 6 member atoms. Bicyclic heteroaryl rings have from 7 to 11 member atoms.
  • Bicyclic heteroaryl rings include those rings wherein phenyl and a monocyclic heterocyclyl ring are attached forming a fused bicyclic ring system, and those rings wherein a monocyclic heteroaryl ring and a monocyclic cycloalkyl, cycloalkenyl, heterocyclyl, or heteroaryl ring are attached forming a fused bicyclic ring system.
  • heteroaryl includes pyrrolyl, pyrazolyl, imidazolyl, oxazolyl, isoxazolyl, thiazolyl, isothiazolyl, furanyl, furazanyl, thienyl, triazolyl, pyridinyl, pyrimidinyl, pyridazinyl, pyrazinyl, triazinyl, tetrazinyl, indolyl, isoindolyl, indolizinyl, indazolyl, purinyl, quinolinyl, isoquinolinyl, quinoxalinyl, quinazolinyl, pteridinyl, cinnolinyl, benzimidazolyl, benopyranyl, benzoxazolyl, benzofuranyl, isobenzofuranyl, benzothiazolyl, benzothienyl, furopyridinyl, and
  • heterocyclic ring system mean either a heterocyclyl ring system or a heteroaryl ring system as hereinbefore defined.
  • Representative compounds of formula (IB) include the compounds as set forth below:
  • a pharmaceutical composition comprising a compound of formula (IB) for use in the treatment of a neurodegenerative disorder, such as tauopathies.
  • compositions of the invention may comprise, in addition to one of the above substances, a pharmaceutically acceptable excipient, carrier, buffer, stabiliser or other materials well known to those skilled in the art. Such materials should be non-toxic and should not interfere with the efficacy of the active ingredient.
  • a pharmaceutically acceptable excipient e.g. oral, intravenous, cutaneous or subcutaneous, nasal, intramuscular, intraperitoneal routes.
  • compositions for oral administration may be in tablet, capsule, powder or liquid form.
  • a tablet may include a solid carrier such as gelatin or an adjuvant.
  • Liquid pharmaceutical compositions generally include a liquid carrier such as water, petroleum, animal or vegetable oils, mineral oil or synthetic oil.
  • Physiological saline solution dextrose or other saccharide solution or glycols such as ethylene glycol, propylene glycol or polyethylene glycol may be included.
  • the active ingredient will be in the form of a parenterally acceptable aqueous solution which is pyrogen-free and has suitable pH, isotonicity and stability.
  • a parenterally acceptable aqueous solution which is pyrogen-free and has suitable pH, isotonicity and stability.
  • isotonic vehicles such as Sodium Chloride Injection, Ringer's Injection, Lactated Ringer's Injection.
  • Preservatives, stabilisers, buffers, antioxidants and/or other additives may be included, as required.
  • the compounds of formula (IB) are believed to be casein kinase 1 delta (CK1 ⁇ ) inhibitors.
  • Certain compounds of formula (IB) have inhibitory activity of greater than 5%, in particular greater than 10%, more particularly greater than 25%, yet more particularly greater than 50%, especially greater than 75%, such as greater than 90%.
  • Such compounds may be useful in the treatment in neurodegenerative disorders such as tauopathies. Tauopathies are conditions which are characterised by neurofibrillary tangles or aggregates of the tau protein.
  • Tauopathies are a recognised class of conditions known to those skilled in the art and include Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, multisystem atrophy (MSA), neurobasal degeneration with iron accumulation, type 1 (Hallervorden-Spatz), argyrophilic grain dementia, Down's syndrome, diffuse neurofibrillary tangles with calcification, dementia pugilistica, Gerstmann-Straussler-Scheinker disease, myotonic dystrophy, Niemann-Pick disease type C, progressive subcortical gliosis, prion protein cerebral amyloid angiopathy, tangle only dementia, postencephalitic parkinsonism, subacute sclerosing panencephalitis, Creutzfeldt-Jakob disease, amyotrophic lateral sclerosis/parkinsonism-dementia complex
  • the intracellular tau deposits are usually neuronal or glial and are filamentous and generally in a hyperphosphorylated state as compared to the level of phosphorylation in tau from control human brain.
  • this hyperphosphorylated tau is often referred to a paired helical filament tau (PHF) tau because it is derived from the PHF.
  • the tauopathy comprises Alzheimer's disease.
  • a method of treating a neurodegenerative disorder such as tauopathies, which comprises administering a therapeutically effective amount of a compound of formula (IB).
  • the compounds of the invention may be tested for inhibition of casein kinase 1 delta (CK1 ⁇ ) in accordance with the assay protocols described in US 2010/0152157, EP 1,636,375 or Hanger et al (2007) J. Biol. Chem. 282, 23645-23654.
  • the assay was conducted in accordance with the following protocol:
  • Base Reaction buffer 20 mM Hepes (pH 7.5), 10 mM MgCl 2 , 1 mM EGTA, 0.02% Brij35, 0.02 mg/ml BSA, 0.1 mM Na 3 VO 4 , 2 mM DTT, 1% DMSO
  • Recombinant human full-length construct GST-tagged, expressed in insect cells.
  • the PhosphoTau SRM V2 assay measures total tau and relative phosphorylation levels at five of the most commonly studied sites on Tau and was obtained from Proteome Sciences plc (Cobham, England). None of the sites in the V2 assay is uniquely phosphorylated by CK1 ⁇ and there is a possibility that compound-induced inhibition of phosphorylation measured by this method may be achieved through promiscuous inhibition of other kinases such as GSK3b and/or CDK5. To address this limitation, Proteome Sciences has developed a V3 assay that measures total tau and two sites that are exclusively phosphorylated by CK1 ⁇ in addition to four others that have been shown to be phosphorylated in vitro by at least one other Tau kinase in addition to CK1 ⁇ . Table 1 lists the various sites covered and the candidate Tau kinases reported in Hanger et al. (2007).
  • the SH-SY5Y-TMHT cell line (JSW Life Sciences, Graz, Austria) represents an in vitro model of tauopathy.
  • the cell line is created by stably transfecting the human neuroblastoma derived SH-SY5Y cell line with a vector containing the full length human 2N4R Tau isoform which carries two common disease associated mutations (V337M/R406W).
  • V337M/R406W two common disease associated mutations
  • both the SH-SY5Y-TMHT cell line and a transgenic mouse line carrying the same human transgene were shown to express high levels of human Tau which becomes hyperphosphorylated at multiple epitopes previously demonstrated to be phosphorylated in various human tauopathies including Alzheimer's disease.
  • SH-SY5Y-TMHT cells exposed to different kinase inhibitors, including JNK-Inhibitor SP600125, and CK1 inhibitor IC261 levels of Tau phosphorylation at key pathogenic sites were reduced in patterns consistent with the known site-specificity of the targeted kinase.
  • the SH-SY5Y-TMHT cell line is ideally suited to the screening of novel Tau kinase inhibitors.
  • SH-SY5Y-TMHT cells are kept in culture medium (DMEM medium, 10% FCS, 1% NEAA, 1% L-Glutamine, 100 ⁇ g/ml Gentamycin, 300 ⁇ g/ml Geneticin G-418) for 2 days until 80-90% confluency. Cells are then differentiated in culture medium supplemented with 10 ⁇ M retinoic acid (RA) for 7 days changing medium every 2 to 3 days. Differentiated cells are seeded onto 6-well plates and 96-well plates at a cell density of 1.25 ⁇ 10 6 and 8 ⁇ 10 5 cells per well, respectively. On day 8 post-differentiation, the test compounds, reference compounds and vehicle control were added to the culture medium.
  • DMEM medium 10% FCS
  • NEAA 1% NEAA
  • L-Glutamine 100 ⁇ g/ml Gentamycin, 300 ⁇ g/ml Geneticin G-418
  • RA retinoic acid
  • one plate of cells is subjected to a MTT assay to evaluate the effect of test and reference items on cell viability.
  • Remaining wells are washed once with cold PBS and harvested in 300 ⁇ l RIPA-Buffer [50 mM Tris pH 7.4, 1% Nonident P40, 0.25% Na-deoxy-cholate, 150 mM NaCl, 1 mM EDTA, 1 ⁇ M NaF, 1 ⁇ M Na-ortho-vanadate, 80 mM Glycerophosphate, supplemented with freshly added protease (Calbiochem) and phosphatase (Sigma) inhibitor cocktail].
  • RIPA-Buffer 50 mM Tris pH 7.4, 1% Nonident P40, 0.25% Na-deoxy-cholate, 150 mM NaCl, 1 mM EDTA, 1 ⁇ M NaF, 1 ⁇ M Na-ortho-vanadate, 80 mM Glycerophosphate, supplemented with freshly added protease (
  • the cell suspension is transferred into a 1.5 ml tube and additionally lysed by sonication on ice. An aliquot of 20 ⁇ l is taken for the determination of the protein concentration (BCA assay). Subsequently, the lysates are snap frozen and stored at ⁇ 80° C. until shipment.
  • MTT mitochondrial dehydrogenase activity
  • OD optical density
  • the concentration of total protein in each cell lysate is determined using a standard BCA assay (Pierce Biotechnology, Rockford, USA). Briefly, 20 ⁇ l of cell lysate was used in the assay according to the manufacturer's instructions.
  • Total cell lysates from TMHT cell lines treated with Compound 324, Compound 987, PF670462 and relevant vehicle control respectively are first subjected to 1-dimensional SDS-PAGE to purify the protein fraction.
  • Stacking gels are loaded with approximately 100 ⁇ g total protein based on BCA assay results. Gels are run until the total protein content forms a single discrete band in the stacking gel. Each protein band is then cut from the gel and digested with either trypsin or Asp-N and analysed using the PhosphoTau SRM assay V2 or V3 respectively.
  • Each assay method quantifies the phosphorylation in pre-clinical material using a triple quadrupole mass spectrometer (TSQ Vantage, Thermo Scientific, Hemel Hempstead, UK).
  • TSQ Vantage Thermo Scientific, Hemel Hempstead, UK
  • phosphopeptides and pre-clinical samples were resolved by RP-chromatography (XBridge column, Waters, Manchester, UK) over a 9 minute gradient 0-30% ACN (buffer A; 0.1% FA, buffer B; ACN, 0.1% FA).
  • Buffer A 0.1% FA
  • buffer B 0.1% FA
  • ACN 0.1% FA
  • the area under the SRM LC peak was used to quantitate the amount of analyte present in each cell lysate as a single point reference to the signal of the heavy peptide spike.
  • An 11 point calibration curve of light phosphopeptides with each point in the curve spiked with 100 fmol heavy phosphopeptides was also produced to determine assay characteristics (LOD, LOQ, precision and accuracy).
  • LOD assay characteristics
  • Lysates of treated cells were prepared in Laemmli buffer and 10 ⁇ g loaded into each lane of a 10% Nu-PAGE gel (Invitrogen, UK). Samples were run until the coomassie blue dye fromt was within 1 cm of the bottom of the gel. The separated proteins were transferred onto nitrocellulose and blots developed using antibodies specific for total tau (Polyclonal Rabbit Anti-Human Tau, Dako, UK (cat #A0024)) and phospho-Threonine 231 (Tau (Phospho-Thr231) Antibody, Signalway Antibody, USA (cat #11110)) respectively. In each case the bound antibody was detected using ECL Rabbit IgG, HRP-Linked (from donkey) (GE Healthcare, UK (cat #NA934))
  • FIG. 1 shows the effect of Compound 324 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of Compound 324 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar).
  • FIG. 1 shows the effect of Compound 987 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of Compound 987 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar).
  • VC vehicle control
  • FIG. 3 shows the effect of PF670462 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of PF670462 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar).
  • Protein concentration of cell lysates of the treated SH-SY5Y-TMHT cells was determined using a standard BCA assay. Protein amount was determined from all samples in duplicates. The protein concentration of the samples was in the expected range according to the amount of cells seeded per 12-well plate ranging between 150-350 ⁇ g/ml.
  • FIG. 4 An example showing reduction of phosphorylation on Serine 396 is shown in FIG. 4 .
  • This Figure shows mass spectrometric determination of CK1d-selective compounds on phosphorylation of Serine 396 in SH-SY5Y-TMHT cells.
  • Panel A shows cells treated with Vehicle Control (VC) or Compound 324 (T.I.1 — 10 ⁇ M) and
  • Panel B shows cells treated with Vehicle Control (VC) or Compound 987 (T.I.2 — 10 ⁇ M).
  • FIG. 5 shows the Western Blot measurement of pT231 (panel A) and total Tau (panel B) levels in SH-SY5Y-TMHT cells treated with selective CK1d inhibitors. As shown in FIG. 5 , all three compounds reduced the detectable level of pT231 in Tau protein whereas this epitope was strongly present in vehicle-treated cells.

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Abstract

The invention relates to pharmaceutical compositions comprising casein kinase 1 delta (CK1δ) and to the use of said inhibitors in the treatment of neurodegenerative disorders such as Alzheimer's disease.

Description

  • The invention relates to pharmaceutical compositions comprising casein kinase 1 delta (CK1δ) inhibitors and to the use of said inhibitors in the treatment of neurodegenerative disorders such as Alzheimer's disease.
  • Alzheimer's disease (AD; also known as senile dementia of the Alzheimer type (SDAT), primary degenerative dementia of the Alzheimer's type (PDDAT), or Alzheimer's) is the most common form of dementia. Most often, Alzheimer's disease is diagnosed in people over 65 years of age, although the less-prevalent early-onset Alzheimer's can occur much earlier. In 2006, there were 26.6 million sufferers worldwide. Alzheimer's is predicted to affect 1 in 85 people globally by 2050.
  • Alzheimer's disease is a neurodegenerative disease characterised by the presence of senile plaques and neurofibrillary tangles in the brain. The degree of dementia at death correlates better with neurofibrillary tangle numbers than with senile plaques counts. The presence of neurofibrillary tangles in neurons results in the death of those neurons, implying that prevention of tangle formation is an important therapeutic goal. The principal protein that forms the neurofibrillary tangle is the microtubule-associated protein, tau, which assembles into filaments that have the appearance of twisting about each other in pairs and are referred to as paired helical filaments (PHF). PHF are present in different locations in degenerating neurons in the Alzheimer brain and when many aggregate in the neuronal cell body, they produce the neurofibrillary tangle (Lee et al, 2001).
  • Intraneuronal deposits of tau in the form of typical neurofibrillary tangles of AD or other morphologically distinct tau aggregates in a number of other neurodegenerative diseases, is the basis for grouping these conditions as tauopathies. Thus, in addition to AD, the main examples of the tauopathies are frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, and multisystem atrophy (MSA). The intracellular tau deposits (usually neuronal but can also be glial) are all filamentous and mostly in a hyperphosphorylated state compared to the level of phosphorylation of tau from control human brain. In the case of AD, this hyperphosphorylated tau is often referred to as PHF-tau because it is derived from the PHF.
  • Tau is a phosphoprotein, the function of phosphorylation remaining to be unequivocally established. However, increased phosphorylation of tau on multiple serine and threonine residues reduces the ability of tau to promote microtubule assembly and to stabilise assembled microtubules, effects that have been demonstrated both in vitro and in cells. Many studies have shown that PHF-tau from AD brain is more heavily phosphorylated on serine and threonine than tau from control brain. This has been demonstrated partly by protein sequencing and partly by demonstrating that certain monoclonal antibodies only label either PHF-tau or non-phosphorylated tau and not PHF-tau; the epitopes for many of these antibodies have been mapped to particular phosphorylated residues present in PHF-tau and absent from control brain tau. The pathological tau from most other cases of other tauopathies seems to be similarly hyperphosphorylated to PHF-tau.
  • These findings strongly imply that similar abnormalities in regulating phosphorylation of tau are shared by all the tauopathies including AD.
  • A number of proline-directed and non-proline directed protein kinases have been suggested to have a role in the generation of PHF-tau in Alzheimer brain, including casein kinase 1. Mammalian casein kinase-1 exists as multiple isoforms CK1α, CK1β, CK1y1, CK1y2, CK1y3, CK1δ and CK1δ. The role of CK1δ as a potential tau kinase is of particular interest since it has been reported that CK1δ protein is increased more than 30-fold in the hippocampus of Alzheimer brain compared to equivalent controls (Ghoshal, N. et al (1999) Am. J. Pathol 155, 1163-1172) while its mRNA content is increased 24-fold (Yasojima, K. et al (2000) Brain Res 865, 116-120) and CK1 has also been shown to be tightly associated with PHF (Kuret, J. et al (1997) J. Neurochem 69, 2506-2515). CK1δ has also been reported to phosphorylate tau at two epitopes detecting using phospho-specific monoclonal antibodies to tau, and exogenous expression of CK1δ in non-neuronal cells reduces binding of tau to microtubules (Li, G. et al (2004) J. Biol. Chem. 279, 15938-15945). Of note in the context of Alzheimer's disease is a report that CK1 activity is stimulated by amyloid beta-peptide (Aβ), a component of the senile neuritic plaques that, together with tangles, characterise Alzheimer brain (Chauhan, A. et al (1993) Brain Res. 629, 47-52). Additional evidence for possible involvement of CK1 in Alzheimer's disease comes from the reported influence of CK1 in the regulation of Aβ production in neurons (Flajolet, M. et al (2007) PNAS USA 104, 4159-4164). Further work has confirmed that at least 6 newly identified phosphorylation sites in PHF-tau (all on serine or threonine residues) can be generated by CK1δ. The finding that a number of phosphorylation sites in PHF-tau for which CK1 is a strong candidate kinase, including three for which it is the only known kinase, implies that CK1 may make an important contribution to the pathogenesis of Alzheimer's disease (Hanger et al (2007) J. Biol. Chem. 282, 23645-23654).
  • There is therefore a need for CK1δ inhibitors which may be of potential therapeutic benefit in the treatment of neurodegenerative diseases, such as tauopathies including Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, and multisystem atrophy (MSA).
  • According to a first aspect of the invention there is provided a pharmaceutical composition comprising a compound of formula (IB) or a pharmaceutically acceptable salt or solvate thereof:
  • Figure US20140018540A1-20140116-C00001
  • wherein
    “Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
    Z represents a bond, —C(R7b)(R8b)—, (CH2)2, —O—, —S—, —CH2—O—, —(CH2)2—O—, NR6b, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —CH2—N(R6b)—(CH2)2—, —N(R6b)—CO—, —CH2—NH—CO—(CH2)2—, —N(R6b)—CO—CH2—, ═N—, —N(R7b)—CH═, —C(H)(CN)—, —C(═N—NH—COC1-6 alkyl)-, —CH═C(R6b)—CO—, ═CH—, —N═CH—, —N═C(Me)—, —C(R6b)═CH—, —NH—CO—C(═CH-heteroaryl)-, —C(═C(R7b)(R8b))—, —CH═CH—CO—N(R6b)—, —CH═C(R6b)—CO—NH—CH2—, —CH═C(R6b)—NH—CO—, —CH═C(R6b)—CO—O—CH2—, —CS—S—CH2—, —NH—CS—NH—, —NH—CS—NH—CH2—, —NH—CS—NH—(CH2)2—, —CH2—N(CSNH2)—CH2—, —S—C(R5b)(R6b)—, —S—(CH2)2—O—, SO2, —NH—SO2—, —CH2—NH—SO2—, CO, —CH2—CO—, —(CH2)2—CO—, —O—CH2—CO—, —(CH2)2—CO—, COO, —COO—C(R7b)CO—, —CH═C(R5b)—CONH—CH2—, —CO—CH2—N(R6b)—CO—, —CO—CH2—C(R6b)—CH2—CO—, —CO—CH2—N(R6b)—CH2—, —CO—NH—N═C(R7b)—, —S—CH2—CO—, —S—CH2—CO—N(R6b)—, —S—CH2—CO—N(R6b)—CH2—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —CH2—C(R6b)(OH)—, —C(OH)(CH(Me)(C3-8 cycloalkyl))-CH2—, —C(OH)(R6b)—CH2—, —CH(Me)-NH—CO—CH2—, —CO—N(R6b)—CH2—, —C(H)(R6b)—CO—N(R5b)—CH2—, —CO—N(R6b)—CH2—CH2—, —CO—N(R6b)—CH2—CH2—CO—NH—CH2—, —CO—NH—C(—CONH2)═CH—, —CO—NH—CH(—CONH2)—CH2—, —CH2—C(H)(Me)-CH2—S—, —O—CH2—CO—NH—, —CH2—N(R6b)—CO—CH2—O—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(H)(—CH2-heteroaryl)-, —C(NH-aryl)═N—N═CH—, —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—N═C(-aryl)-CO—, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(—NH-aryl)═N—N═CH—, —NH—C(—NH-aryl)═N—CONH—, —C(═CH-aryl)-CONH—CH2—, —CH═C(R6b)—CONH—, —CH(—CH2-aryl)-NH—CO— or —CH(OH)—, wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
    R5b represents hydrogen, C1-6 alkyl or cyano;
    R6b represents hydrogen, C1-6 alkyl, C1-6 alkoxy, cyano, COOH, —COOC1-6 alkyl, C3-8 cycloalkyl, —CH2—C3-8 cycloalkyl, aryl, heteroaryl, —C1-6 alkylene-aryl, —CO-aryl, —O—CO-heteroaryl, —CO-heteroaryl or —C(R7b)(R8b)-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
    R7b and R8b independently represent hydrogen or C1-6 alkyl;
    R1b represents aryl, C3-8 cycloalkyl, monocyclic or bicyclic heterocyclyl or a monocyclic or bicyclic heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
    R4b represents halogen, C1-6 alkyl, C1-6 alkenyl, C1-6 alkynyl, C3-8 cycloalkyl, haloC1-6 alkyl, hydroxyl, C1-6 alkoxy, —O—C1-6 alkenyl, haloC1-6 alkoxy, —COOH, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —CONH2, —CH2—CONH2, —NH—C1-6 alkyl, —NH—C2-6 alkenyl, —NH—CO—C1-6 alkyl, —CO—NH—C1-6 alkyl, —O—CH2—CO—NH—C1-6 alkyl, —CH2—CH2—CO—NH—C1-6 alkyl, —S—C1-6 alkyl, —SO—C1-6 alkyl, —SO2—C1-6 alkyl, —SO2—NH2, —SO2—NH—C1-6 alkyl, —S—CH2—CO—C2-6 alkenyl, —SO2—OH, amino, cyano, NO2, ═O, —CO—NH—(CH2)2)—OMe, —NH—C3-8 cycloalkyl, —CH2—CO—NH—C3-8 cycloalkyl, —CO-heterocyclyl, —CO-heteroaryl, —COO—(CH2)2-heterocyclyl, —CH2-aryl, —OCH2-aryl, —OCH2-heteroaryl, —CH2—O—CO-aryl, —O-aryl, —NH—CO-aryl, —NH—CO-heteroaryl, —NH—CO—CH2-aryl, —NH-aryl, aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
    m represents an integer from 0 to 3;
    R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, —CH2—S—C1-6 alkyl, —S—C2-6 alkynyl, amino, cyano, NO2, ═O, ═S, —SO2—C1-6 alkyl, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —NH—CO—C1-6 alkyl, —NH—CO—CH═CH—CH2—N(Me)2, C1-6 alkyl, —CO—NH—C1-6 alkyl, —CO—NH—CH(Me)-COOH, —S—CH2—CO—N(Et)2, —NH—(CH2)2—OH, —NH—(CH2)3—OH, —NH—CH(Et)-CH2—OH, —CO—NH—(CH2)3—OH, —CH(CH2OH)2 or —S—CH2—CO—NH—CO—NH—C1-6 alkyl, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups; with the proviso that the compound is other than compound number 54, 373, 458, 496, 585, 590, 594, 596-597, 601-602, 649, 703, 778, 877, 891, 910, 912, 926 and 962-963.
  • According to one particular aspect of the invention which may be mentioned there is provided a compound of formula (IB) or a pharmaceutically acceptable salt or solvate thereof:
  • Figure US20140018540A1-20140116-C00002
  • wherein
    “Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
    Z represents a bond, —C(R7b)(R8b)—, (CH2)2, —O—, —S—, —CH2—O—, —(CH2)2—O—, NR6b, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —CH2—N(R6b)—(CH2)2—, —N(R6b)—CO—, —CH2—NH—CO—(CH2)2—, —N(R6b)—CO—CH2—, ═N—, —C(H)(CN)—, —C(═N—NH—COC1-6 alkyl)-, —CH═C(R6b)—CO—, ═CH—, —N═CH—, —N═C(Me)—, —C(R6b)═CH—, —NH—CO—C(═CH-heteroaryl)-, —C═C(Me)2-, —CH═CH—CO—N(R6b)—, —CH═C(R6b)—CO—NH—CH2—, —CH═C(R6b)—NH—CO—, —CH═C(R6b)—CO—O—CH2—, —CS—S—CH2—, —NH—CS—NH—, —NH—CS—NH—CH2—, —NH—CS—NH—(CH2)2—, —CH2—N(CSNH2)—CH2—, —S—C(R5b)(R6b)—, —S—(CH2)2—O—, SO2, —NH—SO2—, —CH2—NH—SO2—, CO, —CH2—CO—, —(CH2)2—CO—, —O—CH2—CO—, —(CH2)2—CO—, COO, —COO—C(R7b)CO—, —CH═C(R5b)—CONH—CH2—, —CO—CH2—N(R6b)—CO—, —CO—CH2—C(R6b)—CH2—CO—, —CO—CH2—N(R6b)—CH2—, —CO—NH—N═C(R7b)—, —S—CH2—CO—, —S—CH2—CO—N(R6b)—, —S—CH2—CO—N(R6b)—CH2—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —CH2—C(R6b)(OH)—, —C(OH)(CH(Me)(C3-8 cycloalkyl))-CH2—, —C(OH)(R6b)—CH2—, —CH(Me)-NH—CO—CH2—, —CO—N(R6b)—CH2—, —C(H)(R6b)—CO—N(R5b)—CH2—, —CO—N(R6b)—CH2—CH2—, —CO—N(R6b)—CH2—CH2—CO—NH—CH2—, —CO—NH—C(—CONH2)═CH—, —CO—NH—CH(—CONH2)—CH2—, —CH2—C(H)(Me)-CH2—S—, —O—CH2—CO—NH—, —CH2—N(R6b)—CO—CH2—O—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(H)(—CH2-heteroaryl)-, —C(NH-aryl)═N—N═CH—, —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—N═C(-aryl)-CO—, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(—NH-aryl)═N—N═CH—, —NH—C(—NH-aryl)═N—CONH—, —C(═CH-aryl)-CONH—CH2—, —CH═C(R6b)—CONH—, —CH(—CH2-aryl)-NH—CO— or —CH(OH)—, wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
    R5b represents hydrogen, C1-6 alkyl or cyano;
    R6b represents hydrogen, C1-6 alkyl, C1-6 alkoxy, cyano, COOH, —COOC1-6 alkyl, C3-8 cycloalkyl, —CH2—C3-8 cycloalkyl, aryl, heteroaryl, —C1-6 alkylene-aryl, —CO-aryl, —O—CO-heteroaryl, —CO-heteroaryl or —C(R7b)(R8b)-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
    R7b and R8b independently represent hydrogen or C1-6 alkyl;
    R1b represents aryl, C3-8 cycloalkyl, monocyclic or bicyclic heterocyclyl or a monocyclic or bicyclic heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
    R4b represents halogen, C1-6 alkyl, C1-6 alkenyl, C1-6 alkynyl, C3-8 cycloalkyl, haloC1-6 alkyl, hydroxyl, C1-6 alkoxy, —O—C1-6 alkenyl, haloC1-6 alkoxy, —COOH, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —CONH2, —CH2—CONH2, —NH—C1-6 alkyl, —NH—C2-6 alkenyl, —NH—CO—C1-6 alkyl, —CO—NH—C1-6 alkyl, —O—CH2—CO—NH—C1-6 alkyl, —CH2—CH2—CO—NH—C1-6 alkyl, —S—C1-6 alkyl, —SO—C1-6 alkyl, —SO2—C1-6 alkyl, —SO2—NH—C1-6 alkyl, —S—CH2—CO—C2-6 alkenyl, —SO2—OH, amino, cyano, NO2, ═O, —CO—NH—(CH2)2)—OMe, —NH—C3-8 cycloalkyl, —CH2—CO—NH—C3-8 cycloalkyl, —CO-heterocyclyl, —CO-heteroaryl, —COO—(CH2)2-heterocyclyl, —OCH2-aryl, —OCH2-heteroaryl, —CH2—O—CO-aryl, —O-aryl, —NH—CO-aryl, —NH—CO-heteroaryl, —NH—CO—CH2-aryl, —NH-aryl, aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
    m represents an integer from 0 to 3;
    R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, —CH2—S—C1-6 alkyl, —S—C2-6 alkynyl, amino, cyano, NO2, ═O, ═S, —SO2—C1-6 alkyl, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —NH—CO—C1-6 alkyl, —NH—CO—CH═CH—CH2—N(Me)2, C1-6 alkyl, —CO—NH—C1-6 alkyl, —CO—NH—CH(Me)-COOH, —S—CH2—CO—N(Et)2, —NH—(CH2)2—OH, —NH—(CH2)3—OH, —NH—CH(Et)-CH2—OH, —CO—NH—(CH2)3—OH, —CH(CH2OH)2 or —S—CH2—CO—NH—CO—NH—C1-6 alkyl, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more hydroxyl groups;
    with the proviso that the compound is other than compound number 54, 373, 496 and 585; for use as a casein kinase 1 delta (CK1δ) inhibitor in the treatment of a neurodegenerative disorder, such as tauopathies.
  • According to one further particular aspect of the invention which may be mentioned there is provided a compound of formula (IB) or a pharmaceutically acceptable salt or solvate thereof:
  • Figure US20140018540A1-20140116-C00003
  • wherein
    “Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
    Z represents a bond, —C(R7b)(R8b)—, (CH2)2, —O—, —S—, —CH2—O—, —(CH2)2—O—, NR6b, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —CH2—N(R6b)—(CH2)2—, —N(R6b)—CO—, —CH2—NH—CO—(CH2)2—, —N(R6b)—CO—CH2—, ═N—, —C(H)(CN)—, —C(═N—NH—COC1-6 alkyl)-, —CH═C(R6b)—CO—, ═CH—, —N═CH—, —N═C(Me)—, —C(R6b)═CH—, —NH—CO—C(═CH-heteroaryl)-, —C═C(Me)2-, —CH═CH—CO—N(R6b)—, —CH═C(R6b)—NH—CO—, CH═C(R6b)═C(R6b)—CO—O—CH2—, —CS—S—CH2—, —NH—CS—NH—, —NH—CS—NH—CH2—, —NH—CS—NH—(CH2)2—, —CH2—N(CSNH2)—CH2—, —S—CH2—, —S—(CH2)2—O—, SO2, —NH—SO2—, —CH2—NH—SO2—, CO, —CH2—CO—, —(CH2)2—CO—, —O—CH2—CO—, —(CH2)2—CO—, COO, —COO—C(R7b)CO—, —CH═C(R5b)—CONH—CH2—, —CO—CH2—N(R6b)—CO—, —CO—CH2—C(R6b)—CH2—CO—, —CO—CH2—N(R6b)—CH2—, —CO—NH—N═C(R7b)—, —S—CH2—CO—, —S—CH2—CO—N(R6b)—, —S—CH2—CO—N(R6b)—CH2—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —CH2—C(R6b)(OH)—, —C(OH)(CH(Me)(C3-8 cycloalkyl))-CH2—, —C(OH)(R6b)—CH2—, —CH(Me)-NH—CO—CH2—, —CO—N(R6b)—CH2—, —CO—N(R6b)—CH2—CH2—, —CO—N(R6b)—CH2—CH2—CO—NH—CH2—, —CO—NH—C(—CONH2)═CH—, —CO—NH—CH(—CONH2)—CH2—, —CH2—C(H)(Me)-CH2—S—, —O—CH2—CO—NH—, —CH2—N(R6b)—CO—CH2—O—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(H)(—CH2-heteroaryl)-, —C(NH-aryl)═N—N═CH—, —C(NH-aryl)═N—N═CH—, —NH—N═C(-aryl)-, —NH—N═C(-aryl)-CO—, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(—NH-aryl)═N—N═CH—, —NH—C(—NH-aryl)═N—CONH—, —C(═CH-aryl)-CONH—CH2—, —CH═C(R6b)—CONH—, —CH(—CH2-aryl)-NH—CO— or —CH(OH)—, wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
    R5b represents hydrogen, C1-6 alkyl or cyano;
    R6b represents hydrogen, C1-6 alkyl, C1-6 alkoxy, cyano, C3-8 cycloalkyl, —CH2—C3-8 cycloalkyl, aryl, heteroaryl, —C1-6 alkylene-aryl, —CO-aryl, —CO-heteroaryl or —C(R7b)(R8b)— heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
    R7b and R8b independently represent hydrogen or C1-6 alkyl;
    R1b represents aryl, C1-6 cycloalkyl, monocyclic or bicyclic heterocyclyl or a monocyclic or bicyclic heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
    R4b represents halogen, C1-6 alkyl, C1-6 alkenyl, C1-6 alkynyl, C3-8 cycloalkyl, haloC1-6 alkyl, hydroxyl, C1-6 alkoxy, —O—C1-6 alkenyl, haloC1-6 alkoxy, —COOH, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —CONH2, —CH2—CONH2, —NH—C1-6 alkyl, —NH—C2-6 alkenyl, —NH—CO—C1-6 alkyl, —CO—NH—C1-6 alkyl, —O—CH2—CO—NH—C1-6 alkyl, —CH2—CH2—CO—NH—C1-6 alkyl, —S—C1-6 alkyl, —SO—C1-6 alkyl, —SO2—C1-6 alkyl, —SO2—NH—C1-6 alkyl, —S—CH2—CO—C2-6 alkenyl, —SO2—OH, amino, cyano, NO2, ═O, —CO—NH—(CH2)2)—OMe, —NH—C3-8 cycloalkyl, —CO-heterocyclyl, —CO-heteroaryl, —COO—(CH2)2-heterocyclyl, —OCH2-aryl, —OCH2-heteroaryl, —CH2—O—CO-aryl, —O-aryl, —NH—CO-heteroaryl, —NH—CO—CH2-aryl, aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
    m represents an integer from 0 to 3;
    R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, —CH2—S—C1-6 alkyl, —S—C2-6 alkynyl, amino, cyano, NO2, ═O, ═S, —SO2—C1-6 alkyl, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —NH—CO—C1-6 alkyl, —NH—CO—CH═CH—CH2—N(Me)2, C1-6 alkyl, —CO—NH—C1-6 alkyl, —CO—NH—CH(Me)-COOH, —S—CH2—CO—N(Et)2, —NH—(CH2)2—OH, —NH—(CH2)3—OH, —NH—CH(Et)-CH2—OH, —CO—NH—(CH2)3—OH, —CH(CH2OH)2 or —S—CH2—CO—NH—CO—NH—C1-6 alkyl, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more hydroxyl groups;
    for use as a casein kinase 1 delta (CK1δ) inhibitor in the treatment of a neurodegenerative disorder, such as tauopathies.
  • In one embodiment of the compound of formula (IB)
  • “Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system;
    Z represents a bond, —C(R7b)(R8b)—, —O—, —S—, —CH2—O—, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —N(R6b)—CO—, —N(R6b)—CO—CH2—, —N(R7b)—CH═, ═CH—, —N═CH—, —C(R6b)═CH—, —C(═C(R7b)(R8b))—, SO2, —CH2—NH—SO2—, CO, —O—CH2—CO—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —C(H)(R6b)—CO—N(R5b)—CH2—, —O—CH2—CO—NH—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(═CH-aryl)-CONH—CH2— or —CH(—CH2-aryl)-NH—CO— wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
    R5b represents hydrogen;
    R6b represents hydrogen, methyl, C1-6 alkoxy, —COOH, —CO-aryl, —O—CO-heteroaryl or —CO-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
    R7b and R8b independently represent hydrogen or C1-6 alkyl;
    R1b represents a monocyclic aryl or heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
    R4b represents halogen, hydroxyl, —O—C1-6 alkenyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —SO2—NH2, amino, cyano, ═O, —CH2—CO—NH—C3-8 cycloalkyl, —CH2-aryl, —OCH2-heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
    m represents an integer from 0 to 2; and
    R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, amino, cyano, NO2, ═O, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, C1-6 alkyl, —CO—NH—C1-6 alkyl or —CO—NH—CH(Me)-COOH, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups.
  • In one embodiment, Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system. In a further embodiment, Het B represents benzoxazolyl, indolyl or indolizinyl.
  • In one embodiment, R5b represents hydrogen.
  • In one embodiment, R6b represents hydrogen, C1-6 alkyl, C1-6 alkoxy, —COOH, —CO-aryl, —O—CO-heteroaryl, —CO-heteroaryl or —C(R7b)(R8b)-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups.
  • In one embodiment, R1b represents a monocyclic aryl or heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups. In a further embodiment, R1b represents a monocyclic aryl group such as phenyl optionally substituted by one or more (e.g. 1) R4b groups. In an alternative embodiment, R1b represents a monocyclic heteroaryl group such as thienyl, pyrimidinyl or pyrazolinyl optionally substituted by one or more (e.g. 1 or 2) R4b groups.
  • In one embodiment, R4b represents halogen, hydroxyl, —O—C1-6 alkenyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —SO2—NH2, amino, cyano, ═O, —CH2—CO—NH—C3-8 cycloalkyl, —CH2-aryl, —OCH2-heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups.
  • In a further embodiment, R4b represents halogen (e.g. fluorine), amino or heteroaryl (e.g. pyridyl).
  • In one embodiment, Z represents a bond, —C(R7b)(R8b)—, —O—, —S—, —CH2—O—, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —N(R6b)—CO—, —N(R6b)—CO—CH2—, —N(R7b)—CH═, ═CH—, —N═CH—, —C(R6b)═CH—, —C(═C(R7b)(R8b))—, SO2, —CH2—NH—SO2—, CO, —O—CH2—CO—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —C(H)(R6b)—CO—N(R5b)—CH2—, —O—CH2—CO—NH—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl), —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(═CH-aryl)-CONH—CH2— or —CH(—CH2-aryl)-NH—CO— wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups.
  • In a further embodiment, Z represents a bond or CO.
  • In one embodiment, m represents an integer from 0 to 2. In one embodiment, m represents 0. In an alternative embodiment, m represents 2.
  • In one embodiment, R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, amino, cyano, NO2, ═O, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, C1-6 alkyl, —CO—NH—C1-6 alkyl or —CO—NH—CH(Me)-COOH, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups.
  • In a further embodiment, R2b represents amino or —CONH2.
  • In one embodiment, the compound of formula (IB) is selected from any of compounds 2-3, 26-28, 30-33, 35, 47-48, 51, 57-60, 63-64, 78, 84, 113, 123, 127-129, 145, 155-157, 171-173, 204, 206-207, 210, 225, 227, 233, 235-236, 241-242, 244, 249, 269, 285, 288, 303, 307-312, 314-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 384-391, 396, 399-402, 404-405, 407-411, 414, 424-425, 427-428, 437, 448, 456-457, 482, 484-485, 489-491, 495, 497-498, 505, 507, 516, 519, 524, 526, 553, 559-560, 568, 570, 575, 609, 615-616, 618, 626-627, 638, 653, 669, 692-694, 705, 709, 712, 716, 719, 725, 734, 738, 740, 746, 749, 753-754, 756, 758-759, 767, 770, 777, 784-785, 790, 792, 796, 800-801, 804-805, 808, 819, 821, 827-828, 831, 833, 838, 844, 847, 857-858, 869, 872, 875, 933, 952, 955, 969, 987, 990 or 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • In a further embodiment, the compound of formula (IB) is selected from any of compounds 2-3, 26-28, 30, 32-33, 47-48, 51, 59-60, 84, 113, 123, 127, 129, 145, 155, 157, 172-173, 204, 206-207, 210, 225, 233, 235-236, 241, 244, 269, 285, 288, 307-311, 315-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 385-386, 388-391, 396, 399-402, 404-405, 407-410, 414, 424, 427-428, 437, 457, 482, 490, 495, 497-498, 505, 516, 519, 553, 559-560 or 568 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • In a yet further embodiment, the compound of formula (IB) is selected from any of compounds 30, 314, 324-325, 391, 405, 626, 705, 753-754, 759, 770, 784, 808, 833 or 847 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • In a still yet further embodiment, the compound of formula (IB) is selected from any of compounds 324-325, 405, 754 or 847 as described herein or a pharmaceutically acceptable salt or solvate thereof.
  • In one embodiment, the compound of formula (IB) is selected from any of compounds 30, 288, 314, 324-325, 336, 374, 391, 405, 615-616, 626, 705, 740, 753-754, 756, 759, 770, 784, 808, 819, 833, 844, 847, 869, 872, 875, 933, 952, 955, 969, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compounds of this embodiment were tested in the CK1δ inhibition assay as described herein and exhibited inhibition of greater than 5%.
  • In a further embodiment, the compound of formula (IB) is selected from any of compounds 324-325, 405, 754, 847, 952, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compounds of this embodiment were tested in the CK1δ inhibition assay as described herein and exhibited inhibition of greater than 50%.
  • In a yet further embodiment, the compound of formula (IB) is selected from any one of compounds:
    • 5-(1,3-benzoxazol-2-yl)-4-(pyridin-4-yl)pyrimidin-2-amine (Compound 324);
    • 2-amino-3-[(thiophen-2-yl)carbonyl]indolizine-1-carboxamide (Compound 847);
    • 2-[3-(pyridin-4-yl)-1H-pyrazol-4-yl]-1,3-benzoxazole (Compound 952);
    • 2-amino-3-[(4-fluorophenyl)carbonyl]indolizine-1-carboxamide (Compound 987);
    • 2-amino-3-benzoylindolizine-1-carboxamide (Compound 990); and
    • 2-amino-1-[(4-fluorophenyl)carbonyl]-1H-indole-3-carboxamide (Compound 999);
      or a pharmaceutically acceptable salt or solvate thereof.
  • In a yet further embodiment, the compound of formula (IB) is selected from any of compounds 324, 952, 987, 990 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compounds of this embodiment were tested in the CK1δ inhibition assay as described herein and exhibited inhibition of greater than 90%.
  • In a still yet further embodiment, the compound of formula (IB) is selected from any of compounds 324, 952, 987 and 999 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compounds of this embodiment were tested in a range of kinase inhibition assays and not only exhibited inhibition of greater than 90% in the CK1δ inhibition assay as described herein, but also demonstrated significant and selective inhibition for CK1δ when compared with other kinases.
  • For example, compound number 324 (5-(1,3-benzoxazol-2-yl)-4-(pyridin-4-yl)pyrimidin-2-amine) demonstrated selectivity for CK1δ over ABL2/ARG, ALK4/ACVR1B, ALK5/TGFBR1, CDK5/p25, CK1a1, CK1g1, CK1g3, CLK2, c-SRC, EGFR, EPHA2, FGFR1, GSK3b, HGK/MAP4K4, JNK2, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKA, PKCa, PKCb2, RIPK2, ROCK1, TNIK and YES/YES1 each of which were inhibited at levels lower than 40%.
  • For example, compound number 952 (2-[3-(pyridin-4-yl)-1H-pyrazol-4-yl]-1,3-benzoxazole) demonstrated selectivity for CK1δ over ABL2/ARG, ALK4/ACVR1B, ALK5/TGFBR1, CDK5/p25, CK1g1, CK1g2, CK1g3, c-SRC, EGFR, EPHA2, FGFR1, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKA, PKCa, PKCb2, ROCK1 and YES/YES1 each of which were inhibited at levels lower than 40%.
  • For example, compound number 987 (2-amino-3-[(4-fluorophenyl)carbonyl]indolizine-1-carboxamide) demonstrated selectivity for CK1δ over ABL2/ARG, CDK5/p25, CK1 g1, CK1g2, CK1g3, CLK2, c-SRC, FGFR1, GSK3b, HGK/MAP4K4, JNK2, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKCa, PKCb2, ROCK1 and TNIK each of which were inhibited at levels lower than 40%.
  • For example, compound number 999 (2-amino-1-[(4-fluorophenyl)carbonyl]-1H-indole-3-carboxamide) demonstrated selectivity for CK1δ over ABL2/ARG, CDK5/p25, CK1 g1, CK1g2, CLK2, c-SRC, FGFR1, GSK3b, HGK/MAP4K4, KDR/VEGFR2, LCK, MSK1/RPS6KA5, PDK1/PDPK1, PIM3, PKCa, PKCb2 and ROCK1 each of which were inhibited at levels lower than 40%.
  • In a still yet further embodiment, the compound of formula (IB) is selected from any of compounds 324 and 987 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compounds of this embodiment have been demonstrated to have a protective effect on cell viability as can be seen in the data presented herein and in particular within FIGS. 1 and 2. The compounds of this embodiment have also been demonstrated to inhibit phosphorylation of two different amino acid residues within Tau proteins (i.e. Ser 396 and Thr 391) as shown in FIGS. 4 and 5.
  • In a still yet further embodiment, the compound of formula (IB) is compound 324 as described herein or a pharmaceutically acceptable salt or solvate thereof. The compound of this embodiment has been demonstrated to have a protective effect on cell viability in a dose dependent manner as can be seen in the data presented herein and in particular within FIG. 1. The compound of this embodiment has also been demonstrated to inhibit phosphorylation of two different amino acid residues within Tau proteins (i.e. Ser 396 and Thr 391) as shown in FIGS. 4A and 5.
  • In the present context, the term “pharmaceutically acceptable salt” is intended to indicate salts which are not harmful to the patient. Such salts include pharmaceutically acceptable acid addition salts, pharmaceutically acceptable metal salts and pharmaceutically acceptable alkaline addition salts. Acid addition salts include salts of inorganic acids as well as organic acids.
  • Representative examples of suitable inorganic acids include hydrochloric, hydrobromic, hydroiodic, phosphoric, sulfuric, nitric acids and the like. Representative examples of suitable organic acids include formic, acetic, trichloroacetic, trifluoroacetic, propionic, benzoic, cinnamic, citric, fumaric, glycolic, lactic, maleic, malic, malonic, mandelic, oxalic, picric, pyruvic, salicylic, succinic, methanesulfonic, ethanesulfonic, tartaric, ascorbic, pamoic, bismethylene salicylic, ethanedisulfonic, gluconic, citraconic, aspartic, stearic, palmitic, EDTA, glycolic, p-aminobenzoic, glutamic, benzenesulfonic, p-toluenesulfonic acids and the like. Further examples of pharmaceutically acceptable inorganic or organic acid addition salts include the pharmaceutically acceptable salts listed in J. Pharm. Sci. 1977, 66, 2, which is incorporated herein by reference. Examples of metal salts include lithium, sodium, potassium, magnesium salts and the like. Examples of ammonium and alkylated ammonium salts include ammonium, methylammonium, dimethylammonium, trimethylammonium, ethylammonium, hydroxyethylammonium, diethylammonium, butylammonium, tetramethylammonium salts and the like.
  • Representative examples of alkaline salts include, for example, sodium, potassium, lithium, calcium, magnesium or ammonium or organic bases such as, for example, methylamine, ethylamine, propylamine, trimethylamine, diethylamine, triethylamine, N,N-dimethylethanolamine, tris(hydroxymethyl)aminomethane, ethanolamine, pyridine, piperidine, piperazine, picoline, dicyclohexylamine, morpholine, benzylamine, procaine, lysine, arginine, histidine, N-methylglucamine.
  • According to the invention, the compounds of formula (IB) can be in racemic forms, as well as in the form of pure enantiomers or non racemic (scalemic) mixture of enantiomers, including when the compounds of formula (IB) have more than one stereogenic centre. In case the compounds of formula (IB) have unsaturated carbon carbon double bonds, both the cis (Z) and trans (E) isomers and their mixtures belong to the invention.
  • References herein to “halogen” means a fluorine, chlorine, bromine or iodine atom.
  • References herein to “C1-6 alkyl” means any linear, branched hydrocarbon groups having 1 to 6 carbon atoms, or cyclic hydrocarbon groups having 3 to 6 carbon atoms. Representative examples of such alkyl groups include methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl and t-butyl, n-pentyl, isopentyl, neopentyl, cyclopropyl, cyclobutyl, cyclopentyl and cyclohexyl. References to “haloC1-6alkyl” mean a C1-6 alkyl group substituted by one or more halogen atoms as herein defined.
  • References herein to “C1-6 alkylene” means a saturated divalent hydrocarbon chain having the specified number of member atoms. For example, C1-6 alkylene refers to a bond or an alkylene group having from 1 to 6 member atoms. Alkylene groups may be straight or branched. Representative branched alkylene groups have one or two branches. Alkylene includes methylene, ethylene, propylene (n-propylene and isopropylene) and butylene (n-butylene, isobutylene, and t-butylene).
  • References herein to “C2-6 alkenyl” means any linear, branched hydrocarbon groups of 2 to 6 carbon atoms, or cyclic hydrocarbon group having 3 to 6 carbon atoms having at least one double bond. Representative examples of such alkenyl groups include ethenyl, propenyl, butenyl and cyclohexenyl.
  • References herein to “C2-6 alkynyl” means any linear, or branched hydrocarbon groups of 2 to 6 carbon atoms, having at least one triple bond. Representative examples of such alkynyl groups include ethynyl, propargyl and butynyl.
  • References herein to ‘C1-6 alkoxy’ means an —O—C1-6 alkyl group wherein C1-6 alkyl is as defined herein. Examples of such groups include methoxy, ethoxy, propoxy, butoxy, pentoxy or hexoxy and the like.
  • References herein to ‘C3-8 cycloalkyl’ means a saturated monocyclic hydrocarbon ring of 3 to 8 carbon atoms. Examples of such groups include cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl or cyclooctyl and the like.
  • References herein to ‘aryl’ means a C6-12 monocyclic or bicyclic hydrocarbon ring wherein at least one ring is aromatic. Examples of such groups include phenyl, indyl or naphthyl and the like.
  • References herein to “heteroatom” means a nitrogen, sulphur, or oxygen atom.
  • References herein to “heterocyclyl” means a saturated or unsaturated non-aromatic ring containing from 1 to 4 heteroatoms as member atoms in the ring. Heterocyclyl groups containing more than one heteroatom may contain different heteroatoms. Heterocyclyl groups may be optionally substituted with one or more substituents as defined herein. Heterocyclyl groups are monocyclic ring systems or fused bicyclic or polycyclic ring systems or bicyclic structures known as heterocyclic “spiro” ring systems. In certain embodiments, heterocyclyl is saturated. In other embodiments, heterocyclyl is unsaturated and non-aromatic. Non-limiting examples of monocyclic heterocyclyl ring systems include pyrrolidinyl, tetrahydrofuranyl, dihydrofuranyl, pyranyl, tetrahydropyranyl, dihydropyranyl, tetrahydrothienyl, pyrazolidinyl, oxazolidinyl, thiazolidinyl, piperidinyl, homopiperidinyl, piperazinyl, morpholinyl, thiamorpholinyl, 1,3-dioxolanyl, 1,3-dioxanyl, 1,4-dioxanyl, 1,3-oxathiolanyl, 1,3-oxathianyl, 1,3-dithianyl, and azetidinyl.
  • References herein to “heteroaryl” means an aromatic ring containing from 1 to 4 heteroatoms as member atoms in the ring. Heteroaryl groups containing more than one heteroatom may contain different heteroatoms. Heteroaryl groups may be optionally substituted with one or more substituents as defined herein. Heteroaryl groups are monocyclic ring systems or are fused bicyclic or polycyclic ring systems. Monocyclic heteroaryl rings have 5 or 6 member atoms. Bicyclic heteroaryl rings have from 7 to 11 member atoms. Bicyclic heteroaryl rings include those rings wherein phenyl and a monocyclic heterocyclyl ring are attached forming a fused bicyclic ring system, and those rings wherein a monocyclic heteroaryl ring and a monocyclic cycloalkyl, cycloalkenyl, heterocyclyl, or heteroaryl ring are attached forming a fused bicyclic ring system. Non-limiting examples of heteroaryl includes pyrrolyl, pyrazolyl, imidazolyl, oxazolyl, isoxazolyl, thiazolyl, isothiazolyl, furanyl, furazanyl, thienyl, triazolyl, pyridinyl, pyrimidinyl, pyridazinyl, pyrazinyl, triazinyl, tetrazinyl, indolyl, isoindolyl, indolizinyl, indazolyl, purinyl, quinolinyl, isoquinolinyl, quinoxalinyl, quinazolinyl, pteridinyl, cinnolinyl, benzimidazolyl, benopyranyl, benzoxazolyl, benzofuranyl, isobenzofuranyl, benzothiazolyl, benzothienyl, furopyridinyl, and napthyridinyl.
  • References herein to “heterocyclic ring system” mean either a heterocyclyl ring system or a heteroaryl ring system as hereinbefore defined.
  • Representative compounds of formula (IB) include the compounds as set forth below:
  • Compound Number Structure
    2
    Figure US20140018540A1-20140116-C00004
    3
    Figure US20140018540A1-20140116-C00005
    26
    Figure US20140018540A1-20140116-C00006
    27
    Figure US20140018540A1-20140116-C00007
    28
    Figure US20140018540A1-20140116-C00008
    30
    Figure US20140018540A1-20140116-C00009
    31
    Figure US20140018540A1-20140116-C00010
    32
    Figure US20140018540A1-20140116-C00011
    33
    Figure US20140018540A1-20140116-C00012
    35
    Figure US20140018540A1-20140116-C00013
    47
    Figure US20140018540A1-20140116-C00014
    48
    Figure US20140018540A1-20140116-C00015
    51
    Figure US20140018540A1-20140116-C00016
    54
    Figure US20140018540A1-20140116-C00017
    57
    Figure US20140018540A1-20140116-C00018
    58
    Figure US20140018540A1-20140116-C00019
    59
    Figure US20140018540A1-20140116-C00020
    60
    Figure US20140018540A1-20140116-C00021
    63
    Figure US20140018540A1-20140116-C00022
    64
    Figure US20140018540A1-20140116-C00023
    78
    Figure US20140018540A1-20140116-C00024
    84
    Figure US20140018540A1-20140116-C00025
    113
    Figure US20140018540A1-20140116-C00026
    123
    Figure US20140018540A1-20140116-C00027
    127
    Figure US20140018540A1-20140116-C00028
    128
    Figure US20140018540A1-20140116-C00029
    129
    Figure US20140018540A1-20140116-C00030
    145
    Figure US20140018540A1-20140116-C00031
    155
    Figure US20140018540A1-20140116-C00032
    156
    Figure US20140018540A1-20140116-C00033
    157
    Figure US20140018540A1-20140116-C00034
    171
    Figure US20140018540A1-20140116-C00035
    172
    Figure US20140018540A1-20140116-C00036
    173
    Figure US20140018540A1-20140116-C00037
    204
    Figure US20140018540A1-20140116-C00038
    206
    Figure US20140018540A1-20140116-C00039
    207
    Figure US20140018540A1-20140116-C00040
    210
    Figure US20140018540A1-20140116-C00041
    225
    Figure US20140018540A1-20140116-C00042
    227
    Figure US20140018540A1-20140116-C00043
    233
    Figure US20140018540A1-20140116-C00044
    235
    Figure US20140018540A1-20140116-C00045
    236
    Figure US20140018540A1-20140116-C00046
    241
    Figure US20140018540A1-20140116-C00047
    242
    Figure US20140018540A1-20140116-C00048
    244
    Figure US20140018540A1-20140116-C00049
    249
    Figure US20140018540A1-20140116-C00050
    269
    Figure US20140018540A1-20140116-C00051
    285
    Figure US20140018540A1-20140116-C00052
    288
    Figure US20140018540A1-20140116-C00053
    303
    Figure US20140018540A1-20140116-C00054
    307
    Figure US20140018540A1-20140116-C00055
    308
    Figure US20140018540A1-20140116-C00056
    309
    Figure US20140018540A1-20140116-C00057
    310
    Figure US20140018540A1-20140116-C00058
    311
    Figure US20140018540A1-20140116-C00059
    312
    Figure US20140018540A1-20140116-C00060
    314
    Figure US20140018540A1-20140116-C00061
    315
    Figure US20140018540A1-20140116-C00062
    316
    Figure US20140018540A1-20140116-C00063
    320
    Figure US20140018540A1-20140116-C00064
    324
    Figure US20140018540A1-20140116-C00065
    325
    Figure US20140018540A1-20140116-C00066
    333
    Figure US20140018540A1-20140116-C00067
    336
    Figure US20140018540A1-20140116-C00068
    351
    Figure US20140018540A1-20140116-C00069
    357
    Figure US20140018540A1-20140116-C00070
    358
    Figure US20140018540A1-20140116-C00071
    359
    Figure US20140018540A1-20140116-C00072
    360
    Figure US20140018540A1-20140116-C00073
    373
    Figure US20140018540A1-20140116-C00074
    374
    Figure US20140018540A1-20140116-C00075
    375
    Figure US20140018540A1-20140116-C00076
    384
    Figure US20140018540A1-20140116-C00077
    385
    Figure US20140018540A1-20140116-C00078
    386
    Figure US20140018540A1-20140116-C00079
    387
    Figure US20140018540A1-20140116-C00080
    388
    Figure US20140018540A1-20140116-C00081
    389
    Figure US20140018540A1-20140116-C00082
    390
    Figure US20140018540A1-20140116-C00083
    391
    Figure US20140018540A1-20140116-C00084
    396
    Figure US20140018540A1-20140116-C00085
    399
    Figure US20140018540A1-20140116-C00086
    400
    Figure US20140018540A1-20140116-C00087
    401
    Figure US20140018540A1-20140116-C00088
    402
    Figure US20140018540A1-20140116-C00089
    404
    Figure US20140018540A1-20140116-C00090
    405
    Figure US20140018540A1-20140116-C00091
    407
    Figure US20140018540A1-20140116-C00092
    408
    Figure US20140018540A1-20140116-C00093
    409
    Figure US20140018540A1-20140116-C00094
    410
    Figure US20140018540A1-20140116-C00095
    411
    Figure US20140018540A1-20140116-C00096
    414
    Figure US20140018540A1-20140116-C00097
    424
    Figure US20140018540A1-20140116-C00098
    425
    Figure US20140018540A1-20140116-C00099
    427
    Figure US20140018540A1-20140116-C00100
    428
    Figure US20140018540A1-20140116-C00101
    437
    Figure US20140018540A1-20140116-C00102
    448
    Figure US20140018540A1-20140116-C00103
    456
    Figure US20140018540A1-20140116-C00104
    457
    Figure US20140018540A1-20140116-C00105
    458
    Figure US20140018540A1-20140116-C00106
    482
    Figure US20140018540A1-20140116-C00107
    484
    Figure US20140018540A1-20140116-C00108
    485
    Figure US20140018540A1-20140116-C00109
    489
    Figure US20140018540A1-20140116-C00110
    490
    Figure US20140018540A1-20140116-C00111
    491
    Figure US20140018540A1-20140116-C00112
    495
    Figure US20140018540A1-20140116-C00113
    496
    Figure US20140018540A1-20140116-C00114
    497
    Figure US20140018540A1-20140116-C00115
    498
    Figure US20140018540A1-20140116-C00116
    505
    Figure US20140018540A1-20140116-C00117
    507
    Figure US20140018540A1-20140116-C00118
    516
    Figure US20140018540A1-20140116-C00119
    519
    Figure US20140018540A1-20140116-C00120
    524
    Figure US20140018540A1-20140116-C00121
    526
    Figure US20140018540A1-20140116-C00122
    553
    Figure US20140018540A1-20140116-C00123
    559
    Figure US20140018540A1-20140116-C00124
    560
    Figure US20140018540A1-20140116-C00125
    568
    Figure US20140018540A1-20140116-C00126
    570
    Figure US20140018540A1-20140116-C00127
    575
    Figure US20140018540A1-20140116-C00128
    585
    Figure US20140018540A1-20140116-C00129
    590
    Figure US20140018540A1-20140116-C00130
    594
    Figure US20140018540A1-20140116-C00131
    596
    Figure US20140018540A1-20140116-C00132
    597
    Figure US20140018540A1-20140116-C00133
    601
    Figure US20140018540A1-20140116-C00134
    602
    Figure US20140018540A1-20140116-C00135
    609
    Figure US20140018540A1-20140116-C00136
    615
    Figure US20140018540A1-20140116-C00137
    616
    Figure US20140018540A1-20140116-C00138
    618
    Figure US20140018540A1-20140116-C00139
    626
    Figure US20140018540A1-20140116-C00140
    627
    Figure US20140018540A1-20140116-C00141
    638
    Figure US20140018540A1-20140116-C00142
    649
    Figure US20140018540A1-20140116-C00143
    653
    Figure US20140018540A1-20140116-C00144
    669
    Figure US20140018540A1-20140116-C00145
    692
    Figure US20140018540A1-20140116-C00146
    693
    Figure US20140018540A1-20140116-C00147
    694
    Figure US20140018540A1-20140116-C00148
    703
    Figure US20140018540A1-20140116-C00149
    705
    Figure US20140018540A1-20140116-C00150
    709
    Figure US20140018540A1-20140116-C00151
    712
    Figure US20140018540A1-20140116-C00152
    716
    Figure US20140018540A1-20140116-C00153
    719
    Figure US20140018540A1-20140116-C00154
    725
    Figure US20140018540A1-20140116-C00155
    734
    Figure US20140018540A1-20140116-C00156
    738
    Figure US20140018540A1-20140116-C00157
    740
    Figure US20140018540A1-20140116-C00158
    746
    Figure US20140018540A1-20140116-C00159
    749
    Figure US20140018540A1-20140116-C00160
    753
    Figure US20140018540A1-20140116-C00161
    754
    Figure US20140018540A1-20140116-C00162
    756
    Figure US20140018540A1-20140116-C00163
    758
    Figure US20140018540A1-20140116-C00164
    759
    Figure US20140018540A1-20140116-C00165
    767
    Figure US20140018540A1-20140116-C00166
    770
    Figure US20140018540A1-20140116-C00167
    777
    Figure US20140018540A1-20140116-C00168
    778
    Figure US20140018540A1-20140116-C00169
    784
    Figure US20140018540A1-20140116-C00170
    785
    Figure US20140018540A1-20140116-C00171
    790
    Figure US20140018540A1-20140116-C00172
    792
    Figure US20140018540A1-20140116-C00173
    796
    Figure US20140018540A1-20140116-C00174
    800
    Figure US20140018540A1-20140116-C00175
    801
    Figure US20140018540A1-20140116-C00176
    804
    Figure US20140018540A1-20140116-C00177
    805
    Figure US20140018540A1-20140116-C00178
    808
    Figure US20140018540A1-20140116-C00179
    819
    Figure US20140018540A1-20140116-C00180
    821
    Figure US20140018540A1-20140116-C00181
    827
    Figure US20140018540A1-20140116-C00182
    828
    Figure US20140018540A1-20140116-C00183
    831
    Figure US20140018540A1-20140116-C00184
    833
    Figure US20140018540A1-20140116-C00185
    838
    Figure US20140018540A1-20140116-C00186
    844
    Figure US20140018540A1-20140116-C00187
    847
    Figure US20140018540A1-20140116-C00188
    857
    Figure US20140018540A1-20140116-C00189
    858
    Figure US20140018540A1-20140116-C00190
    869
    Figure US20140018540A1-20140116-C00191
    872
    Figure US20140018540A1-20140116-C00192
    875
    Figure US20140018540A1-20140116-C00193
    877
    Figure US20140018540A1-20140116-C00194
    891
    Figure US20140018540A1-20140116-C00195
    910
    Figure US20140018540A1-20140116-C00196
    912
    Figure US20140018540A1-20140116-C00197
    926
    Figure US20140018540A1-20140116-C00198
    933
    Figure US20140018540A1-20140116-C00199
    952
    Figure US20140018540A1-20140116-C00200
    955
    Figure US20140018540A1-20140116-C00201
    962
    Figure US20140018540A1-20140116-C00202
    963
    Figure US20140018540A1-20140116-C00203
    969
    Figure US20140018540A1-20140116-C00204
    987
    Figure US20140018540A1-20140116-C00205
    990
    Figure US20140018540A1-20140116-C00206
    999
    Figure US20140018540A1-20140116-C00207
  • According to a further aspect of the invention, there is provided a compound of formula (IB) for use as a casein kinase 1 delta (CK1δ) inhibitor in the treatment of a neurodegenerative disorder, such as tauopathies.
  • Compounds of formula 2-3, 26-28, 30-33, 35, 47-48, 51, 57-60, 63-64, 78, 84, 113, 123, 127-129, 145, 155-157, 171-173, 204, 206-207, 210, 225, 227, 233, 235-236, 241-242, 244, 249, 269, 285, 288, 303, 307-312, 314-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 384-391, 396, 399-402, 404-405, 407-411, 414, 424-425, 427-428, 437, 448, 456-457, 482, 484-485, 489-491, 495, 497-498, 505, 507, 516, 519, 524, 526, 553, 559-560, 568, 570, 575, 609, 615-616, 618, 626-627, 638, 653, 669, 692-694, 705, 709, 712, 716, 719, 725, 734, 738, 740, 746, 749, 753-754, 756, 758-759, 767, 770, 777, 784-785, 790, 792, 796, 800-801, 804-805, 808, 819, 821, 827-828, 831, 833, 838, 844, 847, 857-858, 869, 872, 875, 933, 952, 955, 969, 987, 990 or 999 are either commercially available or may be prepared in accordance with known synthetic procedures.
  • According to a further aspect of the invention there is provided a pharmaceutical composition comprising a compound of formula (IB) for use in the treatment of a neurodegenerative disorder, such as tauopathies.
  • The pharmaceutical compositions of the invention may comprise, in addition to one of the above substances, a pharmaceutically acceptable excipient, carrier, buffer, stabiliser or other materials well known to those skilled in the art. Such materials should be non-toxic and should not interfere with the efficacy of the active ingredient. The precise nature of the carrier or other material may depend on the route of administration, e.g. oral, intravenous, cutaneous or subcutaneous, nasal, intramuscular, intraperitoneal routes.
  • Pharmaceutical compositions for oral administration may be in tablet, capsule, powder or liquid form. A tablet may include a solid carrier such as gelatin or an adjuvant.
  • Liquid pharmaceutical compositions generally include a liquid carrier such as water, petroleum, animal or vegetable oils, mineral oil or synthetic oil.
  • Physiological saline solution, dextrose or other saccharide solution or glycols such as ethylene glycol, propylene glycol or polyethylene glycol may be included.
  • For intravenous, cutaneous or subcutaneous injection, or injection at the site of affliction, the active ingredient will be in the form of a parenterally acceptable aqueous solution which is pyrogen-free and has suitable pH, isotonicity and stability. Those of relevant skill in the art are well able to prepare suitable solutions using, for example, isotonic vehicles such as Sodium Chloride Injection, Ringer's Injection, Lactated Ringer's Injection. Preservatives, stabilisers, buffers, antioxidants and/or other additives may be included, as required.
  • The compounds of formula (IB) are believed to be casein kinase 1 delta (CK1δ) inhibitors. Certain compounds of formula (IB) have inhibitory activity of greater than 5%, in particular greater than 10%, more particularly greater than 25%, yet more particularly greater than 50%, especially greater than 75%, such as greater than 90%. Such compounds may be useful in the treatment in neurodegenerative disorders such as tauopathies. Tauopathies are conditions which are characterised by neurofibrillary tangles or aggregates of the tau protein. Tauopathies are a recognised class of conditions known to those skilled in the art and include Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, multisystem atrophy (MSA), neurobasal degeneration with iron accumulation, type 1 (Hallervorden-Spatz), argyrophilic grain dementia, Down's syndrome, diffuse neurofibrillary tangles with calcification, dementia pugilistica, Gerstmann-Straussler-Scheinker disease, myotonic dystrophy, Niemann-Pick disease type C, progressive subcortical gliosis, prion protein cerebral amyloid angiopathy, tangle only dementia, postencephalitic parkinsonism, subacute sclerosing panencephalitis, Creutzfeldt-Jakob disease, amyotrophic lateral sclerosis/parkinsonism-dementia complex, non-Guamanian motor neuron disease with neurofibrillary tangles/dementia, and Parkinson's disease. The intracellular tau deposits are usually neuronal or glial and are filamentous and generally in a hyperphosphorylated state as compared to the level of phosphorylation in tau from control human brain. In the case of AD, this hyperphosphorylated tau is often referred to a paired helical filament tau (PHF) tau because it is derived from the PHF. In one embodiment, the tauopathy comprises Alzheimer's disease.
  • According to a further aspect of the invention, there is provided a method of treating a neurodegenerative disorder, such as tauopathies, which comprises administering a therapeutically effective amount of a compound of formula (IB).
  • Biological Data 1. CK1δ Inhibition Assay
  • The compounds of the invention may be tested for inhibition of casein kinase 1 delta (CK1δ) in accordance with the assay protocols described in US 2010/0152157, EP 1,636,375 or Hanger et al (2007) J. Biol. Chem. 282, 23645-23654. In particular, the assay was conducted in accordance with the following protocol:
  • Reaction Buffer:
  • Base Reaction buffer; 20 mM Hepes (pH 7.5), 10 mM MgCl2, 1 mM EGTA, 0.02% Brij35, 0.02 mg/ml BSA, 0.1 mM Na3VO4, 2 mM DTT, 1% DMSO
  • It should be noted that required cofactors are added individually to each kinase reaction.
  • Reaction Procedure:
    • 1. Prepare indicated substrate in freshly prepared Base Reaction Buffer as described above
    • 2. Deliver any required cofactors to the substrate solution
    • 3. Deliver indicated kinase into the substrate solution and gently mix
    • 4. Deliver compounds in DMSO into the kinase reaction mixture
    • 5. Deliver 33P-ATP (specific activity 0.01 μCi/μl final) into the reaction mixture to initiate the reaction
    • 6. Incubate kinase reaction for 120 min. at room temperature
    • 7. Reactions are spotted onto P81 ion exchange paper (Whatman #3698-915)
    • 8. Wash filters extensively in 0.75% Phosphoric acid
    Kinase Information:
  • CK1d—Genbank Accession # NP620693
  • Recombinant human full-length construct. GST-tagged, expressed in insect cells.
  • Final concentration in assay=4 nM
  • Substrate: CK1tide
  • Substrate sequence: [KRRRAL[pS]VASLPGL]
  • Final substrate concentration in assay=20 μM
  • It should be noted that no additional cofactors are added to the reaction mixture.
  • Compounds 30, 288, 314, 324-325, 336, 374, 391, 405, 615-616, 626, 705, 740, 753-754, 756, 759, 770, 784, 808, 819, 833, 844, 847, 869, 872, 875, 933, 952, 955, 969, 987, 990 and 999 were tested in the CK1δ inhibition assay and exhibited inhibition of greater than 5%.
  • In particular, compounds 324-325, 405, 754, 847, 952, 987, 990 and 999 exhibited inhibition of greater than 50%.
  • Yet more particularly, compounds 324, 952, 987, 990 and 999 exhibited inhibition of greater than 90%.
  • 2. Measurement of Compound Effect on Ck1d-Mediated Tau Phosphorylation
  • The in vivo phosphorylation of Tau protein is complex with a number of putative protein kinases involved. It is widely accepted that the kinases GSK3b and CDK5 are significant players in the generation of PHF Tau, the pathogenic form found in neurofibrillary tangles in Alzheimer's disease. More recently, there has been growing evidence supporting the role of other kinases, particularly CK1δ in Tau hyperphosphorylation in vivo. Hanger et al. 2007 (J. Biol. Chem. 282, 23645-23654) identified 37 phosphorylation sites in human PHF Tau and were able to recapitulate these in vitro using recombinant tau and various purified kinase preparations. These studies identified that certain sites were uniquely phosphorylated by CK1δ and that certain other sites required CK1δ and another kinase with CK1δ providing upstream phosphorylation to render the targeted site available for the second kinase. Thus, to assess whether candidate compounds selective inhibit CK1δ activity either directly or through blocking its priming for other kinases a number of different screens have been developed. The general concept of these screens is provided in WO2005/001114.
  • To measure the effect of putative CK1δ inhibitors on the levels of CK1δ-mediated phosphorylation selected-reaction monitoring assays were performed that provide quantitative relative measurement of phosphate group occupancy at specific sites in transgenic human and endogenous murine forms of Tau.
  • The PhosphoTau SRM V2 assay measures total tau and relative phosphorylation levels at five of the most commonly studied sites on Tau and was obtained from Proteome Sciences plc (Cobham, England). None of the sites in the V2 assay is uniquely phosphorylated by CK1δ and there is a possibility that compound-induced inhibition of phosphorylation measured by this method may be achieved through promiscuous inhibition of other kinases such as GSK3b and/or CDK5. To address this limitation, Proteome Sciences has developed a V3 assay that measures total tau and two sites that are exclusively phosphorylated by CK1δ in addition to four others that have been shown to be phosphorylated in vitro by at least one other Tau kinase in addition to CK1δ. Table 1 lists the various sites covered and the candidate Tau kinases reported in Hanger et al. (2007).
  • TABLE 1
    Tau phosphorylation sites covered by Tau Phosphorylation SRM V2
    and V3 assays
    Site number Candidate Kinases
    Assay V2
    Ser181 GSK3b
    Ser199 CK2, GSK3b, PKA
    Thr231 GSK3b, PKA
    Ser262 CK1δ, GSK3b, PKA
    Ser396 CK1δ, CK2, GSK3b
    Assay V3
    Ser46 CK1δ, GSK3b
    Thr50 CK1δ, GSK3b
    Ser113* CK1δ
    Ser396 CK1δ, CK2, GSK3b
    Ser404 CK1δ, CK2, GSK3b
    Ser433* CK1δ
    Numbering based on human 2N4R tau.
    *CK1d unique site
  • SH-SY5Y-TMHT Cell Line
  • The SH-SY5Y-TMHT cell line (JSW Life Sciences, Graz, Austria) represents an in vitro model of tauopathy. The cell line is created by stably transfecting the human neuroblastoma derived SH-SY5Y cell line with a vector containing the full length human 2N4R Tau isoform which carries two common disease associated mutations (V337M/R406W). In recent studies (Flunkert et al. 2011 submitted, Loeffler et al. 2011 submitted) both the SH-SY5Y-TMHT cell line and a transgenic mouse line carrying the same human transgene were shown to express high levels of human Tau which becomes hyperphosphorylated at multiple epitopes previously demonstrated to be phosphorylated in various human tauopathies including Alzheimer's disease. Furthermore, in SH-SY5Y-TMHT cells exposed to different kinase inhibitors, including JNK-Inhibitor SP600125, and CK1 inhibitor IC261 levels of Tau phosphorylation at key pathogenic sites were reduced in patterns consistent with the known site-specificity of the targeted kinase. Thus, the SH-SY5Y-TMHT cell line is ideally suited to the screening of novel Tau kinase inhibitors.
  • Compound Screening in SH-SY5Y-TMHT Cells
  • SH-SY5Y-TMHT cells are kept in culture medium (DMEM medium, 10% FCS, 1% NEAA, 1% L-Glutamine, 100 μg/ml Gentamycin, 300 μg/ml Geneticin G-418) for 2 days until 80-90% confluency. Cells are then differentiated in culture medium supplemented with 10 μM retinoic acid (RA) for 7 days changing medium every 2 to 3 days. Differentiated cells are seeded onto 6-well plates and 96-well plates at a cell density of 1.25×106 and 8×105 cells per well, respectively. On day 8 post-differentiation, the test compounds, reference compounds and vehicle control were added to the culture medium. After 6 h of compound exposure one plate of cells is subjected to a MTT assay to evaluate the effect of test and reference items on cell viability. Remaining wells are washed once with cold PBS and harvested in 300 μl RIPA-Buffer [50 mM Tris pH 7.4, 1% Nonident P40, 0.25% Na-deoxy-cholate, 150 mM NaCl, 1 mM EDTA, 1 μM NaF, 1 μM Na-ortho-vanadate, 80 mM Glycerophosphate, supplemented with freshly added protease (Calbiochem) and phosphatase (Sigma) inhibitor cocktail]. The cell suspension is transferred into a 1.5 ml tube and additionally lysed by sonication on ice. An aliquot of 20 μl is taken for the determination of the protein concentration (BCA assay). Subsequently, the lysates are snap frozen and stored at −80° C. until shipment.
  • Two independent experiments in three (four) technical replicates are performed as depicted in Table 2.
  • TABLE 2
    Experi-
    ment Cells Treatment Concentration Evaluation
    ExpA SH- Vehicle MTT BSA
    SY5Y- Compound 10-5-1-0.5-0.1-0.05 μM TauP V2
    TMHT 324 TauP V3
    Compound 10-5-1-0.5-0.1-0.05 μM
    987
    PF670462 1-0.5-0.1 μM
    ExpB SH- Vehicle MTT BSA
    SY5Y- Compound 10-5-1-0.5-0.1-0.05 μM TauP V2
    TMHT 324 TauP V3
    Compound 10-5-1-0.5-0.1-0.05 μM
    987
    PF670462 1-0.5-0.1 μM
  • Cell Viability Testing
  • To determine compound activity, it is necessary to control for potential cell toxicity of all molecules. Viability of cultures is determined by the MTT assay. This assay allows the measurement of the mitochondrial dehydrogenase activity which reduces yellow MTT to dark blue formazan crystals. Since this reaction is catalyzed in living cells only this assay is used for the determination of cell viability. MTT solution is added to each well in a final concentration of 0.5 mg/ml. After 2 hours, the MTT containing medium is aspired. Cells are lysed in 3% SDS and the formazan crystals are dissolved in isopropanol/HCl. Optical density is measured with a plate-reader at wavelength 570 nm. Cell survival rate is expressed as optical density (OD). Values are calculated as percent of control values.
  • Quantitative Determination of Total Protein Content
  • Prior to assessment of specific Tau phosphorylation status the concentration of total protein in each cell lysate is determined using a standard BCA assay (Pierce Biotechnology, Rockford, USA). Briefly, 20 μl of cell lysate was used in the assay according to the manufacturer's instructions.
  • Quantitative Determination of Total Tau & Phosphorylated Tau Mass Spectrometric Assays
  • Total cell lysates from TMHT cell lines treated with Compound 324, Compound 987, PF670462 and relevant vehicle control respectively are first subjected to 1-dimensional SDS-PAGE to purify the protein fraction. Stacking gels are loaded with approximately 100 μg total protein based on BCA assay results. Gels are run until the total protein content forms a single discrete band in the stacking gel. Each protein band is then cut from the gel and digested with either trypsin or Asp-N and analysed using the PhosphoTau SRM assay V2 or V3 respectively. Each assay method quantifies the phosphorylation in pre-clinical material using a triple quadrupole mass spectrometer (TSQ Vantage, Thermo Scientific, Hemel Hempstead, UK). Prior to SRM analysis phosphopeptides and pre-clinical samples were resolved by RP-chromatography (XBridge column, Waters, Manchester, UK) over a 9 minute gradient 0-30% ACN (buffer A; 0.1% FA, buffer B; ACN, 0.1% FA). Light and heavy versions for each peptide and phosphopeptide were monitored by several SRM transitions, using optimised S Lens values and collision energy settings. The area under the SRM LC peak was used to quantitate the amount of analyte present in each cell lysate as a single point reference to the signal of the heavy peptide spike. An 11 point calibration curve of light phosphopeptides with each point in the curve spiked with 100 fmol heavy phosphopeptides was also produced to determine assay characteristics (LOD, LOQ, precision and accuracy). For each specified tau population, the endogenous level of each tau phosphopeptide was quantified against its calibration curve (0.25-1000 fmol on column). Prior to LC-SRM analysis each tau population was spiked with 100 fmol of the heavy phosphopeptide standards. All data was processed using Pinpoint software (Thermo Scientific) and results reported as pg phospho-peptide/μg total protein.
  • Western Blotting
  • Lysates of treated cells were prepared in Laemmli buffer and 10 μg loaded into each lane of a 10% Nu-PAGE gel (Invitrogen, UK). Samples were run until the coomassie blue dye fromt was within 1 cm of the bottom of the gel. The separated proteins were transferred onto nitrocellulose and blots developed using antibodies specific for total tau (Polyclonal Rabbit Anti-Human Tau, Dako, UK (cat #A0024)) and phospho-Threonine 231 (Tau (Phospho-Thr231) Antibody, Signalway Antibody, USA (cat #11110)) respectively. In each case the bound antibody was detected using ECL Rabbit IgG, HRP-Linked (from donkey) (GE Healthcare, UK (cat #NA934))
  • Results Effect of Test and Reference Compounds on the Cell Viability of SH-SY5Y-TMHT Cells
  • Cell viability was determined in differentiated SH-SY5Y-TMHT cells by the MTT assay. Test and reference compounds were applied in a concentration range from 0.05 μM to 10 μM and from 0.1 μM to 1 μM, respectively. Upon 6 h of treatment, cell viability was evaluated. FIG. 1 shows the effect of Compound 324 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of Compound 324 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar). Statistical significance is indicated by *<0.05, **<0.01, ***<0.001 as determined by One-Way ANOVA. Data are shown from two independent experiments as group mean+/−SEM (n=8). It can be seen from FIG. 1 that Compound 324 exhibited a protective effect on the cell viability of SH-SY5Y-TMHT cells in a dose dependent manner although the effect was only statistically significant at a concentration of 10 μM. FIG. 2 shows the effect of Compound 987 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of Compound 987 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar). Statistical significance is indicated by *<0.05, **<0.01, ***<0.001 as determined by One-Way ANOVA. Data are shown from two independent experiments as group mean+/−SEM (n=8). It can be seen from FIG. 2 that Compound 987 decreased the cell viability in the lower and higher concentration range. At a concentration of 1 and 0.5 μM no cytotoxic effect was observed. FIG. 3 shows the effect of PF670462 on the cell viability of SH-SY5Y-TMHT cells wherein the graph represents effect of PF670462 on cell viability of SH-SY5Y-TMHT cells in % of the vehicle control (VC, white bar). Statistical significance is indicated by *<0.05, **<0.01, ***<0.001 as determined by One-Way ANOVA. Data are shown from two independent experiments as group mean+/−SEM (n=8). It can be seen from FIG. 3 that the reference compound PF 670462 only displayed a significant protective effect on the cell viability of SH-SY5Y-TMHT cells at a concentration of 0.5 μM.
  • Protein Determination of SH-SY5Y-TMHT Cells Following Treatment
  • Protein concentration of cell lysates of the treated SH-SY5Y-TMHT cells was determined using a standard BCA assay. Protein amount was determined from all samples in duplicates. The protein concentration of the samples was in the expected range according to the amount of cells seeded per 12-well plate ranging between 150-350 μg/ml.
  • Determination of Compound Treatment Effect on Specific Phosphorylation Sites Mass Spectrometric Assay
  • Testing of SH-SY5Y-TMHT cell lysates was performed using the PhosphoTau SRM assay V2 and V3. When the relative level of phosphorylation at each site is compared with the ratio in vehicle treated controls there was a distinct reduction in the level of phosphopeptide in cells treated with Compound 324 (data shown for 10 μM) and Compound 987 (data shown for 10 μM). An example showing reduction of phosphorylation on Serine 396 is shown in FIG. 4. This Figure shows mass spectrometric determination of CK1d-selective compounds on phosphorylation of Serine 396 in SH-SY5Y-TMHT cells. Panel A shows cells treated with Vehicle Control (VC) or Compound 324 (T.I.110 μM) and Panel B shows cells treated with Vehicle Control (VC) or Compound 987 (T.I.210 μM).
  • In cells exposed to the vehicle control approximately 83% of Tau is phosphorylated at S396. Treatment with 10 μM Compound 324 reduced this to 38% whilst 10 μM Compound 987 reduced pS396 levels to 24%. These results confirm the inhibition of pS396 by CK1d selective reagents.
  • Western Blot Assay
  • Levels of total Tau and Tau phosphorylated at Threonine 231 in SH-SY5Y-TMHT cell lysates treated with vehicle control, Compound 394 (10 μM), Compound 987 (10 μM) and PF670462 (5 μM) were quantified by Western Blotting. FIG. 5 shows the Western Blot measurement of pT231 (panel A) and total Tau (panel B) levels in SH-SY5Y-TMHT cells treated with selective CK1d inhibitors. As shown in FIG. 5, all three compounds reduced the detectable level of pT231 in Tau protein whereas this epitope was strongly present in vehicle-treated cells. There was no significant difference in the detectable levels of total Tau between the preparations other than for the PF670462-treated lysate which appeared to contain marginally less total Tau than the others. These results confirm the inhibition of pT231 by CK1d selective reagents.

Claims (19)

1. A pharmaceutical composition comprising a compound of formula (IB) or a pharmaceutically acceptable salt or solvate thereof:
Figure US20140018540A1-20140116-C00208
wherein
“Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to one or more (e.g. 1-3) further rings to form a polycyclic ring system comprising up to 4 rings;
Z represents a bond, —C(R7b)(R8b)—, (CH2)2, —O—, —S—, —CH2—O—, —(CH2)2—O—, NR6b, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —CH2—N(R6b)—(CH2)2—, —N(R6b)—CO—, —CH2—NH—CO—(CH2)2—, —N(R6b)—CO—CH2—, ═N—, —N(R7b)—CH═, —C(H)(CN)—, —C(═N—NH—COC1-6 alkyl)-, —CH═C(R6b)—CO—, ═CH—, —N═CH—, —N═C(Me)—, —C(R6b)═CH—, —NH—CO—C(═CH-heteroaryl)-, —C(═C(R7b)(R8b))—, —CH═CH—CO—N(R6b)—, —CH═C(R6b)—CO—NH—CH2—, —CH═C(R6b)—NH—CO—, —CH═C(R6b)—CO—O—CH2—, —CS—S—CH2—, —NH—CS—NH—, —NH—CS—NH—CH2—, —NH—CS—NH—(CH2)2—, —CH2—N(CSNH2)—CH2—, —S—C(R5b)(R6b)—, —S—(CH2)2—O—, SO2, —NH—SO2—, —CH2—NH—SO2—, CO, —CH2—CO—, —(CH2)2—CO—, —O—CH2—CO —, —(CH2)2—CO—, COO, —COO—C(R7b)CO—, —CH═C(R5b)—CONH—CH2—, —CO—CH2—N(R6b)—CO—, —CO—CH2—C(R6b)—CH2—CO—, —CO—CH2—N(R6b)—CH2—, —CO—NH—N═C(R7b)—, —S—CH2—CO—, —S—CH2—CO—N(R6b)—, —S—CH2—CO—N(R6b)—CH2—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —CH2—C(R6b)(OH)—, —C(OH)(CH(Me)(C3-8 cycloalkyl))-CH2—, —C(OH)(R6b)—CH2—, —CH(Me)-NH—CO—CH2—, —CO—N(R6b)—CH2—, —C(H)(R6b)—CO—N(R5b)—CH2—, —CO—N(R6b)—CH2—CH2—, —CO—N(R6b)—CH2—CH2—CO—NH—CH2—, —CO—NH—C(—CONH2)═CH—, —CO—NH—CH(—CONH2)—CH2—, —CH2—C(H)(Me)-CH2—S—, —O—CH2—CO—NH—, —CH2—N(R6b)—CO—CH2—O—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(H)(—CH2-heteroaryl)-, —C(NH-aryl)═N—N═CH—, —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—N═C(-aryl)-CO—, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(—NH-aryl)═N—N═CH—, —NH—C(—NH-aryl)═N—CONH—, —C(═CH-aryl)-CONH—CH2—, —CH═C(R6b)—CONH—, —CH(—CH2-aryl)-NH—CO— or —CH(OH)—, wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
R5b represents hydrogen, C1-6 alkyl or cyano;
R6b represents hydrogen, C1-6 alkyl, C1-6 alkoxy, cyano, COOH, —COOC1-6 alkyl, C3-8 cycloalkyl, —CH2—C3-8 cycloalkyl, aryl, heteroaryl, —C1-6 alkylene-aryl, —CO-aryl, —O—CO-heteroaryl, —CO-heteroaryl or —C(R7b)(R8b)-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
R7b and R8b independently represent hydrogen or C1-6 alkyl;
R1b represents aryl, C3-8 cycloalkyl, monocyclic or bicyclic heterocyclyl or a monocyclic or bicyclic heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
R4b represents halogen, C1-6 alkyl, C1-6 alkenyl, C1-6 alkynyl, C3-8 cycloalkyl, haloC1-6 alkyl, hydroxyl, C1-6 alkoxy, —O—C1-6 alkenyl, haloC1-6 alkoxy, —COOH, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —CONH2, —CH2—CONH2, —NH—C1-6 alkyl, —NH—C2-6 alkenyl, —NH—CO—C1-6 alkyl, —CO—NH—C1-6 alkyl, —O—CH2—CO—NH—C1-6 alkyl, —CH2—CH2—CO—NH—C1-6 alkyl, —S—C1-6 alkyl, —SO—C1-6 alkyl, —SO2—C1-6 alkyl, —SO2—NH2, —SO2—NH—C1-6 alkyl, —S—CH2—CO—C2-6 alkenyl, —SO2—OH, amino, cyano, NO2, ═O, —CO—NH—(CH2)2)—OMe, —NH—C3-8 cycloalkyl, —CH2—CO—NH—C3-8 cycloalkyl, —CO-heterocyclyl, —CO-heteroaryl, —COO—(CH2)2-heterocyclyl, —CH2-aryl, —OCH2-aryl, —OCH2-heteroaryl, —CH2—O—CO-aryl, —O-aryl, —NH—CO-aryl, —NH—CO-heteroaryl, —NH—CO—CH2-aryl, —NH-aryl, aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
m represents an integer from 0 to 3;
R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, —CH2—S—C1-6 alkyl, —S—C2-6 alkynyl, amino, cyano, NO2, ═O, ═S, —SO2—C1-6 alkyl, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —NH—CO—C1-6 alkyl, —NH—CO—CH═CH—CH2—N(Me)2, C1-6 alkyl, —CO—NH—C1-6 alkyl, —CO—NH—CH(Me)-COOH, —S—CH2—CO—N(Et)2, —NH—(CH2)2—OH, —NH—(CH2)3—OH, —NH—CH(Et)-CH2—OH, —CO—NH—(CH2)3—OH, —CH(CH2OH)2 or —S—CH2—CO—NH—CO—NH—C1-6 alkyl, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups;
with the proviso that the compound is other than compound number 54, 373, 458, 496, 585, 590, 594, 596-597, 601-602, 649, 703, 778, 877, 891, 910, 912, 926 and 962-963.
2. A pharmaceutical composition as defined in claim 1, wherein:
“Het B” represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system;
Z represents a bond, —C(R7b)(R8b)—, —O—, —S—, —CH2—O—, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —N(R6b)—CO—, —N(R6b)—CO—CH2—, —N(R7b)—CH═, ═CH—, —N═CH—, —C(R6b)═CH—, —C(═C(R7b)(R8b))—, SO2, —CH2—NH—SO2—, CO, —O—CH2—CO—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —C(H)(R6b)—CO—N(R6b)—CH2—, —O—CH2—CO—NH—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl)-, —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(═CH-aryl)-CONH—CH2— or —CH(—CH2-aryl)-NH—CO— wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups;
R5b represents hydrogen;
R6b represents hydrogen, methyl, C1-6 alkoxy, —COOH, —CO-aryl, —O—CO-heteroaryl or —CO-heteroaryl, wherein said aryl groups of R6b may be optionally substituted by one or more halogen or C1-6 alkoxy groups;
R7b and R8b independently represent hydrogen or C1-6 alkyl;
R1b represents a monocyclic aryl or heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups;
R4b represents halogen, hydroxyl, —O—C1-6 alkenyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —SO2—NH2, amino, cyano, ═O, —CH2—CO—NH—C3-8 cycloalkyl, —CH2-aryl, —OCH2-heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups;
m represents an integer from 0 to 2; and
R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, amino, cyano, NO2, ═O, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, C1-6 alkyl, —CO—NH—C1-6 alkyl or —CO—NH—CH(Me)-COOH, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups.
3. A pharmaceutical composition as defined in claim 1 or claim 2, wherein Het B represents a 5 membered heterocyclic ring system containing 1 to 3 heteroatoms selected from O, N or S, wherein said ring system is fused to a 6 membered ring to form a bicyclic heterocyclic ring system.
4. A pharmaceutical composition as defined in claim 3, wherein Het B represents benzoxazolyl, indolyl or indolizinyl.
5. A pharmaceutical composition as defined in any one of claims 1 to 4, wherein R1b represents a monocyclic aryl or heteroaryl ring system, wherein R1b may be substituted by one or more (e.g. 1, 2 or 3) R4b groups.
6. A pharmaceutical composition as defined in claim 5, wherein R1b represents a monocyclic aryl group such as phenyl optionally substituted by one or more (e.g. 1) R4b groups or a monocyclic heteroaryl group such as thienyl, pyrimidinyl or pyrazolinyl optionally substituted by one or more (e.g. 1 or 2) R4b groups.
7. A pharmaceutical composition as defined in any one of claims 1 to 6, wherein R4b represents halogen, hydroxyl, —O—C1-6 alkenyl, —COO—C1-6 alkyl, —NH—C1-6 alkyl, —SO2—NH2, amino, cyano, ═O, —CH2—CO—NH—C3-8 cycloalkyl, —CH2-aryl, —OCH2-heteroaryl, —O-aryl, —NH—CO-aryl, —NH-aryl or heteroaryl groups, wherein said aryl, heterocyclyl or heteroaryl groups of R4b may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, ═S or hydroxyl groups and wherein said C1-6 alkyl or C2-6 alkenyl groups of R4b may be optionally substituted by one or more hydroxyl, amino, cyano, C1-6 alkoxy, CONH2 or —COO—C1-6 alkyl groups.
8. A pharmaceutical composition as defined in claim 7, wherein R4b represents halogen (e.g. fluorine), amino or heteroaryl (e.g. pyridyl).
9. A pharmaceutical composition as defined in any one of claims 1 to 8, wherein Z represents a bond, —C(R7b)(R8b)—, —O—, —S—, —CH2—O—, —N(R6b)—C(R7b)(R8b)—, —N(R6b)—(CH2)2—, —N(R6b)—(CH2)3—, —N(R6b)—CO—, —N(R6b)—CO—CH2—, —N(R7b)—CH═, ═CH—, —N═CH—, —C(R6b)═CH—, —C(═C(R7b)(R8b))—, SO2, —CH2—NH—SO2—, CO, —O—CH2—CO—, —SO2—N(R6b)—C(R7b)(R8b)—CONH—, —SO2—N(R6b)—CH(—CH2-aryl)-CONH—CH2—, —CH(—S—C1-6 alkyl)-C(Me)(OH)—, —C(H)(R6b)—CO—N(R5b)—CH2—, —O—CH2—CO—NH—, —N(R6b)—CO—CH2—O—, —C(H)(—CH2-aryl), —C(NH-aryl)═N—N═CH—, —NH—CO—CH2—N(R6b)—, —NH—N═C(-aryl)-, —NH—C(═N—CO—C1-6 alkyl)-NH—(CH2)2—, —C(═CH-aryl)-CONH—CH2— or —CH(—CH2-aryl)-NH—CO— wherein said aryl or heteroaryl groups of Z may be optionally substituted by one or more halogen, C1-6 alkyl, C1-6 alkoxy, NO2 or hydroxyl groups.
10. A pharmaceutical composition as defined in claim 9, wherein Z represents a bond or CO.
11. A pharmaceutical composition as defined in any one of claims 1 to 10, wherein m represents an integer from 0 to 2, such as 0 or 2.
12. A pharmaceutical composition as defined in any one of claims 1 to 11, wherein R2b represents halogen, haloC1-6 alkyl, C1-6 alkyl, C3-8 cycloalkyl, hydroxyl, C1-6 alkoxy, —S—C1-6 alkyl, amino, cyano, NO2, ═O, —CONH2, —CO—C1-6 alkyl, —COO—C1-6 alkyl, C1-6 alkyl, —CO—NH—C1-6 alkyl or —CO—NH—CH(Me)—COOH, wherein said C1-6 alkyl groups of R2b may be optionally substituted by one or more cyano or hydroxyl groups.
13. A pharmaceutical composition as defined in claim 12, wherein R2b represents amino or —CONH2.
14. A pharmaceutical composition as defined in claim 1, wherein the compound of formula (IB) is selected from any of compounds 2-3, 26-28, 30-33, 35, 47-48, 51, 57-60, 63-64, 78, 84, 113, 123, 127-129, 145, 155-157, 171-173, 204, 206-207, 210, 225, 227, 233, 235-236, 241-242, 244, 249, 269, 285, 288, 303, 307-312, 314-316, 320, 324-325, 333, 336, 351, 357-360, 374-375, 384-391, 396, 399-402, 404-405, 407-411, 414, 424-425, 427-428, 437, 448, 456-457, 482, 484-485, 489-491, 495, 497-498, 505, 507, 516, 519, 524, 526, 553, 559-560, 568, 570, 575, 609, 615-616, 618, 626-627, 638, 653, 669, 692-694, 705, 709, 712, 716, 719, 725, 734, 738, 740, 746, 749, 753-754, 756, 758-759, 767, 770, 777, 784-785, 790, 792, 796, 800-801, 804-805, 808, 819, 821, 827-828, 831, 833, 838, 844, 847, 857-858, 869, 872, 875, 933, 952, 955, 969, 987, 990 or 999 as described herein or a pharmaceutically acceptable salt or solvate thereof.
15. A pharmaceutical composition as defined in claim 14, wherein the compound of formula (IB) is selected from any one of:
5-(1,3-benzoxazol-2-yl)-4-(pyridin-4-yl)pyrimidin-2-amine (Compound 324);
2-[3-(pyridin-4-yl)-1H-pyrazol-4-yl]-1,3-benzoxazole (Compound 952);
2-amino-3-[(4-fluorophenyl)carbonyl]indolizine-1-carboxamide (Compound 987); and
2-amino-1-[(4-fluorophenyl)carbonyl]-1H-indole-3-carboxamide (Compound 999);
or a pharmaceutically acceptable salt or solvate thereof.
16. A compound of formula (IB) as defined in any one of claims 1 to 15 for use in therapy.
17. A compound of formula (IB) as defined in any one of claims 1 to 15 for use as a casein kinase delta (CK1δ) inhibitor in the treatment of a neurodegenerative disorder, such as tauopathies.
18. The compound as defined in claim 17, wherein the tauopathy is selected from Alzheimer's disease, frontotemporal dementia with Parkinsonism linked to chromosome 17 (FTDP-17), progressive supranuclear palsy (PSP), Pick's disease, corticobasal degeneration, multisystem atrophy (MSA), neurobasal degeneration with iron accumulation, type 1 (Hallervorden-Spatz), argyrophilic grain dementia, Down's syndrome, diffuse neurofibrillary tangles with calcification, dementia pugilistica, Gerstmann-Straussler-Scheinker disease, myotonic dystrophy, Niemann-Pick disease type C, progressive subcortical gliosis, prion protein cerebral amyloid angiopathy, tangle only dementia, postencephalitic parkinsonism, subacute sclerosing panencephalitis, Creutzfeldt-Jakob disease, amyotrophic lateral sclerosis/parkinsonism-dementia complex, non-Guamanian motor neuron disease with neurofibrillary tangles/dementia, and Parkinson's disease.
19. The compound as defined in claim 17 or claim 18, wherein the tauopathy comprises Alzheimer's disease.
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9815841B2 (en) 2014-01-29 2017-11-14 Glaxosmithkline Intellectual Property Development Limited Compounds
US10087186B2 (en) 2014-01-29 2018-10-02 Glaxosmithkline Intellectual Property Development Limited Compounds as LRRK2 kinase inhibitors
CN113286785A (en) * 2019-01-04 2021-08-20 贝尔布鲁克实验室有限责任公司 Inhibitors of cGAS activity as therapeutic agents
CN116034105A (en) * 2020-06-25 2023-04-28 亚克医药株式会社 Heterocyclic compounds as inhibitors of casein kinase 1 delta and/or activin receptor-like kinase 5

Families Citing this family (208)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
HUE032813T2 (en) 2005-12-28 2017-11-28 Vertex Pharma Solid forms of n-[2,4-bis(1,1-dimethylethyl)-5-hydroxyphenyl]-1,4-dihydro-4-oxoquinoline-3-carboxamide
BRPI0906474A2 (en) 2008-01-04 2015-07-14 Intellikine Inc Certain chemical entities, compositions and methods
US8193182B2 (en) 2008-01-04 2012-06-05 Intellikine, Inc. Substituted isoquinolin-1(2H)-ones, and methods of use thereof
MX2011013816A (en) 2009-06-29 2012-04-11 Incyte Corp Pyrimidinones as pi3k inhibitors.
WO2011075643A1 (en) 2009-12-18 2011-06-23 Incyte Corporation Substituted heteroaryl fused derivatives as pi3k inhibitors
US20130018039A1 (en) * 2010-03-31 2013-01-17 Bodmer Vera Q Imidazolyl-imidazoles as kinase inhibitors
US9193721B2 (en) 2010-04-14 2015-11-24 Incyte Holdings Corporation Fused derivatives as PI3Kδ inhibitors
WO2011163195A1 (en) 2010-06-21 2011-12-29 Incyte Corporation Fused pyrrole derivatives as pi3k inhibitors
JP2014503528A (en) * 2010-12-14 2014-02-13 エレクトロプホレトイクス リミテッド Casein kinase 1δ (CK1δ) inhibitor and its use in the treatment of neurodegenerative diseases such as tauopathy
CA2822070C (en) 2010-12-20 2019-09-17 Incyte Corporation N-(1-(substituted-phenyl)ethyl)-9h-purin-6-amines as pi3k inhibitors
US8754114B2 (en) 2010-12-22 2014-06-17 Incyte Corporation Substituted imidazopyridazines and benzimidazoles as inhibitors of FGFR3
KR20180080358A (en) 2011-01-10 2018-07-11 인피니티 파마슈티칼스, 인코포레이티드 Processes for preparing isoquinolinones and solid forms of isoquinolinones
GB201104267D0 (en) 2011-03-14 2011-04-27 Cancer Rec Tech Ltd Pyrrolopyridineamino derivatives
WO2012125629A1 (en) 2011-03-14 2012-09-20 Incyte Corporation Substituted diamino-pyrimidine and diamino-pyridine derivatives as pi3k inhibitors
WO2012135009A1 (en) 2011-03-25 2012-10-04 Incyte Corporation Pyrimidine-4,6-diamine derivatives as pi3k inhibitors
AR087701A1 (en) 2011-08-31 2014-04-09 Japan Tobacco Inc PIRAZOL DERIVATIVES WITH SGLT1 INHIBITING ACTIVITY
DK2751109T3 (en) 2011-09-02 2017-01-23 Incyte Holdings Corp HETEROCYCLYLAMINES AS PI3K INHIBITORS
PE20141120A1 (en) 2011-10-07 2014-09-15 Takeda Pharmaceutical HETEROCYCLIC COMPOUNDS
BR112014009524A2 (en) 2011-10-18 2017-05-09 Astellas Pharma Inc bicyclic heterocyclic compound
AR090037A1 (en) 2011-11-15 2014-10-15 Xention Ltd DERIVATIVES OF TIENO AND / OR FURO-PYRIMIDINES AND PYRIDINES INHIBITORS OF THE POTASSIUM CHANNELS
JP6141864B2 (en) 2011-12-01 2017-06-07 ケモセントリックス,インコーポレイティド Substituted anilines as CCR (4) antagonists
AR090548A1 (en) 2012-04-02 2014-11-19 Incyte Corp BICYCLIC AZAHETEROCICLOBENCILAMINS AS PI3K INHIBITORS
WO2013186159A1 (en) 2012-06-13 2013-12-19 F. Hoffmann-La Roche Ag New diazaspirocycloalkane and azaspirocycloalkane
LT3495367T (en) 2012-06-13 2021-02-25 Incyte Holdings Corporation Substituted tricyclic compounds as fgfr inhibitors
US8828998B2 (en) 2012-06-25 2014-09-09 Infinity Pharmaceuticals, Inc. Treatment of lupus, fibrotic conditions, and inflammatory myopathies and other disorders using PI3 kinase inhibitors
WO2014007228A1 (en) * 2012-07-03 2014-01-09 小野薬品工業株式会社 Compound having agonistic activity on somatostatin receptor, and use thereof for medical purposes
WO2014009891A1 (en) * 2012-07-11 2014-01-16 Piramal Enterprises Limited Heterocyclic compounds for use in the treatment of cancers
US9388185B2 (en) 2012-08-10 2016-07-12 Incyte Holdings Corporation Substituted pyrrolo[2,3-b]pyrazines as FGFR inhibitors
CN104736202B (en) 2012-08-22 2021-09-07 康奈尔大学 Methods for inhibiting fascin
US9328078B2 (en) * 2012-08-24 2016-05-03 Treventis Corporation Benzofurazan anti-amyloid compounds and methods
CN102850341B (en) * 2012-09-05 2015-02-18 浙江工业大学 Thiadiazole compound, preparation method and applications thereof
GB201216018D0 (en) 2012-09-07 2012-10-24 Cancer Rec Tech Ltd Pharmacologically active compounds
IN2015DN00960A (en) 2012-09-25 2015-06-12 Hoffmann La Roche
CN103739594A (en) * 2012-10-17 2014-04-23 南京大学 Schiff base derivatives containing pyrazine ring and triazole structure and preparation method of the derivatives
WO2014084778A1 (en) 2012-11-27 2014-06-05 Thomas Helledays Stiftelse För Medicinsk Forskning Pyrimidine-2,4-diamine derivatives for treatment of cancer
US9266892B2 (en) 2012-12-19 2016-02-23 Incyte Holdings Corporation Fused pyrazoles as FGFR inhibitors
EP2939675B1 (en) * 2012-12-28 2019-09-04 Shin Nippon Biomedical Laboratories, Ltd. Oct3 activity inhibitor containing imidazopyridine derivative as active component, and oct3 detection agent
NZ710444A (en) 2013-02-11 2020-08-28 Univ California Compositions and methods for treating neurodegenerative diseases and cardiomyopathy
AR095079A1 (en) 2013-03-12 2015-09-16 Hoffmann La Roche DERIVATIVES OF OCTAHIDRO-PIRROLO [3,4-C] -PIRROL AND PIRIDINA-FENILO
JP2016520532A (en) 2013-03-15 2016-07-14 ホワイトヘッド・インスティテュート・フォー・バイオメディカル・リサーチ Benzimidazole derivatives and uses thereof
EP2970306A4 (en) * 2013-03-15 2016-08-03 Epizyme Inc Substituted 6,5-fused bicyclic heteroaryl compounds
US9045477B2 (en) 2013-03-15 2015-06-02 Epizyme, Inc. Substituted 6,5-fused bicyclic heteroaryl compounds
SI2986610T1 (en) 2013-04-19 2018-04-30 Incyte Holdings Corporation Bicyclic heterocycles as fgfr inhibitors
US9797882B2 (en) 2013-07-09 2017-10-24 The Translational Genomics Research Institute Method of screening for a compound for inhibitory activity of FN14-tweak interaction
EP3019874B1 (en) * 2013-07-09 2019-08-21 The Translational Genomics Research Institute Compositions and methods of screening for compounds that modulate activity at a tweak binding site on a crd of fn14
TWI649308B (en) 2013-07-24 2019-02-01 小野藥品工業股份有限公司 Quinoline derivative
GB201314452D0 (en) 2013-08-13 2013-09-25 Ostara Biomedical Ltd Embryo implantation
RU2570907C2 (en) * 2013-10-21 2015-12-20 Автономная Некоммерческая Организация "Научно-Исследовательский Центр Биотехнологии Антибиотиков И Других Биологически Активных Веществ "Биоан" 3-acylaminopyridin derivatives, applicable as serine-threonine proteinkinase gsk3b inhibitors, as medications for type ii diabetes treatment
US10709714B2 (en) 2013-11-22 2020-07-14 Clifton Life Sciences LLC Gastrin antagonists for treatment and prevention of osteoporosis
UA118201C2 (en) 2013-11-26 2018-12-10 Ф. Хоффманн-Ля Рош Аг NEW OCTAHYDRO-CYCLOBUTA [1,2-c;3,4-c']DIPYRROL-2-YL
GB201321738D0 (en) * 2013-12-09 2014-01-22 Ucb Pharma Sa Therapeutic Agents
WO2015106025A1 (en) * 2014-01-09 2015-07-16 The J. David Gladstone Institutes, A Testamentary Trust Established Under The Will Of J. David Gladstone Substituted benzoxazine and related compounds
EP3104706B1 (en) 2014-02-11 2022-03-23 Mitokinin, Inc. Compositions and methods using the same for treatment of neurodegenerative and mitochondrial disease
ME03580B (en) 2014-02-13 2020-07-20 Incyte Corp Cyclopropylamines as lsd1 inhibitors
US9493442B2 (en) 2014-02-13 2016-11-15 Incyte Corporation Cyclopropylamines as LSD1 inhibitors
US9527835B2 (en) 2014-02-13 2016-12-27 Incyte Corporation Cyclopropylamines as LSD1 inhibitors
AU2015217073B2 (en) 2014-02-13 2019-08-22 Incyte Holdings Corporation Cyclopropylamines as LSD1 inhibitors
DK3107902T3 (en) 2014-02-20 2021-05-03 Cornell Univ Cornell Center For Technology Enterprise & Commercialization Cctec CONNECTIONS AND METHODS OF INHIBITING FASCIN
PT3110812T (en) * 2014-02-27 2019-07-10 Treventis Corp Anti-amyloid compounds containing benzofurazan
RS59477B1 (en) 2014-03-26 2019-12-31 Hoffmann La Roche Bicyclic compounds as autotaxin (atx) and lysophosphatidic acid (lpa) production inhibitors
EA032357B1 (en) 2014-03-26 2019-05-31 Ф. Хоффманн-Ля Рош Аг Condensed [1,4]diazepine compounds as autotaxin (atx) and lysophosphatidic acid (lpa) production inhibitors
US20170029388A1 (en) * 2014-04-11 2017-02-02 Intercontinental Great Brands Llc Treatment of Neurodegenerative Diseases with Asparagine Endopeptidase (AEP) Inhibitors and Compositions Related Thereto
WO2015160975A2 (en) 2014-04-16 2015-10-22 Infinity Pharmaceuticals, Inc. Combination therapies
WO2015158313A1 (en) * 2014-04-19 2015-10-22 Sunshine Lake Pharma Co., Ltd. Sulfonamide derivatives and pharmaceutical applications thereof
PT3597649T (en) 2014-04-23 2022-01-21 Dart Neuroscience Llc Substituted [1,2,4]triazolo[1,5-a]pyrimidin-7-yl compounds as pde2 inhibitors
EP3140298A1 (en) 2014-05-07 2017-03-15 Pfizer Inc. Tropomyosin-related kinase inhibitors
CN104059060B (en) * 2014-05-30 2017-08-01 西安交通大学 A kind of ketones derivant of 5 (methylene of 1H indoles 3) 1,3 thiazolidine 4 and its synthetic method and application
SG11201609981RA (en) 2014-06-04 2016-12-29 Thomas Helledays Stiftelse För Medicinsk Forskning Mth1 inhibitors for treatment of inflammatory and autoimmune conditions
CA2949785A1 (en) 2014-06-04 2015-12-10 Thomas Helledays Stiftelse For Medicinsk Forskning Mth1 inhibitors for treatment of cancer
WO2015191677A1 (en) 2014-06-11 2015-12-17 Incyte Corporation Bicyclic heteroarylaminoalkyl phenyl derivatives as pi3k inhibitors
US9695167B2 (en) 2014-07-10 2017-07-04 Incyte Corporation Substituted triazolo[1,5-a]pyridines and triazolo[1,5-a]pyrazines as LSD1 inhibitors
TWI687419B (en) 2014-07-10 2020-03-11 美商英塞特公司 Imidazopyridines and imidazopyrazines as LSD1 inhibitors
WO2016007727A1 (en) 2014-07-10 2016-01-14 Incyte Corporation Triazolopyridines and triazolopyrazines as lsd1 inhibitors
WO2016007736A1 (en) 2014-07-10 2016-01-14 Incyte Corporation Imidazopyrazines as lsd1 inhibitors
SG11201700140TA (en) * 2014-07-31 2017-02-27 Merck Patent Gmbh Indolizine derivatives which are applicable to neurodegenerative diseases
WO2016022465A1 (en) * 2014-08-04 2016-02-11 Drexel University Novel compounds and methods of treating or ameliorating an il-1r-mediated disease or disorder using same
JO3589B1 (en) 2014-08-06 2020-07-05 Novartis Ag Protein kinase c inhibitors and methods of their use
ES2702288T3 (en) 2014-10-07 2019-02-28 Vertex Pharma Co-crystals of transmembrane conductance regulator modulators of cystic fibrosis
US10851105B2 (en) 2014-10-22 2020-12-01 Incyte Corporation Bicyclic heterocycles as FGFR4 inhibitors
GB201419579D0 (en) * 2014-11-03 2014-12-17 Iomet Pharma Ltd Pharmaceutical compound
WO2016073424A1 (en) 2014-11-05 2016-05-12 Dart Neuroscience, Llc Substituted 5-methyl-[1, 2, 4] triazolo [1,5-a) pyrimidin-2-amine compounds as pde2 inhibitors
JP6708130B2 (en) 2014-12-25 2020-06-10 小野薬品工業株式会社 Quinoline derivative
GB201501302D0 (en) 2015-01-27 2015-03-11 Ostara Biomedical Ltd Embryo implantation
WO2016134294A1 (en) 2015-02-20 2016-08-25 Incyte Corporation Bicyclic heterocycles as fgfr4 inhibitors
SG10201913036RA (en) 2015-02-20 2020-02-27 Incyte Corp Bicyclic heterocycles as fgfr inhibitors
MA41551A (en) 2015-02-20 2017-12-26 Incyte Corp BICYCLIC HETEROCYCLES USED AS FGFR4 INHIBITORS
RS63963B1 (en) 2015-02-27 2023-03-31 Incyte Holdings Corp Processes for the preparation of a pi3k inhibitor
WO2016149756A1 (en) 2015-03-23 2016-09-29 The University Of Melbourne Treatment of respiratory diseases
EP3277689B1 (en) 2015-04-03 2019-09-04 Incyte Corporation Heterocyclic compounds as lsd1 inhibitors
MA41898A (en) 2015-04-10 2018-02-13 Hoffmann La Roche BICYCLIC QUINAZOLINONE DERIVATIVES
AU2016254049A1 (en) * 2015-04-30 2017-11-02 Musc Foundation For Research Development Oxindole compounds and pharmaceutical compositions thereof
US9988401B2 (en) 2015-05-11 2018-06-05 Incyte Corporation Crystalline forms of a PI3K inhibitor
WO2016183060A1 (en) 2015-05-11 2016-11-17 Incyte Corporation Process for the synthesis of a phosphoinositide 3-kinase inhibitor
GB201508276D0 (en) * 2015-05-14 2015-06-24 Electrophoretics Ltd A casein kinase 1 delta inhibitor
EP3303332A1 (en) * 2015-06-01 2018-04-11 Bantam Pharmaceutical, LLC Substituted pyrazole and pyrrole compounds and methods for using them for inhibition of initiation of translation and treatment of diseases and disorders relating thereto
WO2016202758A1 (en) 2015-06-18 2016-12-22 Bayer Pharma Aktiengesellschaft Substituted 2-(1h-pyrazol-1-yl)-1h-benzimidazole compounds
WO2016202756A1 (en) 2015-06-18 2016-12-22 Bayer Pharma Aktiengesellschaft Substituted 2-(1h-pyrazol-1-yl)-1h-benzimidazole compounds
WO2017000277A1 (en) * 2015-07-01 2017-01-05 Merck Sharp & Dohme Corp. Substituted triazolo bicycliccompounds as pde2 inhibitors
WO2017004405A1 (en) 2015-07-01 2017-01-05 Northwestern University Substituted quinazoline compounds and uses thereof for modulating glucocerebrosidase activity
PE20181175A1 (en) 2015-08-12 2018-07-20 Incyte Corp SALTS OF AN LSD INHIBITOR
CN105061462B (en) * 2015-08-18 2017-05-24 沈阳药科大学 Tetrahydrobenzo [4,5] thieno [2,3-d] pyrimidines compound containing amide and application thereof
CR20180058A (en) * 2015-09-04 2018-02-26 Hoffmann La Roche NEW DERIVATIVES OF PHENOXIMETILO
MX2018003318A (en) 2015-09-18 2018-05-16 Kaken Pharma Co Ltd Biaryl derivative and medicine containing same.
PE20180451A1 (en) 2015-09-24 2018-03-05 Hoffmann La Roche NEW BICYCLE COMPOUNDS AS ATX INHIBITORS
WO2017050791A1 (en) 2015-09-24 2017-03-30 F. Hoffmann-La Roche Ag New bicyclic compounds as dual atx/ca inhibitors
PE20180461A1 (en) 2015-09-24 2018-03-06 Hoffmann La Roche NEW BICYCLE COMPOUNDS AS ATX INHIBITORS
PE20180233A1 (en) 2015-09-24 2018-01-31 Hoffmann La Roche NEW BICYCLE COMPOUNDS AS DUAL ATX / AC INHIBITORS
GB201517523D0 (en) 2015-10-05 2015-11-18 Ostara Biomedical Ltd Methods and compositions for managing reproduction
US20190112317A1 (en) 2015-10-05 2019-04-18 The Trustees Of Columbia University In The City Of New York Activators of autophagic flux and phospholipase d and clearance of protein aggregates including tau and treatment of proteinopathies
WO2017063966A1 (en) 2015-10-13 2017-04-20 Bayer Pharma Aktiengesellschaft Substituted 2-(1h-pyrazol-1-yl)-benzothiazole compounds
EA036851B1 (en) * 2015-11-02 2020-12-28 Янссен Фармацевтика Нв [1,2,4]TRIAZOLO[1,5-a]PYRIMIDIN-7-YL COMPOUND
CN106831570B (en) * 2015-12-07 2020-03-31 成都海创药业有限公司 Quinoline compound, preparation method thereof and application of quinoline compound as urate transporter inhibitor medicine
US20200375996A1 (en) * 2015-12-15 2020-12-03 D.E. Shaw Research, Llc Method of treating neurodegenerative disorders by rescuing alpha-synuclein toxicity
CN107033087B (en) * 2016-02-04 2020-09-04 西华大学 1H-indazole-4-amine compounds and use thereof as IDO inhibitors
WO2017133258A1 (en) * 2016-02-04 2017-08-10 西华大学 1h-indazole derivative and use thereof as ido inhibitor
CN107840826B (en) * 2016-09-19 2021-07-09 西华大学 1H-indazole derivatives and application thereof as IDO (intermediate bonded oxygen) inhibitor
AU2017252328B2 (en) 2016-04-22 2023-02-23 Incyte Corporation Formulations of an LSD1 inhibitor
WO2017210545A1 (en) 2016-06-02 2017-12-07 Cadent Therapeutics, Inc. Potassium channel modulators
KR20230109185A (en) 2016-06-07 2023-07-19 자코바이오 파마슈티칼스 컴퍼니 리미티드 Novel heterocyclic derivatives useful as shp2 inhibitors
RU2754507C2 (en) 2016-06-24 2021-09-02 Инфинити Фармасьютикалз, Инк. Combination therapy
WO2018011681A1 (en) 2016-07-14 2018-01-18 Pfizer Inc. Novel pyrimidine carboxamides as inhibitors of vanin-1 enzyme
WO2018030762A1 (en) * 2016-08-09 2018-02-15 세종대학교산학협력단 Pharmaceutical composition for stroke treatment based on ampk inhibition
JP7471818B2 (en) 2016-08-18 2024-04-22 ヴィダック ファーマ リミテッド Piperazine derivatives, pharmaceutical compositions, and methods of use thereof
LT3507291T (en) 2016-09-02 2021-09-10 Cyclerion Therapeutics, Inc. Fused bicyclic sgc stimulators
CN106432235B (en) * 2016-10-19 2018-02-02 南通大学 Target CDK and DNA β carboline derivatives and preparation method thereof and medical usage
MA46589A (en) 2016-10-24 2019-08-28 Yumanity Therapeutics Inc COMPOUNDS AND USES OF THE LATEST
UA125302C2 (en) * 2016-11-02 2022-02-16 Янссен Фармацевтика Нв [1,2,4]triazolo[1,5-a]pyrimidine derivatives as pde2 inhibitors
AU2017353313C1 (en) 2016-11-02 2022-06-09 Janssen Pharmaceutica Nv (1,2,4)triazolo(1,5-a)pyrimidine compounds as PDE2 inhibitors
WO2018083103A1 (en) 2016-11-02 2018-05-11 Janssen Pharmaceutica Nv [1,2,4]triazolo[1,5-a]pyrimidine compounds as pde2 inhibitors
US11008325B2 (en) 2016-11-14 2021-05-18 Virginia Commonwealth University Inhibitors of cancer invasion, attachment, and/or metastasis
EP3541378A4 (en) * 2016-11-16 2020-10-07 University of South Florida ALLOSTERIC ANTAGONISTS OF GPRC6a AND THEIR USE IN MITIGATING PROTEINOPATHIES
US11628159B2 (en) * 2017-01-10 2023-04-18 Eth Zurich Cell-protective compounds and their use
CN110198935B (en) 2017-01-23 2022-05-31 卡登特治疗公司 Potassium channel modulators
CN106748969B (en) * 2017-01-23 2019-06-18 南阳师范学院 A kind of N- (4- benzyl piepridine base)-asafoetide amide compound, preparation method and its usage
CN106831573B (en) * 2017-01-23 2019-05-24 南阳师范学院 (N-1,2,3,4- tetrahydro isoquinolyl)-asafoetide amide compound, preparation method and applications
SG11201906819VA (en) 2017-01-26 2019-08-27 Ono Pharmaceutical Co Ethane-sulfonate salt of quinoline derivative
IL268128B2 (en) 2017-02-01 2023-03-01 Yissum Res Dev Co Of Hebrew Univ Jerusalem Ltd N1 -(4-(5-(cyclopropylmethyl)-1 -methyl-1 h-pyrazol-4-yl)pyridin-2-yl)cyclohexane-1,4-diamine derivatives and related compounds as ck1 and/or iraki inhibitors for treating cancer
CN109846879B (en) * 2017-03-01 2021-06-29 浙江大学 Androgen receptor antagonist with imine structure type and application thereof
BR112019019017A2 (en) 2017-03-16 2020-04-14 Hoffmann La Roche heterocyclic compounds useful as dual atx / ca inhibitors
CN110382484B (en) 2017-03-16 2022-12-06 豪夫迈·罗氏有限公司 Novel bicyclic compounds as ATX inhibitors
MD3483164T2 (en) 2017-03-20 2020-07-31 Forma Therapeutics Inc Pyrrolopyrrole compositions as pyruvate kinase (PKR) activators
FI3601239T3 (en) 2017-03-23 2024-09-11 Jacobio Pharmaceuticals Co Ltd Novel heterocyclic derivatives useful as shp2 inhibitors
EP3615529B1 (en) 2017-04-26 2024-06-05 Basilea Pharmaceutica International AG, Allschwil Processes for the preparation of furazanobenzimidazoles and crystalline forms thereof
JP7343170B2 (en) * 2017-05-12 2023-09-12 ボード オブ トラスティーズ オブ ザ サザン イリノイ ユニバーシティ オン ビハーフ オブ サザン イリノイ ユニバーシティ エドワーズビル 3,4,5-trisubstituted-1,2,4-triazoles and 3,4,5-trisubstituted-3-thio-1,2,4-triazoles and uses thereof
AR111960A1 (en) 2017-05-26 2019-09-04 Incyte Corp CRYSTALLINE FORMS OF A FGFR INHIBITOR AND PROCESSES FOR ITS PREPARATION
JOP20190282A1 (en) 2017-06-09 2019-12-05 Novartis Ag Compounds and compositions for inducing chondrogenesis
CN110997664A (en) * 2017-06-14 2020-04-10 欧洲分子生物学实验室 Benzofuran amides and heteroaromatic analogs thereof for use in therapy
EP3641545A4 (en) 2017-06-21 2021-02-24 Mitokinin, Inc. Compositions and methods using the same for treatment of neurodegenerative and mitochondrial disease
GB201710851D0 (en) * 2017-07-06 2017-08-23 Galápagos Nv Novel compounds and pharmaceutical compositions thereof for the treatment of fibrosis
JP7258009B2 (en) 2017-07-10 2023-04-14 セルジーン コーポレイション Antiproliferative compounds and methods of use thereof
UY37806A (en) 2017-07-11 2020-01-31 Vertex Pharma CARBOXAMIDES AS MODULATORS OF SODIUM CHANNELS
US20200277272A1 (en) * 2017-09-11 2020-09-03 Hodogaya Chemical Co., Ltd. Compound having pyrimidine ring structure and organic electroluminescence device
WO2019055869A1 (en) 2017-09-15 2019-03-21 Forma Therapeutics, Inc. Tetrahydro-imidazo quinoline compositions as cbp/p300 inhibitors
JP7223998B2 (en) 2017-10-13 2023-02-17 小野薬品工業株式会社 Solid cancer therapeutic agent containing an Axl inhibitor as an active ingredient
IL273839B (en) 2017-10-19 2022-09-01 Amgen Inc Benzimidazole derivatives and their uses
WO2019084157A1 (en) 2017-10-24 2019-05-02 Yumanity Therapeutics, Inc. Compounds and uses thereof
JP2021507944A (en) * 2017-12-21 2021-02-25 グリアファーム エスエー Compositions and treatments for neuropathy, including motor neuron disease
MX2020006385A (en) * 2017-12-21 2020-12-07 Gliapharm Sa Compositions and methods of treatment for neurological disorders comprising a dementia.
JP7474709B2 (en) 2018-02-27 2024-04-25 インサイト・コーポレイション Imidazopyrimidines and triazolopyrimidines as A2A/A2B inhibitors
US20210040074A1 (en) * 2018-03-06 2021-02-11 The United States Of America,As Represented By The Secretary,Department Of Health And Human Services Positive allosteric modulators of dopamine 1 receptor and method of use thereof
EP3543231A1 (en) * 2018-03-19 2019-09-25 ETH Zurich Compounds for treating cns- and neurodegenerative diseases
EP3788046A1 (en) 2018-05-04 2021-03-10 Incyte Corporation Salts of an fgfr inhibitor
WO2019213544A2 (en) 2018-05-04 2019-11-07 Incyte Corporation Solid forms of an fgfr inhibitor and processes for preparing the same
TWI815887B (en) * 2018-05-15 2023-09-21 美商愛彼特生物製藥股份有限公司 Substituted 2,2'-bipyrimidinyl compounds, analogues thereof, and methods using same
MA52940A (en) 2018-05-18 2021-04-28 Incyte Corp FUSION PYRIMIDINE DERIVATIVES USED AS A2A / A2B INHIBITORS
GB201810581D0 (en) 2018-06-28 2018-08-15 Ctxt Pty Ltd Compounds
CN112513038B (en) 2018-06-29 2023-01-10 福马疗法公司 Inhibition of CREB-binding protein (CBP)
AU2019297361B2 (en) 2018-07-05 2024-06-27 Incyte Corporation Fused pyrazine derivatives as A2A / A2B inhibitors
CN112805000A (en) * 2018-08-06 2021-05-14 小利兰·斯坦福大学董事会 2-arylbenzimidazoles as PPARGC1A activators for the treatment of neurodegenerative diseases
SG11202101454PA (en) 2018-08-29 2021-03-30 Chemocentryx Inc Combination therapy using c-c chemokine receptor 4 (ccr4) antagonists and one or more immune checkpoint inhibitors
US10968200B2 (en) 2018-08-31 2021-04-06 Incyte Corporation Salts of an LSD1 inhibitor and processes for preparing the same
US11278527B2 (en) 2018-09-04 2022-03-22 Brown University Compositions and methods for the modulation of the corticotropin releasing factor binding protein and the treatment of alcohol use disorder
EP3853234A1 (en) 2018-09-18 2021-07-28 Nikang Therapeutics, Inc. Fused tricyclic ring derivatives as src homology-2 phosphatase inhibitors
CN113226356A (en) 2018-09-19 2021-08-06 福马治疗股份有限公司 Activating pyruvate kinase R
CN113166060B (en) 2018-09-19 2024-01-09 诺沃挪第克健康护理股份公司 Treatment of sickle cell disease with pyruvate kinase-activating compounds
EP3870291A1 (en) 2018-10-22 2021-09-01 Cadent Therapeutics, Inc. Crystalline forms of potassium channel modulators
CN109503563B (en) * 2018-12-10 2020-05-12 济南大学 Multifunctional acetylcholinesterase inhibitor and application thereof
KR102128509B1 (en) * 2018-12-19 2020-07-01 한국과학기술연구원 Novel hydrazone derivatives comprising aryl or heteroaryl group substituted at terminal amine and use thereof
US12098146B2 (en) 2019-01-24 2024-09-24 Janssen Pharmaceutica Nv Compounds and uses thereof
TWI829857B (en) 2019-01-29 2024-01-21 美商英塞特公司 Pyrazolopyridines and triazolopyridines as a2a / a2b inhibitors
US11628162B2 (en) 2019-03-08 2023-04-18 Incyte Corporation Methods of treating cancer with an FGFR inhibitor
JP7546596B2 (en) 2019-04-26 2024-09-06 セルジーン コーポレーション Heterocyclic compounds and their use in helminth infections and diseases - Patents.com
AR119731A1 (en) 2019-05-17 2022-01-05 Novartis Ag NLRP3 INFLAMASOME INHIBITORS
JP7352662B2 (en) 2019-06-18 2023-09-28 ファイザー・インク Benzisoxazole sulfonamide derivatives
US11591329B2 (en) 2019-07-09 2023-02-28 Incyte Corporation Bicyclic heterocycles as FGFR inhibitors
RU2746423C2 (en) * 2019-09-02 2021-04-13 Общество с ограниченной ответственностью "Научно-исследовательский институт ХимРар" (ООО "НИИ ХимРар") Hepatitis b virus (hbv) inhibitor
US12122767B2 (en) 2019-10-01 2024-10-22 Incyte Corporation Bicyclic heterocycles as FGFR inhibitors
JP2022552324A (en) 2019-10-14 2022-12-15 インサイト・コーポレイション Bicyclic heterocycles as FGFR inhibitors
WO2021076728A1 (en) 2019-10-16 2021-04-22 Incyte Corporation Bicyclic heterocycles as fgfr inhibitors
EP4066832A4 (en) * 2019-11-14 2024-01-03 Zincure Corp. Pharmaceutical composition for treating multiple sclerosis on basis of ampk inhibitory function and zinc homeostasis control function
CN115151539A (en) 2019-12-04 2022-10-04 因赛特公司 Derivatives of FGFR inhibitors
US11897891B2 (en) 2019-12-04 2024-02-13 Incyte Corporation Tricyclic heterocycles as FGFR inhibitors
PE20230300A1 (en) 2019-12-06 2023-02-13 Vertex Pharma SUBSTITUTED TETRAHYDROFURANS AS SODIUM CHANNEL MODULATORS
US12012409B2 (en) 2020-01-15 2024-06-18 Incyte Corporation Bicyclic heterocycles as FGFR inhibitors
JP2023541463A (en) * 2020-09-17 2023-10-02 ヤンセン ファーマシューティカ エヌ.ベー. casein kinase 1 delta modulator
US11795168B2 (en) 2020-09-23 2023-10-24 Forma Therapeutics, Inc. Inhibiting cyclic amp-responsive element-binding protein (CREB) binding protein (CBP)
US11801243B2 (en) 2020-09-23 2023-10-31 Forma Therapeutics, Inc. Bromodomain inhibitors for androgen receptor-driven cancers
CA3207819A1 (en) 2021-02-19 2022-08-25 Anjali Pandey Tyk2 inhibitors and uses thereof
TW202246232A (en) 2021-02-19 2022-12-01 英商蘇多生物科學有限公司 Tyk2 inhibitors and uses thereof
US12128035B2 (en) 2021-03-19 2024-10-29 Novo Nordisk Health Care Ag Activating pyruvate kinase R
CA3215903A1 (en) 2021-04-12 2022-10-20 Incyte Corporation Combination therapy comprising an fgfr inhibitor and a nectin-4 targeting agent
PE20241335A1 (en) 2021-06-04 2024-07-03 Vertex Pharma N-(HYDROXYALKYL (HETERO)ARYL) TETRAHYDROFURAN CARBOXAMIDES AS SODIUM CHANNEL MODULATORS
CA3220274A1 (en) 2021-06-09 2022-12-15 Incyte Corporation Tricyclic heterocycles as fgfr inhibitors
CN115466211B (en) * 2022-06-09 2024-02-23 中国人民解放军空军军医大学 N-phenylquinoline-4-amine compound and application thereof
WO2024012554A1 (en) * 2022-07-14 2024-01-18 上海日馨医药科技股份有限公司 Tpk agonist and method for treating neurodegenerative diseases using same
WO2024155864A1 (en) * 2023-01-20 2024-07-25 Allianthera (Suzhou) Biopharmaceutical Co., Ltd. Sprk1 inhibitors and methods of use
WO2024159285A1 (en) * 2023-01-30 2024-08-08 Eurofarma Laboratórios S.A. Nav1.7- and/or nav1.8-inhibiting aryl pyridine compounds, processes for the preparation thereof, compositions, uses, methods for treatment using same, and kits
WO2024159286A1 (en) * 2023-01-30 2024-08-08 Eurofarma Laboratórios S.A. Nav1.7- and/or nav1.8-inhibiting phenolic compounds, processes for the preparation thereof, compositions, uses, methods for treatment using same, and kits

Family Cites Families (41)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB9506197D0 (en) 1995-03-27 1995-05-17 Hoffmann La Roche Inhibition of tau-tau association.
US5545656A (en) * 1995-04-05 1996-08-13 Pfizer Inc. 2-Oxidole-1-carboxamide pharmaceutical agents for the treatment of alzheimer's disease
US20030219427A1 (en) * 1998-08-18 2003-11-27 Allen Hamish J. TPL-2/COT kinase and methods of use
US6184226B1 (en) * 1998-08-28 2001-02-06 Scios Inc. Quinazoline derivatives as inhibitors of P-38 α
US6087363A (en) * 1999-07-16 2000-07-11 Harbor Branch Oceanographic Institution, Inc. Use of imidazole and indole compounds as inhibitors of nitric oxide synthase
SI1315731T1 (en) * 2000-09-01 2005-02-28 Sanofi-Aventis 2-pyridinyl-6,7,8,9-tetrahydropyrimido(1,2-a)pyrimidin-4-one and 7-pyridinyl-2,3-dihydroimidazo(1,2-a)pyrimidin-5(1h)one derivatives
IL154747A0 (en) * 2000-09-15 2003-10-31 Vertex Pharma Pyrazole derivatives and pharmaceutical compositions containing the same
US7045539B2 (en) * 2000-12-22 2006-05-16 Astrazeneca Ab Therapeutic benzoxazole compounds
ES2295441T3 (en) * 2001-12-18 2008-04-16 MERCK &amp; CO., INC. MODULATORS OF PIRAZOL HETEROARIL REPLACED 5 METABOTROPIC RECEIVER OF GLUTAMATE.
JP2003212859A (en) * 2002-01-24 2003-07-30 Nippon Nohyaku Co Ltd Substituted phenylheterocycles and herbicide containing the same as active ingredient
JP2005530707A (en) * 2002-03-08 2005-10-13 イーライ・リリー・アンド・カンパニー Kinase inhibitor
FR2836915B1 (en) * 2002-03-11 2008-01-11 Aventis Pharma Sa AMINOINDAZOLE DERIVATIVES, PREPARATION METHOD AND INTERMEDIATES THEREOF AS MEDICAMENTS AND PHARMACEUTICAL COMPOSITIONS COMPRISING THE SAME
US20040038856A1 (en) * 2002-05-17 2004-02-26 Sarvajit Chakravarty Treatment of fibroproliferative disorders using TGF-beta inhibitors
WO2003106439A1 (en) * 2002-06-12 2003-12-24 株式会社ビーエフ研究所 Probe compound for image diagnosis of disease with amyloid accumulation, compound for staining age spots/diffuse age spots, and remedy for disease with amyloid accumulation
CL2004000409A1 (en) * 2003-03-03 2005-01-07 Vertex Pharma COMPOUNDS DERIVED FROM 2- (REPLACED CILO) -1- (AMINO OR REPLACED OXI) -CHINAZOLINE, INHIBITORS OF IONIC SODIUM AND CALCIUM VOLTAGE DEPENDENTS; PHARMACEUTICAL COMPOSITION; AND USE OF THE COMPOUND IN THE TREATMENT OF ACUTE PAIN, CHRONIC, NEU
US7060698B2 (en) * 2003-05-19 2006-06-13 Hoffmann-La Roche Inc. Benzoxazepinone derivatives
US20060241150A1 (en) * 2003-06-06 2006-10-26 Weiner David B P38 kinase inhibitor compositions and methods of using the same
GB0314943D0 (en) 2003-06-25 2003-07-30 Proteome Sciences Plc Screening methods
US7560464B2 (en) * 2004-04-13 2009-07-14 Icagen, Inc. Polycyclic pyrimidines as potassium ion channel modulators
PL1791537T3 (en) * 2004-08-19 2010-04-30 Aventis Pharma Inc 3-arylthioindole-2-carboxamide derivatives and analogs thereof as inhibitors of casein kinase i
WO2007015866A2 (en) * 2005-07-20 2007-02-08 Kalypsys, Inc. Inhibitors of p38 kinase and methods of treating inflammatory disorders
EP1842541A1 (en) * 2006-03-29 2007-10-10 G.I.M.-Gesellschaft Für Innovative Medizin Gmbh Nfg Ohg Plant components and extracts and uses thereof
TW200813035A (en) * 2006-06-19 2008-03-16 Astrazeneca Ab Novel heteroaryl substituted benzoxazoles
MX2008015648A (en) * 2006-06-21 2009-01-09 Du Pont Pyrazinones as cellular proliferation inhibitors.
US7622495B2 (en) * 2006-10-03 2009-11-24 Neurim Pharmaceuticals (1991) Ltd. Substituted aryl-indole compounds and their kynurenine/kynuramine-like metabolites as therapeutic agents
CA2668454A1 (en) * 2006-11-02 2008-05-08 F. Hoffmann-La Roche Ag Substituted 2-imidazoles
US8362066B2 (en) * 2006-11-17 2013-01-29 Treventis Corporation Compounds and methods for treating protein folding disorders
WO2008077138A1 (en) * 2006-12-19 2008-06-26 The Board Of Trustees Of The University Of Illinois 3-benzofuranyl-4-indolyl maleimides as potent gsk3 inhibitors for neurogenerative disorders
WO2008156715A1 (en) * 2007-06-20 2008-12-24 Merck & Co., Inc. Cetp inhibitors derived from benzoxazole arylamides
FR2918061B1 (en) * 2007-06-28 2010-10-22 Sanofi Aventis 6-CYCLOAMINO-3- (PYRIDIN-4-YL) IMIDAZO-1,2-B1-PYRIDAZINE DERIVATIVES, THEIR PREPARATION AND THEIR THERAPEUTIC USE.
FR2918986B1 (en) * 2007-07-19 2009-09-04 Sanofi Aventis Sa 6-CYCLOAMINO-3- (PYRIDAZIN-4-YL) IMIDAZO [1,2-B] -PYRIDAZINE DERIVATIVES, THEIR PREPARATION AND THEIR THERAPEUTIC USE
GB0715939D0 (en) * 2007-08-15 2007-09-26 Vastox Plc Method of treatment of duchenne muscular dystrophy
US20110065715A1 (en) * 2007-11-28 2011-03-17 Yale University Nogo Receptor Binding Small Molecules to Promote Axonal Growth
CA2709784A1 (en) * 2007-12-21 2009-07-09 University Of Rochester Method for altering the lifespan of eukaryotic organisms
EP2149551A1 (en) * 2008-07-30 2010-02-03 Bayer Schering Pharma AG N-(indol-3-ylalkyl)-(hetero)arylamid derivatives as modulators of EP2 receptors
FR2934994B1 (en) * 2008-08-12 2010-09-17 Sanofi Aventis DERIVATIVES OF 2-ALKYL-6CYCLOAMINO-3- (PYRIDIN-4-YL) IMIDAZ-1,2-B! PYRIDAZINE, THEIR PREPARATION AND THEIR THERAPEUTIC APPLICATION
KR101257695B1 (en) * 2008-12-24 2013-04-24 제일모직주식회사 Novel compound for organic photoelectric device and organic photoelectric device including the same
FR2945289A1 (en) * 2009-05-11 2010-11-12 Sanofi Aventis 2-CYCLOAMINO-5- (PYRIDIN-4-YL) IMIDAZO-2,1-B1 DERIVATIVES 1,3,4! THIADIAZOLE, THEIR PREPARATION AND THEIR THERAPEUTIC APPLICATION
EP2528441A4 (en) * 2010-01-25 2013-07-10 Chdi Foundation Inc Certain kynurenine-3-monooxygenase inhibitors, pharmaceutical compositions, and methods of use thereof
JP2014503528A (en) * 2010-12-14 2014-02-13 エレクトロプホレトイクス リミテッド Casein kinase 1δ (CK1δ) inhibitor and its use in the treatment of neurodegenerative diseases such as tauopathy
WO2012154814A1 (en) 2011-05-09 2012-11-15 Eip Pharma, Llc Compositions and methods for treating alzheimer's disease

Non-Patent Citations (17)

* Cited by examiner, † Cited by third party
Title
"http://web.archive.org/web/20070630171813/http://www.enamine.net/index.php?option=com_content&task=view&id=22&menuid=51&PHPSESSID=64a4f248f69d671a413f487bb62c4d90" dated June 30, 2007, accessed November 9, 2011. *
2-amino-3-(2-thienylcarbonyl)-1-Indolizinecarboxamide, RN 919984-20-6 entered in the STN database ChemCats Feb 8, 2007. *
2-amino-3-(4-chlorobenzoyl)-1-Indolizinecarboxamide, RN 889950-00-9 entered in the STN database ChemCats Jun 29, 2006. *
ChemBlock, online: "http://web.archive.org/web/20051204015543/http://www.chemblock.com/screening.php " dated December 4, 2005, accessed December 2, 2014 *
Grazia D'Onofrio "Advances in the identification of g-secretase inhibitors for the treatment of Alzheimer's disease" Expert Opinion on Investigational Drugs 2012, 7, 20-37 *
Henze "THE NUMBER OF STRUCTURALLY ISOMERIC ALCOHOLS OF THE METHANOL SERIES" Journal of the American Chemical Society 1931, 3042-3046. *
Hook V. Y.H. "Neuroproteases in Peptide Neurotransmission and Neurodegenerative Diseases Applications to Drug Discovery Research" Biodrugs 2006, 20, 105-119. *
http://web.archive.org/web/20100930184751/http://www.princetonbio.com/pages4.html" dated September 30, 2010, accessed April 30, 2015. *
Iqbal "Microtubule-associated protein tau as a therapeutic target in Alzheimer's disease" Expert Opin. Ther. Targets (2014) 18(3) 307. *
Jhee et. al. "B-amyloid therapies in Alzheimer's disease" Expert Opinion on Investigational Drugs 2001, 10, 593-605 *
Online " http://web.archive.org/web/20071219115313/http://www.akosgmbh.de/AKosSamples/index.html " dated December 7, 2007, accessed September 29, 2015. *
Online "http://web.archive.org/web/20051204015543/http://www.chemblock.com/screening.php" December 4, 2005. *
Patani et. al. "Bioisosterism: A Rational Approach in Drug Design" Chemical Reviews 1996, 96, 3147-3176. *
STN-Chemical database registry # RN 889940-39-0, 2-amino-3-(4-fluorobenzoyl)-1-Indolizinecarboxamide June 29, 2006. *
STN-Chemical database registry # RN 938032-58-7, 2-amino-1-(4-fluorobenzoyl)- 1H-Indole-3-carboxamide, Entered STN: Jun 20, 2007. *
Wakefield, Basil "Fluorinated Pharmaceuticals" Innovations in Pharmaceutical Technology 2003, 74, 76-78, Online "http://web.archive.org/web/20030905122408/http://www.iptonline.com/articles/public/IPTFOUR74NP.pdf." (accessed via Wayback machine November 20, 2009 showing web availability as of September 2003). *
Yuzwa "O-GlcNAc and neurodegeneration: biochemical mechanisms and potential roles in Alzheimer's disease and beyond" Chem. Soc. Rev., 2014, 43, 6839. *

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9815841B2 (en) 2014-01-29 2017-11-14 Glaxosmithkline Intellectual Property Development Limited Compounds
US10087186B2 (en) 2014-01-29 2018-10-02 Glaxosmithkline Intellectual Property Development Limited Compounds as LRRK2 kinase inhibitors
US10618901B2 (en) 2014-01-29 2020-04-14 Glaxosmithkline Intellectual Property Development Limited LRRK2 inhibitors for the treatment of Parkinson's disease
CN113286785A (en) * 2019-01-04 2021-08-20 贝尔布鲁克实验室有限责任公司 Inhibitors of cGAS activity as therapeutic agents
CN116034105A (en) * 2020-06-25 2023-04-28 亚克医药株式会社 Heterocyclic compounds as inhibitors of casein kinase 1 delta and/or activin receptor-like kinase 5

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