TW202003511A - 作為免疫調節劑之雜環化合物 - Google Patents
作為免疫調節劑之雜環化合物 Download PDFInfo
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- TW202003511A TW202003511A TW108111285A TW108111285A TW202003511A TW 202003511 A TW202003511 A TW 202003511A TW 108111285 A TW108111285 A TW 108111285A TW 108111285 A TW108111285 A TW 108111285A TW 202003511 A TW202003511 A TW 202003511A
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- Prior art keywords
- methyl
- compound
- benzo
- ylamino
- pyrimidin
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- 239000002955 immunomodulating agent Substances 0.000 title abstract 2
- 229940121354 immunomodulator Drugs 0.000 title abstract 2
- 150000002391 heterocyclic compounds Chemical class 0.000 title 1
- 150000001875 compounds Chemical class 0.000 claims abstract description 307
- 238000000034 method Methods 0.000 claims abstract description 110
- 206010028980 Neoplasm Diseases 0.000 claims abstract description 77
- 208000037265 diseases, disorders, signs and symptoms Diseases 0.000 claims abstract description 48
- 201000010099 disease Diseases 0.000 claims abstract description 38
- 201000011510 cancer Diseases 0.000 claims abstract description 37
- 208000015181 infectious disease Diseases 0.000 claims abstract description 21
- 239000008194 pharmaceutical composition Substances 0.000 claims abstract description 13
- 208000035475 disorder Diseases 0.000 claims abstract description 8
- -1 (R)-3-hydroxy-3-methylpyrrolidine- 1-yl Chemical group 0.000 claims description 239
- 150000003839 salts Chemical class 0.000 claims description 98
- 125000000217 alkyl group Chemical group 0.000 claims description 88
- 125000002496 methyl group Chemical group [H]C([H])([H])* 0.000 claims description 54
- 125000005605 benzo group Chemical group 0.000 claims description 47
- 108010074708 B7-H1 Antigen Proteins 0.000 claims description 43
- 102000008096 B7-H1 Antigen Human genes 0.000 claims description 43
- 125000001424 substituent group Chemical group 0.000 claims description 26
- 125000000592 heterocycloalkyl group Chemical group 0.000 claims description 25
- SRJOCJYGOFTFLH-UHFFFAOYSA-N isonipecotic acid Chemical compound OC(=O)C1CCNCC1 SRJOCJYGOFTFLH-UHFFFAOYSA-N 0.000 claims description 21
- 125000005843 halogen group Chemical group 0.000 claims description 20
- 125000005913 (C3-C6) cycloalkyl group Chemical group 0.000 claims description 18
- 125000003545 alkoxy group Chemical group 0.000 claims description 18
- 229910052757 nitrogen Inorganic materials 0.000 claims description 16
- 229910052760 oxygen Inorganic materials 0.000 claims description 15
- 239000000546 pharmaceutical excipient Substances 0.000 claims description 15
- 125000004214 1-pyrrolidinyl group Chemical group [H]C1([H])N(*)C([H])([H])C([H])([H])C1([H])[H] 0.000 claims description 14
- 229910052801 chlorine Inorganic materials 0.000 claims description 14
- 125000001559 cyclopropyl group Chemical group [H]C1([H])C([H])([H])C1([H])* 0.000 claims description 14
- 125000005842 heteroatom Chemical group 0.000 claims description 14
- 125000006413 ring segment Chemical group 0.000 claims description 13
- 125000004765 (C1-C4) haloalkyl group Chemical group 0.000 claims description 12
- 239000002253 acid Substances 0.000 claims description 12
- 229910052731 fluorine Inorganic materials 0.000 claims description 12
- 239000003795 chemical substances by application Substances 0.000 claims description 11
- 125000001995 cyclobutyl group Chemical group [H]C1([H])C([H])([H])C([H])(*)C1([H])[H] 0.000 claims description 11
- 230000002401 inhibitory effect Effects 0.000 claims description 11
- 125000000587 piperidin-1-yl group Chemical group [H]C1([H])N(*)C([H])([H])C([H])([H])C([H])([H])C1([H])[H] 0.000 claims description 11
- 229910052794 bromium Inorganic materials 0.000 claims description 10
- 125000000113 cyclohexyl group Chemical group [H]C1([H])C([H])([H])C([H])([H])C([H])(*)C([H])([H])C1([H])[H] 0.000 claims description 10
- JAEIBKXSIXOLOL-UHFFFAOYSA-N pyrrolidin-1-ium-3-carboxylate Chemical compound OC(=O)C1CCNC1 JAEIBKXSIXOLOL-UHFFFAOYSA-N 0.000 claims description 10
- 125000001495 ethyl group Chemical group [H]C([H])([H])C([H])([H])* 0.000 claims description 9
- 125000004304 oxazol-5-yl group Chemical group O1C=NC=C1* 0.000 claims description 9
- 125000003386 piperidinyl group Chemical group 0.000 claims description 9
- 229910052739 hydrogen Inorganic materials 0.000 claims description 8
- 230000028993 immune response Effects 0.000 claims description 8
- 125000004767 (C1-C4) haloalkoxy group Chemical group 0.000 claims description 7
- 125000002393 azetidinyl group Chemical group 0.000 claims description 7
- 239000003937 drug carrier Substances 0.000 claims description 7
- 230000003993 interaction Effects 0.000 claims description 7
- 125000001449 isopropyl group Chemical group [H]C([H])([H])C([H])(*)C([H])([H])[H] 0.000 claims description 7
- 125000000719 pyrrolidinyl group Chemical group 0.000 claims description 7
- 229910052799 carbon Inorganic materials 0.000 claims description 6
- 125000004850 cyclobutylmethyl group Chemical group C1(CCC1)C* 0.000 claims description 6
- 125000004210 cyclohexylmethyl group Chemical group [H]C([H])(*)C1([H])C([H])([H])C([H])([H])C([H])([H])C([H])([H])C1([H])[H] 0.000 claims description 6
- 125000004186 cyclopropylmethyl group Chemical group [H]C([H])(*)C1([H])C([H])([H])C1([H])[H] 0.000 claims description 6
- 230000005764 inhibitory process Effects 0.000 claims description 6
- XBDQKXXYIPTUBI-UHFFFAOYSA-N dimethylselenoniopropionate Natural products CCC(O)=O XBDQKXXYIPTUBI-UHFFFAOYSA-N 0.000 claims description 5
- 230000001965 increasing effect Effects 0.000 claims description 5
- 208000035473 Communicable disease Diseases 0.000 claims description 4
- PVNIIMVLHYAWGP-UHFFFAOYSA-N Niacin Chemical compound OC(=O)C1=CC=CN=C1 PVNIIMVLHYAWGP-UHFFFAOYSA-N 0.000 claims description 4
- 125000003178 carboxy group Chemical group [H]OC(*)=O 0.000 claims description 4
- 208000015122 neurodegenerative disease Diseases 0.000 claims description 4
- MSVVAVYEUNATQL-QHCPKHFHSA-N 1-[[7-cyano-2-[3-[3-[[7-[[[(2S)-2-hydroxypropyl]amino]methyl]-2-methylpyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]piperidine-4-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C)C=C(C=N2)CNC[C@H](C)O)C)C)CN1CCC(CC1)C(=O)O MSVVAVYEUNATQL-QHCPKHFHSA-N 0.000 claims description 3
- 235000019260 propionic acid Nutrition 0.000 claims description 3
- 230000004936 stimulating effect Effects 0.000 claims description 3
- ARRUIUNMLVKZBV-BVRKHOPBSA-N (3R)-1-[[7-cyano-2-[3-[3-[[2-cyclopropyl-7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]pyrrolidine-3-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C1CC1)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1C[C@@H](CC1)C(=O)O ARRUIUNMLVKZBV-BVRKHOPBSA-N 0.000 claims description 2
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- RBIRYSWFJHPWOM-LIIBOVGXSA-N (3R)-1-[[7-cyano-2-[3-[3-[[7-[[(3R)-3-hydroxy-3-methylpyrrolidin-1-yl]methyl]-2-methylpyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]pyrrolidine-3-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C)C=C(C=N2)CN1C[C@](CC1)(C)O)C)C)CN1C[C@@H](CC1)C(=O)O RBIRYSWFJHPWOM-LIIBOVGXSA-N 0.000 claims description 2
- QMSKZSYBUKOPKH-SBEKKQRLSA-N (3R)-1-[[7-cyano-2-[3-[3-[[7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]-2-methylpyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]-3-methylpyrrolidine-3-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1C[C@@](CC1)(C(=O)O)C QMSKZSYBUKOPKH-SBEKKQRLSA-N 0.000 claims description 2
- 125000004178 (C1-C4) alkyl group Chemical group 0.000 claims description 2
- BKMMTJMQCTUHRP-VKHMYHEASA-N (S)-2-aminopropan-1-ol Chemical group C[C@H](N)CO BKMMTJMQCTUHRP-VKHMYHEASA-N 0.000 claims description 2
- HDKXKNNLHFFDGW-VZUYHUTRSA-N 1-[[7-cyano-2-[3-[3-[[2-(difluoromethyl)-7-[[(3R)-3-hydroxy-3-methylpyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]piperidine-4-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C(F)F)C=C(C=N2)CN1C[C@](CC1)(C)O)C)C)CN1CCC(CC1)C(=O)O HDKXKNNLHFFDGW-VZUYHUTRSA-N 0.000 claims description 2
- FMVZPQSIRWVHLC-GDLZYMKVSA-N 1-[[7-cyano-2-[3-[3-[[2-(difluoromethyl)-7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]-4-methylpiperidine-4-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C(F)F)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1CCC(CC1)(C(=O)O)C FMVZPQSIRWVHLC-GDLZYMKVSA-N 0.000 claims description 2
- JWXSUZXXIIEXGM-SSEXGKCCSA-N 1-[[7-cyano-2-[3-[3-[[2-(difluoromethyl)-7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]-N-methylpiperidine-4-carboxamide Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C(F)F)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1CCC(CC1)C(=O)NC JWXSUZXXIIEXGM-SSEXGKCCSA-N 0.000 claims description 2
- HDKXKNNLHFFDGW-QLKFWGTOSA-N 1-[[7-cyano-2-[3-[3-[[2-(difluoromethyl)-7-[[(3S)-3-hydroxy-3-methylpyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]piperidine-4-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C(F)F)C=C(C=N2)CN1C[C@@](CC1)(C)O)C)C)CN1CCC(CC1)C(=O)O HDKXKNNLHFFDGW-QLKFWGTOSA-N 0.000 claims description 2
- FGVCQETUXBHOKS-QLKFWGTOSA-N 1-[[7-cyano-2-[3-[3-[[7-[[(3S)-3-hydroxy-3-methylpyrrolidin-1-yl]methyl]-2-methylpyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]piperidine-4-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C)C=C(C=N2)CN1C[C@@](CC1)(C)O)C)C)CN1CCC(CC1)C(=O)O FGVCQETUXBHOKS-QLKFWGTOSA-N 0.000 claims description 2
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- 235000001968 nicotinic acid Nutrition 0.000 claims description 2
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- IUVKMZGDUIUOCP-BTNSXGMBSA-N quinbolone Chemical compound O([C@H]1CC[C@H]2[C@H]3[C@@H]([C@]4(C=CC(=O)C=C4CC3)C)CC[C@@]21C)C1=CCCC1 IUVKMZGDUIUOCP-BTNSXGMBSA-N 0.000 claims description 2
- BBNDMJLFRODJDG-IXCJQBJRSA-N (3R)-1-[[7-cyano-2-[3-[3-[[2-(difluoromethyl)-7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]pyrrolidine-3-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C(F)F)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1C[C@@H](CC1)C(=O)O BBNDMJLFRODJDG-IXCJQBJRSA-N 0.000 claims 1
- POKUBRPIWKCYMV-GIEABIOQSA-N (3R)-1-[[7-cyano-2-[3-[3-[[7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]-2-(trifluoromethyl)pyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]-3-methylpyrrolidine-3-carboxylic acid Chemical compound Cc1c(Nc2nc(nc3cc(CN4CC[C@@H](O)C4)cnc23)C(F)(F)F)cccc1-c1cccc(-c2nc3cc(CN4CC[C@](C)(C4)C(O)=O)cc(C#N)c3o2)c1C POKUBRPIWKCYMV-GIEABIOQSA-N 0.000 claims 1
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- GYMZJLQEVUOART-PQHLKRTFSA-N (3R)-1-[[7-cyano-2-[3-[3-[[7-[[(3R)-3-hydroxypyrrolidin-1-yl]methyl]-2-methylpyrido[3,2-d]pyrimidin-4-yl]amino]-2-methylphenyl]-2-methylphenyl]-1,3-benzoxazol-5-yl]methyl]pyrrolidine-3-carboxylic acid Chemical compound C(#N)C1=CC(=CC=2N=C(OC=21)C=1C(=C(C=CC=1)C1=C(C(=CC=C1)NC=1C2=C(N=C(N=1)C)C=C(C=N2)CN1C[C@@H](CC1)O)C)C)CN1C[C@@H](CC1)C(=O)O GYMZJLQEVUOART-PQHLKRTFSA-N 0.000 claims 1
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- C07D471/02—Heterocyclic compounds containing nitrogen atoms as the only ring hetero atoms in the condensed system, at least one ring being a six-membered ring with one nitrogen atom, not provided for by groups C07D451/00 - C07D463/00 in which the condensed system contains two hetero rings
- C07D471/04—Ortho-condensed systems
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D413/00—Heterocyclic compounds containing two or more hetero rings, at least one ring having nitrogen and oxygen atoms as the only ring hetero atoms
- C07D413/14—Heterocyclic compounds containing two or more hetero rings, at least one ring having nitrogen and oxygen atoms as the only ring hetero atoms containing three or more hetero rings
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- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/4353—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems
- A61K31/437—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems the heterocyclic ring system containing a five-membered ring having nitrogen as a ring hetero atom, e.g. indolizine, beta-carboline
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- A61K31/435—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom
- A61K31/4353—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems
- A61K31/4375—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with one nitrogen as the only ring hetero atom ortho- or peri-condensed with heterocyclic ring systems the heterocyclic ring system containing a six-membered ring having nitrogen as a ring heteroatom, e.g. quinolizines, naphthyridines, berberine, vincamine
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Abstract
本發明揭示式(I')化合物、使用該等化合物作為免疫調節劑之方法及包含此類化合物之醫藥組合物。該等化合物可用於治療、預防或改善諸如癌症或感染之疾病或病症。
Description
本申請案係關於醫藥活性化合物。本發明提供化合物以及其組合物及使用方法。該等化合物調節PD-1/PD-L1蛋白質/蛋白質相互作用且可用於治療包括感染性疾病及癌症之多種疾病。
免疫系統在控制及根除諸如癌症之疾病中起重要作用。然而,癌細胞常常發展躲避或抑制免疫系統之策略以利於其生長。一種此類機制係改變在免疫細胞上表現之共刺激及共抑制分子的表現(Postow等人, J. Clinical Oncology 2015, 1-9)。已證明阻斷諸如PD-1之抑制免疫檢查點的信號傳導係一種有前景及有效之治療模式。
程式性細胞死亡蛋白-1 (PD-1)亦稱CD279,係一種在活化T細胞、天然殺手T細胞、B細胞及巨噬細胞上表現之細胞表面受體(Greenwald等人, Annu. Rev. Immunol 2005, 23:515-548;Okazaki及Honjo, Trends Immunol 2006, (4):195-201)。其充當內部負反饋系統以防止T細胞活化,此又降低自身免疫性且促進自身耐受性。此外,亦已知PD-1在抑制如癌症及病毒感染之疾病中之抗原特異性T細胞反應中起關鍵作用(Sharpe等人,Nat Immunol
2007 8, 239-245;Postow等人, J. Clinical Oncol 2015, 1-9)。
PD-1之結構由細胞外免疫球蛋白可變樣結構域、接著跨膜區及細胞內結構域組成(Parry等人, Mol Cell Biol 2005, 9543-9553)。細胞內結構域含有兩個位於基於免疫受體酪胺酸之抑制基元及基於免疫受體酪胺酸之轉換基元中的磷酸化位點,此表明PD-1負調節T細胞受體介導之信號。PD-1具有兩種配位體PD-L1及PD-L2 (Parry等人, Mol Cell Biol 2005, 9543-9553;Latchman等人, Nat Immunol 2001, 2, 261-268),且該等配位體之差異在於其表現模式。在巨噬細胞及樹突狀細胞上,響應於脂多醣及GM-CSF治療,PD-L1蛋白質上調,而在T細胞及B細胞上,在T細胞受體及B細胞受體信號傳導後上調。PD-L1亦在幾乎所有腫瘤細胞上均高度表現,且該表現在IFN-γ治療之後進一步增加(Iwai等人, PNAS2002, 99(19):12293-7;Blank等人, Cancer Res 2004, 64(3):1140-5)。事實上,腫瘤PD-L1表現狀態已顯示在多種腫瘤類型中係預後的(Wang等人, Eur J Surg Oncol 2015;Huang等人, Oncol Rep 2015;Sabatier等人, Oncotarget 2015, 6(7): 5449-5464)。相比之下,PD-L2表現更受限制且主要由樹突狀細胞表現(Nakae等人, J Immunol 2006, 177:566-73)。在T細胞上PD-1與其配位體PD-L1及PD-L2的接合遞送抑制IL-2及IFN-γ產生以及T細胞受體活化後所誘發之細胞增殖的信號(Carter等人, Eur J Immunol 2002, 32(3):634-43;Freeman等人, J Exp Med 2000, 192(7):1027-34)。該機制包括募集SHP-2或SHP-1磷酸酶以抑制T細胞受體信號傳導,諸如Syk及Lck磷酸化(Sharpe等人, Nat Immunol 2007, 8, 239-245)。PD-1信號傳導軸之活化亦減弱PKC-θ活化環磷酸化,PKC-θ活化環磷酸化係活化NF-κB及 AP1路徑以及產生諸如IL-2、IFN-γ及TNF之細胞介素所必需的(Sharpe等人, Nat Immunol 2007, 8, 239-245;Carter等人, Eur J Immunol 2002, 32(3):634-43;Freeman等人, J Exp Med 2000, 192(7):1027-34)。
來自臨床前動物研究之若干條證據表明PD-1及其配位體負調節免疫反應。已證明缺乏PD-1之小鼠發生狼瘡樣腎小球性腎炎及擴張型心肌病(Nishimura等人, Immunity 1999, 11:141-151;Nishimura等人, Science 2001, 291:319-322)。使用LCMV慢性感染模型,已證明PD-1/PD-L1相互作用抑制病毒特異性CD8 T細胞之效應功能的活化、擴增及獲得(Barber等人, Nature 2006, 439, 682-7)。總言之,此等資料支持發展阻斷PD-1介導之抑制信號傳導級聯以加強或「拯救」T細胞反應之治療性方法。因此,需要阻斷PD-1/PD-L1蛋白質/蛋白質相互作用之新化合物。
本發明進一步提供一種醫藥組合物,其包含本文揭示之化合物或其醫藥學上可接受之鹽或立體異構體以及一或多種醫藥學上可接受之賦形劑或載劑。
本發明進一步提供抑制PD-1/PD-L1相互作用之方法,該方法包括向患者投與本文揭示之化合物或其醫藥學上可接受之鹽或立體異構體。
本發明進一步提供治療與PD-1/PD-L1相互作用之抑制相關之疾病或病症的方法,該方法包括向有需要之患者投與治療有效量之本文揭示之化合物或其醫藥學上可接受之鹽或立體異構體。
本發明進一步提供增強、刺激及/或增加患者中之免疫反應之方法,該方法包括向有需要之患者投與治療有效量之本文揭示之化合物或其醫藥學上可接受之鹽或立體異構體。
本申請案主張2018年3月30日申請之美國臨時申請案第62/650,821號及2018年6月21日申請之美國臨時申請案第62/687,964號的權益,各案以引用之方式整體併入本文中。I. 化合物
本發明尤其提供式(I’)化合物:(I’)
或其醫藥學上可接受之鹽或立體異構體,其中:
環A為氮雜環丁烷基、吡咯啶基或哌啶基;
X1
為CH或N;
R1
為甲基或鹵基;
R2
為C1-4
烷基、C1-4
烷氧基、C1-4
鹵基烷基、C1-4
鹵基烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、OH、NH2
、-NH-C1-4
烷基、-N(C1-4
烷基)2
、4至6員雜環烷基或4至6員雜環烷基-C1-2
烷基-,其中該4至6員雜環烷基及4至6員雜環烷基-C1-2
烷基-各具有一或兩個選自O及N之雜原子作為環原子,且其中R2
之該C1-4
烷基、C1-4
烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、-NH-C1-4
烷基、-N(C1-4
烷基)2
、4至6員雜環烷基及4至6員雜環烷基-C1-2
烷基-各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代;
R3
係選自(R)-3-羥基-3-甲基吡咯啶-1-基、(S)-3-羥基-3-甲基吡咯啶-1-基、(R)-3-羥基吡咯啶-1-基、(S)-3-羥基吡咯啶-1-基、(R)-2-羥基-2-甲基-乙基胺基、(S)-2-羥基-2-甲基-乙基胺基、(R)-2-羥基-1-甲基-乙基胺基及(S)-2-羥基-1-甲基-乙基胺基;且
R4
為H或C1-3
烷基;且
R5
為C(O)OH、C(O)N(CH3
)2
、C(O)NH(CH3
)或C(O)NH(CH2
)2
C(O)OH。
在一些實施例中,本文提供式(I)化合物:(I)
或其醫藥學上可接受之鹽或立體異構體,其中:
環A為氮雜環丁烷基、吡咯啶基或哌啶基;
X1
為CH或N;
R1
為甲基或鹵基;
R2
為C1-4
烷基、C1-4
烷氧基、C1-4
鹵基烷基、C1-4
鹵基烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、OH、NH2
、-NH-C1-4
烷基、-N(C1-4
烷基)2
、4至6員雜環烷基或4至6員雜環烷基-C1-2
烷基-,其中該4至6員雜環烷基及4至6員雜環烷基-C1-2
烷基-各具有一或兩個選自O及N之雜原子作為環原子,且其中R2
之該C1-4
烷基、C1-4
烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、-NH-C1-4
烷基、-N(C1-4
烷基)2
、4至6員雜環烷基及4至6員雜環烷基-C1-2
烷基-各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代;
R3
係選自(R)-3-羥基-3-甲基吡咯啶-1-基、(S)-3-羥基-3-甲基吡咯啶-1-基、(R)-3-羥基吡咯啶-1-基、(S)-3-羥基吡咯啶-1-基、(R)-2-羥基-2-甲基-乙基胺基、(S)-2-羥基-2-甲基-乙基胺基、(R)-2-羥基-1-甲基-乙基胺基及(S)-2-羥基-1-甲基-乙基胺基;且
R4
為H或C1-3
烷基。
在一些實施例中,環A為吡咯啶基。在一些實施例中,環A為哌啶基。在其他實施例中,環A為哌啶基。
在一些實施例中,部分係選自4-羧基哌啶-1-基、3-羧基吡咯啶-1-基、3-甲基-3-羧基吡咯啶-1-基、4-(N,N-二甲基胺基羰基)哌啶-1-基、4-(N-甲基胺基羰基)哌啶-1-基及4-(2-羧基乙基胺基羰基)哌啶-1-基,其中波形線指示與分子其餘部分之附接點。
在一些實施例中,部分為3-羧基吡咯啶-1-基,其中波形線指示與分子其餘部分之附接點。在一些實施例中,3-羧基吡咯啶-1-基為(R)-3-羧基吡咯啶-1-基。在一些實施例中,3-羧基吡咯啶-1-基為(S)-3-羧基吡咯啶-1-基。
在一些實施例中,部分為3-甲基-3-羧基吡咯啶-1-基,其中波形線指示與分子其餘部分之附接點。在一些實施例中,3-甲基-3-羧基吡咯啶-1-基為(R)-3-甲基-3-羧基吡咯啶-1-基。在一些實施例中,3-甲基-3-羧基吡咯啶-1-基為(S)-3-甲基-3-羧基吡咯啶-1-基。
在一些實施例中,部分係選自4-羧基哌啶-1-基、(R)-3-羧基吡咯啶-1-基、(S)-3-羧基吡咯啶-1-基、(R)-3-甲基-3-羧基吡咯啶-1-基及(S)-3-甲基-3-羧基吡咯啶-1-基,其中波形線指示與分子其餘部分之附接點。
在一些實施例中,X1
為N。在一些實施例中,X1
為CH。
在一些實施例中,R1
為CH3
或Cl。在一些實施例中,R1
為CH3
。在一些實施例中,R1
為鹵基(例如F、Cl或Br)。在一些實施例中,R1
為Cl。
在一些實施例中,R2
為C1-4
烷基、C1-4
烷氧基、C1-4
鹵基烷基、C1-4
鹵基烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、OH、NH2
、-NH-C1-4
烷基、-N(C1-4
烷基)2
、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2
之該C1-4
烷基、C1-4
烷氧基、C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、-NH-C1-4
烷基、-N(C1-4
烷基)2
、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代。
在一些實施例中,R2
為C1-4
烷基、C1-4
烷氧基、C1-4
鹵基烷基、C1-4
鹵基烷氧基、OH、NH2
、-NH-C1-4
烷基或-N(C1-4
烷基)2
,其中R2
之該C1-4
烷基、C1-4
烷氧基、-NH-C1-4
烷基及-N(C1-4
烷基)2
各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代。
在一些實施例中,R2
為C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2
之該C3-6
環烷基、C3-6
環烷基-C1-2
烷基-、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代。
在一些實施例中,R2
為甲基、乙基、異丙基、甲氧基、乙氧基、CF3
、CHF2
、CFH2
、OCF3
、OCHF2
、OCH2
F、環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、OH、NH2
、NHCH3
、N(CH3
)2
、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2
之該甲基、乙基、異丙基、甲氧基、乙氧基、環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、NHCH3
、N(CH3
)2
、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
在一些實施例中,R2
為甲基、乙基、異丙基、甲氧基、乙氧基、CF3
、CHF2
、CFH2
、OCF3
、OCHF2
、OCH2
F、OH、NH2
、NHCH3
或N(CH3
)2
,其中R2
之該甲基、乙基、異丙基、甲氧基、乙氧基、NHCH3
及N(CH3
)2
各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
在一些實施例中,R2
為環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2
之該環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
在一些實施例中,R2
為CH3
、CF3
、CHF2
、CH(CH3
)2
、NH2
、環丙基或CH2
OH。
在一些實施例中,R2
為C1-4
烷基或C1-4
鹵基烷基,其各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
在一些實施例中,R2
為C1-4
烷基或C1-4
鹵基烷基。在一些實施例中,R2
為CH3
、CF3
、CHF2
或CH(CH3
)2
。在一些實施例中,R2
為C1-4
烷基,諸如CH3
及CH(CH3
)2
。在一些實施例中,R2
為CH3
。在一些實施例中,R2
為CH(CH3
)2
。在一些實施例中,R2
為C1-4
鹵基烷基,諸如CF3
、CHF2
及CH2
F。在一些實施例中,R2
為C1-4
鹵基烷基,諸如CF3
及CHF2
。在一些實施例中,R2
為CF3
。在一些實施例中,R2
為CHF2
。在一些實施例中,R2
為CH2
F。
在一些實施例中,R2
為NH2
、NHCH3
或N(CH3
)2
,其中R2
之該NHCH3
及N(CH3
)2
各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。在一些實施例中,R2
為NH2
。
在一些實施例中,R2
為環丙基、環丁基或環己基,其中R2
之該環丙基、環丁基及環己基各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。在一些實施例中,R2
為視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代的環丙基。在一些實施例中,R2
為環丙基。
在一些實施例中,R3
為(R)-3-羥基-3-甲基吡咯啶-1-基或(S)-3-羥基-3-甲基吡咯啶-1-基。在一些實施例中,R3
為(R)-3-羥基吡咯啶-1-基或(S)-3-羥基吡咯啶-1-基。在一些實施例中,R3
為(R)-2-羥基-2-甲基-乙基胺基或(S)-2-羥基-2-甲基-乙基胺基。在一些實施例中,R3
為(R)-2-羥基-1-甲基-乙基胺基或(S)-2-羥基-1-甲基-乙基胺基。
在一些實施例中,R4
為H或CH3
。在一些實施例中,R4
為H。在一些實施例中,R4
為C1-3
烷基,諸如CH3
。
在一些實施例中,該化合物係選自:
1-((7-氰基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((-2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(7-((-3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;及
1-((7-氰基-2-(3'-(7-((-3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸,
或其醫藥學上可接受之鹽或立體異構體。
在一些實施例中,該化合物係選自:
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-4-甲基哌啶-4-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-N,N-二甲基哌啶-4-甲醯胺;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-N-甲基哌啶-4-甲醯胺;
3-(1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲醯胺基)丙酸;
1-((7-氰基-2-(3'-(2-環丙基-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;
1-((2-(3'-(2-胺基-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)-7-氰基苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基-3-甲基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(2-(羥基甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸;
1-((7-氰基-2-(3'-(3-((3-羥基吡咯啶-1-基)甲基)-6-甲基-1,7-萘啶-8-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;及
1-((7-氰基-2-(3'-(6-(二氟甲基)-3-((3-羥基吡咯啶-1-基)甲基)-1,7-萘啶-8-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸,
或其醫藥學上可接受之鹽或立體異構體。
在一些實施例中,該化合物係選自本文提供之實例。
進一步瞭解,為簡單起見,在分開實施例之上下文中描述的本發明之某些特徵亦可組合提供於單個實施例中(而該等實施例意欲如同以多重從屬形式書寫一般組合)。相反地,為簡便起見,在單個實施例之上下文中描述的本發明之多種特徵亦可分開或呈任何合適子組合提供。因此,預期描述為式(I)化合物之實施例的特徵可以任何合適組合進行組合。
在本說明書中之多個地方,化合物之某些特徵係以組或以範圍揭示。特別意欲此類揭示內容包括此類組及範圍之成員的各個別子組合。舉例而言,術語「C1-6
烷基」特別意欲個別地揭示(不限於)甲基、乙基、C3
烷基、C4
烷基、C5
烷基及C6
烷基。
其中n為整數之術語「n員」通常描述成環原子數目為n之部分中成環原子的數目。舉例而言,哌啶基為6員雜環烷基環之一實例,吡唑基為5員雜芳環之一實例,吡啶基為6員雜芳環之一實例,且1,2,3,4-四氫-萘為10員環烷基之一實例。
在本說明書之多個地方,可描述界定二價連接基團之變數。特別意欲各連接取代基包括連接取代基之正向與反向形式。舉例而言,-NR(CR'R'')n
-包括-NR(CR'R'')n
-與-(CR'R'')n
NR-,且意欲揭示各個別形式。在結構需要連接基團之情況下,針對該基團所列出之馬庫什變數(Markush variable)應理解為連接基團。舉例而言,若結構需要連接基團且針對該變數之馬庫什基團定義列出「烷基」或「芳基」,則應瞭解「烷基」或「芳基」分別表示連接伸烷基或伸芳基。
術語「經取代」意謂原子或原子團作為附接於另一基團之「取代基」形式上替換氫。除非另外指示,否則術語「經取代」係指任何程度之取代,例如單取代、二取代、三取代、四取代或五取代(在此類取代係允許的情況下)。取代基係經獨立地選擇的,且取代可在任何化學上可行之位置進行。應瞭解,既定原子上之取代受價數限制。應瞭解,既定原子上之取代產生化學上穩定之分子。片語「視情況經取代」意謂未經取代或經取代。術語「經取代」意謂移除氫原子且由取代基置換。單個二價取代基(例如側氧基)可置換兩個氫原子。
術語「Cn-m
」指示包括終點之範圍,其中n及m為整數且指示碳數。實例包括C1-4
、C1-6
及其類似物。
單獨或與其他術語組合使用之術語「烷基」係指可為直鏈或具支鏈之飽和烴基。術語「Cn-m
烷基」係指具有n至m個碳原子之烷基。烷基在形式上對應於一個C-H鍵由烷基與化合物其餘部分之附接點替代的烷烴。在一些實施例中,烷基含有1至6個碳原子、1至4個碳原子、1至3個碳原子或1至2個碳原子。烷基部分之實例包括(但不限於)諸如以下之化學基團:甲基、乙基、正丙基、異丙基、正丁基、第三丁基、異丁基、第二丁基;高級同系物,諸如2-甲基-1-丁基、正戊基、3-戊基、正己基、1,2,2-三甲基丙基及其類似基團。
單獨或與其他術語組合使用之術語「烯基」係指與具有一或多個碳-碳雙鍵之烷基對應的直鏈或具支鏈烴基。烯基在形式上對應於一個C-H鍵由烯基與化合物其餘部分之附接點替代的烯烴。術語「Cn-m
烯基」係指具有n至m個碳原子之烯基。在一些實施例中,烯基部分含有2至6個、2至4個或2至3個碳原子。烯基實例包括(但不限於)乙烯基、正丙烯基、異丙烯基、正丁烯基、第二丁烯基及其類似基團。
單獨或與其他術語組合使用之術語「炔基」係指與具有一或多個碳碳三鍵之烷基對應的直鏈或具支鏈烴基。炔基在形式上對應於一個C-H鍵由烷基與化合物其餘部分之附接點替代的炔烴。術語「Cn-m
炔基」係指具有n至m個碳之炔基。炔基實例包括(但不限於)乙炔基、丙炔-1-基、丙炔-2-基及其類似基團。在一些實施例中,炔基部分含有2至6個、2至4個或2至3個碳原子。
單獨或與其他術語組合使用之術語「伸烷基」係指二價烷基連接基團。伸烷基在形式上對應於兩個C-H鍵由伸烷基與化合物其餘部分之附接點替代的烷烴。術語「Cn-m
伸烷基」係指具有n至m個碳原子之伸烷基。伸烷基之實例包括(但不限於)乙-1,2-二基、丙-1,3-二基、丙-1,2-二基、丁-1,4-二基、丁-1,3-二基、丁-1,2-二基、2-甲基-丙-1,3-二基及其類似基團。
單獨或與其他術語組合使用之術語「烷氧基」係指式-O-烷基之基團,其中該烷基如上所定義。術語「Cn-m
烷氧基」係指其烷基具有n至m個碳之烷氧基。烷氧基實例包括甲氧基、乙氧基、丙氧基(例如正丙氧基及異丙氧基)、第三丁氧基及其類似基團。在一些實施例中,烷基具有1至6個、1至4個或1至3個碳原子。
術語「胺基」係指式-NH2
之基團。
術語「胺甲醯基」係指式-C(O)NH2
之基團。
單獨或與其他術語組合使用之術語「羰基」係指-C(=O)-基團,其亦可寫成C(O)。
術語「氰基」或「腈」係指式-C≡N之基團,其亦可寫成-CN。
單獨或與其他術語組合使用之術語「鹵基」或「鹵素」係指氟、氯、溴及碘。在一些實施例中,「鹵基」係指選自F、Cl或Br之鹵素原子。在一些實施例中,鹵基為F。
如本文所用之術語「鹵烷基」係指其中一或多個氫原子已由鹵素原子置換之烷基。術語「Cn-m
鹵烷基」係指具有n至m個碳原子及至少一個至至多{2(n至m)+1}個鹵素原子的Cn-m
烷基,該等鹵素原子可相同或不同。在一些實施例中,鹵素原子為氟原子。在一些實施例中,鹵烷基具有1至6個或1至4個碳原子。鹵烷基實例包括CF3
、C2
F5
、CHF2
、CCl3
、CHCl2
、C2
Cl5
及其類似基團。在一些實施例中,鹵烷基為氟烷基。
單獨或與其他術語組合使用之術語「鹵烷氧基」係指式-O-鹵烷基之基團,其中鹵烷基如上所定義。術語「Cn-m
鹵烷氧基」係指鹵烷氧基,其中鹵烷基具有n至m個碳。鹵烷氧基實例包括三氟甲氧基及其類似基團。在一些實施例中,鹵烷氧基具有1至6個、1至4個或1至3個碳原子。
術語「側氧基」係指作為二價取代基之氧原子,當附接於碳時形成羰基,或當附接於雜原子時,形成亞碸基或碸基,或N
-氧化物基團。在一些實施例中,雜環基團可視情況經1個或2個側氧基(=O)取代基取代。
術語「硫離子基」係指作為二價取代基之硫原子,當附接於碳時形成硫羰基(C=S)。
術語「芳族」係指具有一或多個多不飽和環且具有芳族特性(亦即具有(4n + 2)個離域π (π)電子,其中n為整數)之碳環或雜環。
單獨或與其他術語組合使用之術語「芳基」係指可為單環或多環(例如具有2個稠環)之芳族烴基。術語「Cn-m
芳基」係指具有n至m個環碳原子之芳基。芳基包括例如苯基、萘基、二氫茚基、茚基及其類似基團。在一些實施例中,芳基具有6至約10個碳原子。在一些實施例中,芳基具有6個碳原子。在一些實施例中,芳基具有10個碳原子。在一些實施例中,芳基為苯基。在一些實施例中,芳基為萘基。
本文中使用之術語「雜原子」意謂包括硼、磷、硫、氧及氮。
單獨或與其他術語組合使用之術語「雜芳基」或「雜芳族」係指具有至少一個選自硼、磷、硫、氧及氮之雜原子環成員的單環或多環芳族雜環。在一些實施例中,雜芳環具有1個、2個、3個或4個獨立地選自氮、硫及氧之雜原子環成員。在一些實施例中,雜芳基部分中之任何成環N可為N-氧化物。在一些實施例中,雜芳基具有5-14個包括碳原子之環原子及1個、2個、3個或4個獨立地選自氮、硫及氧之雜原子環成員。在一些實施例中,雜芳基具有5-14個或5-10個包括碳原子之環原子及1個、2個、3個或4個獨立地選自氮、硫及氧之雜原子環成員。在一些實施例中,雜芳環具有5-6個環原子及1個或2個獨立地選自氮、硫及氧之雜原子環成員。在一些實施例中,雜芳基為五員或六員雜芳環。在其他實施例中,雜芳基為八員、九員或十員稠合雙環雜芳環。雜芳基實例包括(但不限於)吡啶基(pyridinyl)(吡啶基(pyridyl))、嘧啶基、吡嗪基、嗒嗪基、吡咯基、吡唑基、唑基、噁唑基、噻唑基、咪唑基、呋喃基、噻吩基、喹啉基、異喹啉基、萘啶基(包括1,2-萘啶、1,3-萘啶、1,4-萘啶、1,5-萘啶、1,6-萘啶、1,7-萘啶、1,8-萘啶、2,3-萘啶及2,6-萘啶)、吲哚基、苯并噻吩基、苯并呋喃基、苯并異噁唑基、咪唑并[1,2-b
]噻唑基、嘌呤基及其類似基團。
五員雜芳環為具有五個環原子之雜芳基,其中一或多個(例如1個、2個或3個)環原子獨立地選自N、O及S。示例性五員環雜芳基包括噻吩基、呋喃基、吡咯基、咪唑基、噻唑基、噁唑基、吡唑基、異噻唑基、異噁唑基、1,2,3-三唑基、四唑基、1,2,3-噻二唑基、1,2,3-噁二唑基、1,2,4-三唑基、1,2,4-噻二唑基、1,2,4-噁二唑基、1,3,4-三唑基、1,3,4-噻二唑基及1,3,4-噁二唑基。
六員雜芳環為具有六個環原子之雜芳基,其中一或多個(例如1個、2個或3個)環原子獨立地選自N、O及S。示例性六員環雜芳基為吡啶基、吡嗪基、嘧啶基、三嗪基及嗒嗪基。
單獨或與其他術語組合使用之術語「環烷基」係指非芳族烴環系統(單環、雙環或多環),包括環化烷基及烯基。術語「Cn-m
環烷基」係指具有n至m個環成員碳原子之環烷基。環烷基可包括單環或多環(例如具有2個、3個或4個稠環)基團及螺環。環烷基可具有3個、4個、5個、6個、7個、8個、9個、10個、11個、12個、13個或14個成環碳(C3-14
)。在一些實施例中,環烷基具有3至14個成員、3至10個成員、3至6個環成員、3至5個環成員或3至4個環成員。在一些實施例中,環烷基為單環。在一些實施例中,環烷基為單環或雙環。在一些實施例中,環烷基為C3-6
單環環烷基。環烷基之成環碳原子可視情況經氧化形成側氧基或硫離子基。環烷基亦包括亞環烷基。在一些實施例中,環烷基為環丙基、環丁基、環戊基或環己基。環烷基之定義中亦包括具有一或多個與環烷基環稠合(亦即與環烷基環共用一鍵)之芳族環的部分,例如環戊烷、環己烷之苯并或噻吩基衍生物及其類似物。含有稠合芳環之環烷基可經由任何成環原子,包括稠合芳環之成環原子進行附接。環烷基之實例包括環丙基、環丁基、環戊基、環己基、環庚基、環戊烯基、環己烯基、環已二烯基、環庚三烯基、降冰片基、降蒎烷基、降蒈烷基、雙環[1.1.1]戊烷基、雙環[2.1.1]己烷基及其類似基團。在一些實施例中,環烷基為環丙基、環丁基、環戊基或環己基。
單獨或與其他術語組合使用之術語「雜環烷基」係指可視情況含有一或多個伸烯基作為環結構之一部分,具有至少一個獨立地選自硼、氮、硫、氧及磷之雜原子環成員且具有4-14個環成員、4-10個環成員、4-7個環成員或4-6個環成員的非芳族環或環系統。術語「雜環烷基」內包括單環4員、5員、6員及7員雜環烷基。雜環烷基可包括單環或雙環或多環(例如具有兩個或三個稠環或橋環)環系統或螺環。在一些實施例中,雜環烷基為具有1個、2個或3個獨立地選自氮、硫及氧之雜原子的單環基團。雜環烷基之成環碳原子及雜原子可視情況經氧化形成側氧基或硫離子基或其他氧化鍵聯(例如C(O)、S(O)、C(S)或S(O)2
、N
-氧化物等),或氮原子可經四級銨化。雜環烷基可經由成環碳原子或成環雜原子附接。在一些實施例中,雜環烷基含有0至3個雙鍵。在一些實施例中,雜環烷基含有0至2個雙鍵。雜環烷基之定義中亦包括具有一或多個與雜環烷基環稠合(亦即與雜環烷基環共用一鍵)之芳環的部分,例如哌啶、嗎啉、氮呯之苯并或噻吩基衍生物等。含有稠合芳環之雜環烷基可經由任何成環原子,包括稠合芳環之成環原子進行附接。雜環烷基之實例包括氮雜環丁烷基、氮雜環庚烷基、二氫苯并呋喃基、二氫呋喃基、二氫哌喃基、嗎啉基、3-氧雜-9-氮雜螺[5.5]十一烷基、1-氧雜-8-氮雜螺[4.5]癸烷基、哌啶基、哌嗪基、側氧基哌嗪基、哌喃基、吡咯啶基、奎寧環基、四氫呋喃基、四氫哌喃基、1,2,3,4-四氫喹啉基、托品烷基、4,5,6,7-四氫噻唑并[5,4-c]吡啶基及硫嗎啉基。
在某些地方,定義或實施例係指特定環(例如氮雜環丁烷環、吡啶環等)。除非另外指示,否則此等環可附接於任何環成員,條件為不超過原子價數。舉例而言,氮雜環丁烷環可在環之任何位置附接,而氮雜環丁烷-3-基環在3位附接。
本文所述之化合物可為不對稱的(例如具有一或多個立構中心)。除非另外指示,否則預期為諸如對映異構體及非對映異構體之所有立體異構體。含有經不對稱取代之碳原子的本發明之化合物可呈光學活性或消旋形式分離。本領域中已知如何自無光學活性之起始物質製備光學活性形式之方法,諸如藉由拆分外消旋混合物或藉由立體選擇性合成。烯烴、C=N雙鍵及其類似物之許多幾何異構體亦可存在於本文所述之化合物中,且本發明中涵蓋所有此類穩定異構體。描述本發明化合物之順式與反式幾何異構體且可呈異構體混合物或呈分開異構體形式分離。
化合物之外消旋混合物之拆分可藉由本領域中已知之許多方法中之任一種進行。一種方法包括使用作為光學活性成鹽有機酸的對掌性拆分酸進行分步再結晶。適用於分步再結晶法之拆分劑為例如光學活性酸,諸如D及L形式之酒石酸、二乙醯基酒石酸、二苯甲醯基酒石酸、扁桃酸、蘋果酸、乳酸或多種光學活性樟腦磺酸(諸如β-樟腦磺酸)。其他適合於分步結晶法之拆分劑包括α-甲基苯甲胺之立體異構純形式(例如S
及R
形式,或非對映異構純形式)、2-苯基甘胺醇、降麻黃鹼、麻黃鹼、N
-甲基麻黃鹼、環己基乙胺、1,2-二胺基環己烷及其類似物。
外消旋混合物之拆分亦可藉由在裝填有光學活性拆分劑(例如二硝基苯甲醯基苯基甘胺酸)之管柱上溶析來進行。合適溶析溶劑組成可由本領域之技術人員決定。
在一些實施例中,本發明之化合物具有(R
)-構型。在其他實施例中,化合物具有(S
)-構型。在具有超過一個對掌性中心之化合物中,除非另外指示,否則化合物中之各對掌性中心可獨立地為(R
)或(S
)。
本發明之化合物亦包括互變異構形式。互變異構形式由單鍵與相鄰雙鍵交換同時伴隨質子遷移產生。互變異構形式包括質子轉移互變異構體,其為具有相同經驗式及總電荷之異構質子化狀態。質子轉移互變異構體實例包括酮-烯醇對、醯胺-亞胺酸對、內醯胺-內醯亞胺對、烯胺-亞胺對及其中質子可佔據雜環系統之兩個或更多個位置之環狀形式,例如1H
-咪唑及3H
-咪唑、1H
-1,2,4-三唑、2H
-1,2,4-三唑及4H
-1,2,4-三唑、1H
-異吲哚及2H
-異吲哚以及1H
-吡唑及2H
-吡唑。互變異構形式可處於平衡或藉由適當取代而在空間上鎖定成一種形式。
本發明之化合物亦可包括中間物或最終化合物中存在之原子之所有同位素。同位素包括具有相同原子序數但質量數不同之彼等原子。舉例而言,氫同位素包括氚及氘。本發明之化合物之一或多個組成原子可經天然或非天然豐度之原子同位素置換或取代。在一些實施例中,化合物包括至少一個氘原子。舉例而言,本發明之化合物中之一或多個氫原子可經氘置換或取代。在一些實施例中,化合物包括兩個或更多個氘原子。在一些實施例中,化合物包括1個、2個、3個、4個、5個、6個、7個、8個、9個、10個、11個或12個氘原子。用於將同位素包括於有機化合物中之合成方法為本領域中已知。
如本文所用之術語「化合物」意謂包括所描繪之結構的所有立體異構體、幾何異構體、互變異構體及同位素。該術語亦意謂係指本發明之化合物,無論其如何製備,例如藉由合成、經由生物方法(例如代謝或酶促轉變)或其組合。
所有化合物及其醫藥學上可接受之鹽連同諸如水及溶劑之其他物質一起存在(例如水合物及溶劑化物),或可為分離的。當處於固態時,本文所述之化合物及其鹽可呈多種形式存在,且可例如採取溶劑合物形式,包括水合物。化合物可呈任何固態形式,諸如多晶型物或溶劑合物,因此除非另外清楚指示,本說明書中對化合物及其鹽之提及應理解為涵蓋化合物之任何固態形式。
在一些實施例中,本發明之化合物或其鹽係實質上分離的。「實質上分離的」意謂化合物至少部分或實質上與形成或偵測到其之環境分離。部分分離可包括例如富集本發明之化合物的組合物。實質上分離可包括含有至少約50重量%、至少約60重量%、至少約70重量%、至少約80重量%、至少約90重量%、至少約95重量%、至少約97重量%或至少約99重量%本發明之化合物或其鹽的組合物。
本文中片語「醫藥學上可接受」用以指在合理醫學判斷範圍內,適合與人類及動物之組織接觸使用而無過度毒性、刺激、過敏反應或其他問題或併發症,與合理利益/風險比相稱的彼等化合物、物質、組合物及/或劑型。
如本文所用之表述「周圍溫度」及「室溫」為本領域中所瞭解,且一般係指溫度,例如反應溫度約為進行反應之房間的溫度,例如約20℃至約30℃。
本發明亦包括本文所述之化合物的醫藥學上可接受之鹽。術語「醫藥學上可接受之鹽」係指所揭示化合物之衍生物,其中母體化合物藉由將所存在之酸或鹼部分轉變成其鹽形式而經修飾。醫藥學上可接受之鹽之實例包括(但不限於)諸如胺之鹼性殘餘物之無機酸鹽或有機酸鹽;諸如羧酸之酸性殘餘物之鹼金屬鹽或有機鹽;及其類似物。本發明之醫藥學上可接受之鹽包括例如由無毒無機酸或有機酸形成的母體化合物之無毒鹽。本發明之醫藥學上可接受之鹽可藉由習知化學方法由含有鹼性或酸性部分之母體化合物合成。一般而言,此類鹽可藉由使此等化合物之游離酸或游離鹼形式與化學計算量之適當鹼或酸在水中或有機溶劑中或兩者的混合物中反應來製備;一般而言,非水性介質,如乙醚、乙酸乙酯、醇(例如甲醇、乙醇、異丙醇或丁醇)或乙腈(MeCN)為較佳。合適鹽之清單見於Remington's Pharmaceutical Sciences
, 第17版, (Mack Publishing Company, Easton, 1985), 第1418頁;Berge等人,J. Pharm. Sci.
, 1977,66
(1), 1-19;及Stahl等人,Handbook of Pharmaceutical Salts: Properties, Selection, and Use
, (Wiley, 2002)。在一些實施例中,本文所述之化合物包括N-氧化物形式。II. 合成
本發明之化合物,包括其鹽,可使用已知之有機合成技術製備且可根據許多可能合成途徑中之任一種合成。
用於製備本發明之化合物之反應可在有機合成領域之技術人員容易選擇之合適溶劑中進行。合適溶劑可實質上不與起始物質(反應物)、中間物或產物在進行反應之溫度,例如可在溶劑冷凍溫度至溶劑沸點溫度範圍內之溫度下反應。既定反應可在一種溶劑中或超過一種溶劑之混合物中進行。視具體反應步驟而定,熟練技術人員可針對具體反應步驟選擇合適溶劑。
本發明之化合物之製備可涉及多種化學基團之保護及脫除保護基。本領域之技術人員容易地確定對保護及脫除保護基之需要及適當保護基之選擇。保護基之化學描述於例如下列中:Kocienski,Protecting Groups
, (Thieme, 2007);Robertson,Protecting Group Chemistry
, (Oxford University Press, 2000);Smith等人,March's Advanced Organic Chemistry: Reactions, Mechanisms, and Structure
, 第6版(Wiley, 2007);Peturssion等人, 「Protecting Groups in Carbohydrate Chemistry」,J. Chem. Educ
., 1997,74
(11), 1297;及Wuts等人,Protective Groups in Organic Synthesis
, 第4版, (Wiley, 2006)。
反應可根據本領域中已知之任何合適方法監測。舉例而言,產物形成可藉由光譜手段,諸如核磁共振譜法(例如1
H或13
C)、紅外光譜分析、分光光度測定法(例如UV-可見光分光光度測定法)、質譜分析法或藉由層析法,諸如高效液相層析法(HPLC)或薄層層析法(TLC)監測。III. 化合物之用途
本發明之化合物可抑制PD-1/PD-L1蛋白質/蛋白質相互作用之活性,因此,可用於治療與PD-1活性相關之疾病及病症以及與PD-L1,包括其與諸如PD-1及B7-1 (CD80)之其他蛋白質之相互作用相關的疾病及病症。在某些實施例中,本發明之化合物或其醫藥學上可接受之鹽或立體異構體可用於治療性投與以增強、刺激及/或增加在癌症、慢性感染或敗血症中之免疫性,包括增強對接種疫苗之反應。在一些實施例中,本發明提供一種用於抑制PD-1/PD-L1蛋白質/蛋白質相互作用之方法。該方法包括向個體或患者投與式(I)或如本文所述之任一式之化合物,或如申請專利範圍任一項中所敍述及本文所述之化合物,或其醫藥學上可接受之鹽或立體異構體。本發明之化合物可單獨使用,與其他藥劑或療法組合使用,或作為輔助療法或新輔助療法,用於治療包括癌症或感染性疾病之疾病或病症。對於本文所述之用途,可使用任一本發明之化合物,包括其任一實施例。
本發明之化合物抑制PD-1/PD-L1蛋白質/蛋白質相互作用,導致PD-1路徑阻斷。PD-1之阻斷可增強包括人類之哺乳動物中對癌細胞及感染性疾病之免疫反應。在一些實施例中,本發明提供使用式(I)化合物或其鹽或立體異構體在活體內治療個體或患者,由此抑制癌性腫瘤之生長。式(I)或如本文所述之任一式之化合物,或如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽或立體異構體,可用於抑制癌性腫瘤之生長。可替代地,式(I)或如本文所述之任一式之化合物,或如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽或立體異構體,可結合如下所述之其他藥劑或標準癌症治療使用。在一個實施例中,本發明提供一種用於抑制活體外腫瘤細胞生長之方法。該方法包括使活體外腫瘤細胞接觸式(I)或如本文所述之任一式之化合物,或如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽或立體異構體。在另一實施例中,本發明提供一種用於抑制個體或患者中腫瘤細胞生長之方法。該方法包括向有需要之個體或患者投與治療有效量之式(I)或如本文所述之任一式之化合物,或如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽或立體異構體。
在一些實施例中,本文提供一種用於治療癌症之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽。癌症之實例包括生長可使用本發明之化合物抑制之癌症及通常對免疫療法起反應之癌症。
在一些實施例中,本發明提供一種增強、刺激及/或增加患者中之免疫反應的方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物或組合物,或其鹽。
可使用本發明之化合物治療之癌症的實例包括(但不限於)骨癌、胰臟癌、皮膚癌、頭部或頸部癌症、皮膚或眼內惡性黑色素瘤、子宮癌、卵巢癌、直腸癌、肛區癌、胃癌、睪丸癌、子宮癌、輸卵管癌、子宮內膜癌瘤、子宮內膜癌、子宮頸癌、陰道癌、外陰癌、霍奇金氏病(Hodgkin's Disease)、非霍奇金氏病、食道癌、小腸癌、內分泌系統癌、甲狀腺癌、甲狀旁腺癌、腎上腺癌、軟組織肉瘤、尿道癌、陰莖癌、慢性或急性白血病(包括急性骨髓性白血病、慢性骨髓性白血病、急性淋巴母細胞性白血病、慢性淋巴球性白血病)、幼年實體腫瘤、淋巴球性淋巴瘤、膀胱癌、腎或尿道癌、腎盂癌、中樞神經系統(CNS)贅瘤、原發性CNS淋巴瘤、腫瘤血管生成、脊椎軸腫瘤、腦幹膠質瘤、垂體腺瘤、卡波西氏肉瘤(Kaposi's sarcoma)、表皮樣癌、鱗狀細胞癌、T細胞淋巴瘤、環境誘發之癌症(包括由石棉誘發之癌症)及該等癌症之組合。本發明之化合物亦可用於治療轉移性癌症,特別是表現PD-L1之轉移性癌症。
在一些實施例中,可用本發明之化合物治療之癌症包括黑色素瘤(例如轉移性惡性黑色素瘤、皮膚黑色素瘤)、腎臟癌(例如透明細胞癌)、前列腺癌(例如激素難治性前列腺腺癌)、乳癌(例如乳房浸潤性癌)、結腸癌、肺癌(例如非小細胞肺癌及小細胞肺癌)、鱗狀細胞頭頸部癌(例如頭頸部鱗狀細胞癌)、尿路上皮癌(例如膀胱癌、非肌層浸潤性膀胱癌(NMIBC))及具有高微衛星不穩定性(MSI高
)之癌症。另外,本發明包括生長可使用本發明之化合物抑制之難治性或復發性惡性病。
在一些實施例中,可使用本發明之化合物治療之癌症包括(但不限於)實體腫瘤(例如前列腺癌、結腸癌、食道癌、子宮內膜癌、卵巢癌、子宮癌、腎臟癌、肝臟癌、胰臟癌、胃癌、乳癌、肺癌、頭頸部癌、甲狀腺癌、膠質母細胞瘤、肉瘤、膀胱癌等)、血液癌症(例如淋巴瘤、白血病(諸如急性淋巴母細胞性白血病(ALL)、急性髓細胞性白血病(AML)、慢性淋巴球性白血病(CLL)、慢性髓細胞性白血病(CML))、DLBCL、套細胞淋巴瘤、非霍奇金氏淋巴瘤(包括復發性或難治性NHL及復發性濾泡性NHL)、霍奇金氏淋巴瘤或多發性骨髓瘤)及該等癌症之組合。
在一些實施例中,可使用本發明之化合物治療之癌症包括(但不限於)膽管細胞癌、膽管癌、膽道癌、三陰性乳癌、橫紋肌肉瘤、小細胞肺癌、平滑肌肉瘤、肝細胞癌、尤因氏肉瘤(Ewing’s sarcoma)、腦癌、腦腫瘤、星形細胞瘤、神經母細胞瘤、纖維神經瘤、基底細胞癌、軟骨肉瘤、上皮樣肉瘤、眼癌、輸卵管癌、胃腸癌、胃腸道間質瘤、毛細胞白血病、腸癌、胰島細胞癌、口癌、口腔癌、咽喉癌、喉癌、唇癌、間皮瘤、頸癌、鼻腔癌、眼睛癌症、眼睛黑色素瘤、骨盆癌、直腸癌、腎細胞癌、唾液腺癌、鼻竇癌、脊椎癌、舌癌、小管癌、尿道癌及輸尿管癌。
在一些實施例中,本發明之化合物可用於治療鐮狀細胞病及鐮狀細胞貧血。
在一些實施例中,可使用本發明之化合物治療之疾病及適應症包括(但不限於)血液癌症、肉瘤、肺癌、胃腸癌、泌尿生殖道癌症、肝癌、骨癌、神經系統癌症、婦科癌症及皮膚癌。
例示性血液癌症包括淋巴瘤及白血病,諸如急性淋巴母細胞性白血病(ALL)、急性髓細胞性白血病(AML)、急性前髓細胞白血病(APL)、慢性淋巴球性白血病(CLL)、慢性髓細胞性白血病(CML)、瀰漫性大B細胞淋巴瘤(DLBCL)、套細胞淋巴瘤、非霍奇金氏淋巴瘤(包括復發性或難治性NHL及復發性濾泡性NHL)、霍奇金氏淋巴瘤、骨髓增生性疾病(例如原發性骨髓纖維化(PMF)、真性紅血球增多症(PV)及原發性血小板增多症(ET))、脊髓發育不良症候群(MDS)、T細胞急性淋巴母細胞性淋巴瘤(T-ALL)及多發性骨髓瘤(MM)。
例示性肉瘤包括軟骨肉瘤、尤因氏肉瘤、骨肉瘤、橫紋肌肉瘤、血管肉瘤、纖維肉瘤、脂肪肉瘤、黏液瘤、橫紋肌瘤、橫紋肉瘤、纖維瘤、脂肪瘤、錯構瘤及畸胎瘤。
例示性肺癌包括非小細胞肺癌(NSCLC) (例如鱗狀細胞NSCLC)、小細胞肺癌、枝氣管癌(鱗狀細胞、未分化小細胞、未分化大細胞、腺癌)、肺泡(枝氣管)癌、枝氣管腺瘤、軟骨瘤錯構瘤及間皮瘤。
例示性胃腸癌包括食道癌(癌瘤、鱗狀細胞癌、腺癌、平滑肌肉瘤、淋巴瘤)、胃癌(癌瘤、淋巴瘤、平滑肌肉瘤、腺癌)、胰臟癌(導管腺癌、胰島瘤、胰升糖素瘤、胃泌素瘤、類癌瘤、胰血管活性腸肽瘤)、小腸癌(腺癌、淋巴瘤、類癌瘤、卡波西氏肉瘤、平滑肌瘤、血管瘤、脂肪瘤、纖維神經瘤、纖維瘤)、大腸癌(腺癌、管狀腺瘤、絨毛狀腺瘤、錯構瘤、平滑肌瘤)及結腸直腸癌(例如結腸直腸腺癌)。
例示性泌尿生殖道癌症包括腎癌(腺癌、威爾姆氏腫瘤(Wilm's tumor)[腎母細胞瘤]) 、膀胱及尿道癌(鱗狀細胞癌、移行細胞癌、腺癌)、前列腺癌(腺癌、肉瘤)及睪丸(精原細胞瘤、畸胎瘤、胚胎癌、畸胎癌、絨毛膜癌、肉瘤、間質細胞癌、纖維瘤、纖維腺瘤、腺瘤樣瘤、脂肪瘤)。在一些實施例中,癌症為泌尿道癌(例如乳頭狀腎癌、睪丸生殖細胞癌、難染腎細胞癌、透明細胞腎癌或前列腺癌)。
例示性肝癌包括肝細胞瘤(肝細胞癌)、膽管細胞癌、肝母細胞瘤、血管肉瘤、肝細胞腺瘤及血管瘤。
例示性骨癌包括例如骨原性肉瘤(骨肉瘤)、纖維肉瘤、惡性纖維組織細胞瘤、軟骨肉瘤、尤因氏肉瘤、惡性淋巴瘤(網狀細胞肉瘤)、多發性骨髓瘤、惡性巨細胞瘤脊索瘤、軟骨骨瘤(骨軟骨性外生骨疣)、良性軟骨瘤、軟骨母細胞瘤、軟骨粘液纖維瘤、骨樣骨瘤及巨細胞瘤。
例示性神經系統癌症包括顱骨癌(骨瘤、血管瘤、肉芽瘤、黃瘤、畸形性骨炎)、腦膜癌(腦膜瘤、腦膜肉瘤、神經膠質瘤病)、腦癌(星形細胞瘤、髓母細胞瘤、膠質瘤、室管膜瘤、生殖細胞瘤(松果體瘤)、膠質母細胞瘤、多形性膠質母細胞瘤、寡樹突細胞瘤、神經鞘瘤、視網膜母細胞瘤、先天性腫瘤)及脊髓癌(纖維神經瘤、腦膜瘤、膠質瘤、肉瘤)以及神經母細胞瘤及萊爾米特-杜卡洛斯病(Lhermitte-Duclos disease)。
例示性婦科癌症包括子宮癌(子宮內膜癌)、子宮頸癌(子宮頸癌瘤、腫瘤前子宮頸非典型增生)、卵巢癌(卵巢癌瘤(漿液性囊腺癌、漿液性腺癌、黏液性囊腺癌、未分類癌瘤)、顆粒細胞-卵泡膜細胞腫瘤、塞爾托利氏細胞-萊氏細胞腫瘤(Sertoli-Leydig cell tumor)、無性細胞瘤、惡性畸胎瘤)、外陰癌(鱗狀細胞癌、上皮內癌、腺癌、纖維肉瘤、黑色素瘤)、陰道癌(透明細胞癌、鱗狀細胞癌、葡萄樣肉瘤(胚胎性橫紋肌肉瘤)及輸卵管癌(癌瘤)。
例示性皮膚癌包括黑色素瘤、基底細胞癌、鱗狀細胞癌(例如皮膚鱗狀細胞癌)、卡波西氏肉瘤、發育異常痣、脂肪瘤、血管瘤、皮膚纖維瘤及瘢痕瘤。在一些實施例中,可使用本發明之化合物治療之疾病及適應症包括(但不限於)鐮狀細胞病(例如鐮狀細胞貧血)、三陰性乳癌(TNBC)、骨髓發育異常症候群、睪丸癌、膽管癌、食道癌及尿路上皮癌。
利用本發明之化合物阻斷PD-1路徑亦可用於治療感染,諸如病毒、細菌、真菌及寄生蟲感染。本發明提供一種用於治療感染(諸如病毒感染)之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,其鹽。引起本發明之方法可治療之感染的病毒的實例包括(但不限於)人類免疫缺陷性病毒、人類乳頭狀瘤病毒、流感病毒、A型、B型、C型或D型肝炎病毒、腺病毒、痘病毒、單純疱疹病毒、人類巨細胞病毒、嚴重急性呼吸症候群病毒、埃博拉病毒(ebola virus)及麻疹病毒。在一些實施例中,引起本發明之方法可治療之感染的病毒包括(但不限於)肝炎(A型、B型或C型)病毒、疱疹病毒(例如VZV、HSV-1、HAV-6、HSV-II及CMV、愛潑斯坦巴爾病毒(Epstein Barr virus))、腺病毒、流感病毒、黃病毒、埃可病毒(echovirus)、鼻病毒、柯薩奇病毒(coxsackie virus)、冠狀病毒(cornovirus)、呼吸道合胞病毒、腮腺炎病毒、輪狀病毒、麻疹病毒、風疹病毒、細小病毒、牛痘病毒、HTLV病毒、登革熱病毒(dengue virus)、乳頭狀瘤病毒、軟疣病毒、脊髓灰質炎病毒、狂犬病病毒、JC病毒、肺結核病毒及蟲媒病毒性腦炎病毒。
本發明提供一種用於治療細菌感染之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽。引起本發明之方法可治療之感染的致病細菌之非限制性實例包括衣原體屬(chlamydia)、立克次氏體細菌(rickettsial bacteria)、分枝桿菌屬(mycobacteria)、葡萄球菌屬(staphylococci)、鏈球菌屬(streptococci)、肺炎球菌屬(pneumonococci)、腦膜炎球菌(meningococci)及淋球菌(conococci)、克雷伯氏桿菌屬(klebsiella)、變形桿菌(proteus)、沙雷氏菌屬(serratia)、假單胞菌屬(pseudomonas)、軍團桿菌(legionella)、白喉桿菌、沙門氏菌(salmonella)、桿菌屬、霍亂菌、破傷風菌、肉毒中毒菌、炭疽菌、瘟疫菌、鉤端螺旋體病(leptospirosis)菌及萊姆病細菌(Lyme's disease bacteria)。
本發明提供一種用於治療真菌感染之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽。引起本發明之方法可治療之感染的致病真菌之非限制性實例包括念珠菌屬(Candida)(白色念珠菌(Candida albicans)、克魯斯氏念珠菌(Candida krusei)、光滑念珠菌(Candida glabrata)、熱帶念珠菌(Candida tropicalis)等)、新型隱球菌(Cryptococcus neoformans)、麯黴屬(Aspergillus)(菸麯黴(Aspergillus fumigatus)、黑麯黴(Aspergillus niger)等)、毛黴菌目(Genus Mucorales)(毛黴屬(mucor)、犁頭黴屬(absidia)、根黴屬菌(rhizophus))、申克孢子絲菌(Sporothrix schenkii)、皮炎芽生菌(Blastomyces dermatitidis)、巴西副球孢子菌(Paracoccidioides brasiliensis)、粗球孢子菌(Coccidioides immitis)及莢膜組織胞漿菌(Histoplasma capsulatum)。
本發明提供一種用於治療寄生蟲感染之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽。引起本發明之方法可治療之感染的致病寄生物之非限制性實例包括痢疾內變形蟲(Entamoeba histolytica)、結腸小袋蟲(Balantidium coli)、福勒氏耐格里原蟲(Naegleriafowleri)、棘阿米巴屬(Acanthamoeba sp.)、藍氏賈第鞭毛蟲(Giardia lambia)、隱孢子蟲屬(Cryptosporidium sp.)、肺炎肺囊蟲(Pneumocystis carinii)、間日瘧原蟲(Plasmodium vivax)、果氏巴貝蟲(Babesia microti)、布氏錐蟲(Trypanosoma brucei)、克氏錐蟲(Trypanosoma cruzi)、杜氏利什曼蟲(Leishmania donovani)、剛地弓形蟲(Toxoplasma gondi)及巴西鉤蟲(Nippostrongylus brasiliensis)。
本發明提供一種用於治療神經變性疾病或病症之方法。該方法包括向有需要之患者投與治療有效量之式(I)或如本文所述之任一式之化合物,如申請專利範圍任一項中所敍述及本文所述之化合物,或其鹽。神經變性疾病或病症之非限制性實例包括阿茲海默氏病(Alzheimer’s disease)、帕金森氏病(Parkinson’s disease)、亨廷頓氏病(Huntington’s disease)、普里昂病(prion disease)、運動神經元疾病、脊髓小腦性共濟失調及脊髓性肌萎縮。
咸信式(I)化合物或其任一實施例可具有令人滿意之藥理學概況及有前景之生物醫藥學特性,諸如毒物學概況、代謝及藥物動力學特性、溶解性及滲透性。應瞭解,適當生物醫藥學特性之測定在本領域之技術人員的知識範圍內,例如測定在細胞中之細胞毒性或某些標靶或通道之抑制以測定潛在毒性。
術語「個體」或「患者」可互換使用,係指任何動物,包括哺乳動物,較佳為小鼠、大鼠、其他囓齒動物、兔、犬、貓、豬、牛、羊、馬或靈長類動物,且最佳為人類。
片語「治療有效量」係指活性化合物或藥劑引起由研究員、獸醫、醫學博士或其他臨床醫師在組織、系統、動物、個體或人類中所尋求之生物或醫學反應的量。
如本文所用,術語「治療(treating)」或「治療(treatment)」係指以下中一或多個:(1)抑制疾病;例如抑制經歷或發生疾病、病狀或病症之病變或症狀之個體中的疾病、病狀或病症(亦即阻止病理及/或症狀進一步發展);及(2)改善疾病;例如改善經歷或發生疾病、病狀或病症之病變或症狀之個體中的疾病、病狀或病症(亦即逆轉病理及/或症狀),諸如降低疾病之嚴重程度。
在一些實施例中,本發明之化合物可用於預防發生本文中提及之任一疾病或降低其風險;例如預防易感染疾病、病狀或病症但尚未經歷或顯現疾病之病變或症狀的個體中發生疾病、病狀或病症或降低其風險。組合療法
癌細胞生長及存活可受多個生物學路徑功能障礙影響。因此,將不同機制之抑制劑,諸如酶抑制劑、信號轉導抑制劑、染色質動力學之抑制劑或免疫反應調節劑組合可用於治療此類病狀。靶向超過一個信號傳導路徑(或超過一種涉及既定信號傳導路徑之生物分子)可降低細胞群體中出現抗藥性之可能性,及/或減小治療毒性。
本發明之化合物可與用於治療諸如癌症或感染之疾病之一或多種療法組合使用。可用組合療法治療之疾病及適應症之實例包括如本文所述之疾病及適應症。癌症之實例包括實體腫瘤及非實體腫瘤,諸如液體腫瘤、血液癌症。感染之實例包括病毒感染、細菌感染、真菌感染或寄生蟲感染。舉例而言,本發明之化合物可與以下激酶之一或多種抑制劑組合用於治療癌症:Akt1、Akt2、Akt3、BCL2、CDK、TGF-βR、PKA、PKG、PKC、CaM-激酶、磷酸化酶激酶、MEKK、ERK、MAPK、mTOR、EGFR、HER2、HER3、HER4、INS-R、IDH2、IGF-1R、IR-R、PDGFαR、PDGFβR、PI3K (α、β、γ、δ及多重性或選擇性)、CSF1R、KIT、FLK-II、KDR/FLK-1、FLK-4、flt-1、FGFR1、FGFR2、FGFR3、FGFR4、c-Met、PARP、Ron、Sea、TRKA、TRKB、TRKC、TAM激酶(Axl、Mer、Tyro3)、FLT3、VEGFR/Flt2、Flt4、EphA1、EphA2、EphA3、EphB2、EphB4、Tie2、Src、Fyn、Lck、Fgr、Btk、Fak、SYK、FRK、JAK、ABL、ALK及B-Raf。在一些實施例中,本發明之化合物可與一或多種以下抑制劑組合用於治療癌症或感染。可與本發明之化合物組合用於治療癌症及感染之抑制劑的非限制性實例包括FGFR抑制劑(FGFR1、FGFR2、FGFR3或FGFR4,例如派米替尼(pemigatinib)(INCY54828)、INCB62079)、JAK抑制劑(JAK1及/或JAK2,例如魯索利替尼(ruxolitinib)、巴瑞克替尼(baricitinib)或伊它替尼(itacitinib)(INCB39110))、IDO抑制劑(例如艾帕卡(epacadostat)、NLG919或BMS-986205、MK7162)、LSD1抑制劑(例如INCB59872及INCB60003)、TDO抑制劑、PI3K-δ抑制劑(例如帕薩里斯(Parsaclisib)(INCB50465)及INCB50797)、PI3K-γ抑制劑(諸如PI3K-γ選擇性抑制劑)、Pim抑制劑(例如INCB53914)、EGFR抑制劑(亦稱ErB-1或HER-1;例如埃羅替尼(erlotinib)、吉非替尼(gefitinib)、凡德他尼(vandetanib)、奧希替尼(orsimertinib)、西妥昔單抗(cetuximab)、耐昔妥珠單抗(necitumumab)或帕尼單抗(panitumumab))、VEGFR抑制劑或路徑阻斷劑(例如貝伐單抗(bevacizumab)、帕唑帕尼(pazopanib)、舒尼替尼(sunitinib)、索拉非尼(sorafenib)、阿西替尼(axitinib)、瑞戈非尼(regorafenib)、帕納替尼(ponatinib)、卡博替尼(cabozantinib)、阿西替尼、凡德他尼、雷莫蘆單抗(ramucirumab)、樂伐替尼(lenvatinib)、阿柏西普(ziv-aflibercept))、PARP抑制劑(例如奧拉帕尼(olaparib)、盧卡帕尼(rucaparib)、維利帕尼(veliparib)、拉唑帕尼(talazoparib)或尼拉帕尼(niraparib))、CSF1R抑制劑、TAM受體酪胺酸激酶(Tyro-3、Axl及Mer)、腺嘌呤核苷受體拮抗體(例如A2a/A2b受體拮抗體)、HPK1抑制劑、趨化介素受體抑制劑(例如CCR2或 CCR5抑制劑)、SHP1/2磷酸酶抑制劑、組蛋白脫乙醯酶抑制劑(HDAC)(諸如HDAC8抑制劑)、血管生成抑制劑、介白素受體抑制劑、含布羅莫結構域及額外末端結構域之家族成員抑制劑(例如布羅莫結構域抑制劑或BET抑制劑,諸如INCB54329及INCB57643)、精胺酸酶抑制劑(INCB001158)、PARP抑制劑(諸如盧卡帕尼或奧拉帕尼)、西曲替尼(sitravatinib)、B-Raf抑制劑-MEK抑制劑組合(諸如恩考芬尼(encorafenib)加尼美替尼(binimetinib)、達拉非尼(dabrafenib)加曲美替尼(trametinib)或考比替尼(cobimetinib)加威羅菲尼(vemurafenib))及腺嘌呤核苷受體拮抗體或其組合。
在一些實施例中,本發明之化合物可與TLR7促效劑(例如咪喹莫特(imiquimod))組合。
本發明之化合物可進一步與其他癌症治療方法,例如化學療法、放射療法、靶向腫瘤之療法、輔助療法、免疫療法或外科手術組合使用。免疫療法之實例包括細胞介素治療(例如干擾素、GM-CSF、G-CSF、IL-2)、CRS-207免疫療法、癌症疫苗、單株抗體、雙特異性或多特異性抗體、抗體藥物結合物、過繼性T細胞轉移、Toll受體促效劑、STING促效劑、RIG-I促效劑、溶瘤病毒療法及免疫調節小分子,包括沙利多邁或JAK1/2抑制劑、PI3Kδ抑制劑及其類似物。化合物可與一或多種抗癌藥物,諸如化學治療劑組合投與。化學治療劑之實例包括以下任一者:阿巴瑞克(abarelix)、阿地白介素(aldesleukin)、阿侖單抗(alemtuzumab)、阿利維A酸(alitretinoin)、別嘌呤醇(allopurinol)、六甲蜜胺(altretamine)、阿那曲唑(anastrozole)、三氧化二砷、天冬醯胺酶、阿紮胞苷(azacitidine)、貝伐單抗、貝沙羅汀(bexarotene)、巴瑞克替尼、博萊黴素(bleomycin)、硼替佐米(bortezomib)、靜脈內用白消安(busulfan intravenous)、口服用白消安(busulfan oral)、二甲睪酮(calusterone)、卡培他濱(capecitabine)、卡鉑(carboplatin)、卡莫司汀(carmustine)、西妥昔單抗、苯丁酸氮芥(chlorambucil)、順鉑(cisplatin)、克拉屈濱(cladribine)、氯法拉濱(clofarabine)、環磷醯胺、阿糖胞苷、達卡巴嗪(dacarbazine)、放線菌素D、達特肝素鈉(dalteparin sodium)、達沙替尼(dasatinib)、道諾黴素(daunorubicin)、地西他濱(decitabine)、地尼白介素(denileukin)、地尼白介素-白喉毒素连接物(denileukin diftitox)、右雷佐生(dexrazoxane)、多西紫杉醇(docetaxel)、多柔比星(doxorubicin)、屈他雄酮丙酸鹽(dromostanolone propionate)、依庫珠單抗(eculizumab)、表柔比星(epirubicin)、埃羅替尼(erlotinib)、雌氮芥(estramustine)、依託泊苷磷酸鹽(etoposide phosphate)、依託泊苷、依西美坦(exemestane)、芬太尼檸檬酸鹽(fentanyl citrate)、非格司亭(filgrastim)、氟尿苷、氟達拉濱(fludarabine)、氟尿嘧啶、氟維司群(fulvestrant)、吉非替尼、吉西他濱(gemcitabine)、吉妥單抗(gemtuzumab ozogamicin)、戈舍瑞林乙酸鹽(goserelin acetate)、組胺瑞林乙酸鹽(histrelin acetate)、替伊莫單抗(ibritumomab tiuxetan)、伊達比星(idarubicin)、異環磷醯胺、伊馬替尼甲磺酸鹽(imatinib mesylate)、干擾素α 2a、伊立替康(irinotecan)、拉帕替尼二甲苯磺酸鹽(lapatinib ditosylate)、來那度胺(lenalidomide)、來曲唑(letrozole)、甲醯四氫葉酸、亮丙瑞林乙酸鹽(leuprolide acetate)、左旋咪唑(levamisole)、洛莫司汀(lomustine)、氮芥(meclorethamine)、甲地孕酮乙酸鹽(megestrol acetate)、美法侖(melphalan)、巰基嘌呤、胺甲喋呤(methotrexate)、甲氧沙林(methoxsalen)、絲裂黴素C、米托坦(mitotane)、米托蒽醌(mitoxantrone)、南諾龍苯丙酸鹽(nandrolone phenpropionate)、奈拉濱(nelarabine)、諾非單抗(nofetumomab)、奧沙利鉑(oxaliplatin)、太平洋紫杉醇(paclitaxel)、帕米膦酸鹽(pamidronate)、帕尼單抗、 培門冬酶(pegaspargase)、聚乙二醇化非格司亭(pegfilgrastim)、培美曲塞二鈉(pemetrexed disodium)、噴司他丁(pentostatin)、哌泊溴烷(pipobroman)、普卡霉素(plicamycin)、丙卡巴肼(procarbazine)、奎納克林(quinacrine)、拉布立酶(rasburicase)、利妥昔單抗(rituximab)、魯索利替尼(ruxolitinib)、索拉非尼、鏈脲黴素(streptozocin)、舒尼替尼、舒尼替尼順丁烯二酸鹽、他莫昔芬(tamoxifen)、替莫唑胺(temozolomide)、替尼泊苷(teniposide)、睪內酯(testolactone)、沙利多邁、硫鳥嘌呤、噻替派(thiotepa)、拓撲替康(topotecan)、托瑞米芬(toremifene)、托西莫單抗(tositumomab)、曲妥珠單抗(trastuzumab)、維A酸、尿嘧啶氮芥、戊柔比星(valrubicin)、長春鹼(vinblastine)、長春新鹼(vincristine)、長春瑞濱(vinorelbine)、 伏立諾他(vorinostat)及唑來膦酸鹽(zoledronate)。
其他抗癌劑包括諸如曲妥珠單抗(Herceptin)之抗體治療劑、針對諸如CTLA-4 (例如伊匹單抗(ipilimumab))、4-1BB (例如烏瑞魯單抗(urelumab)、烏托米單抗(utomilumab))之共刺激分子之抗體、針對PD-1及PD-L1之抗體或針對細胞介素(IL-10、TGF-β等)之抗體。可與本發明之化合物組合用於治療癌症或諸如病毒、細菌、真菌及寄生蟲感染之感染的針對PD-1及/或PD-L1之抗體之實例包括(但不限於)納武單抗(nivolumab)、派姆單抗(pembrolizumab)、阿特珠單抗(atezolizumab)、度伐魯單抗(durvalumab)、阿利庫單抗(avelumab)及SHR-1210。
本發明之化合物可與一或多種免疫檢查點抑制劑組合用於治療諸如癌症或感染之疾病。示例性免疫檢查點抑制劑包括針對諸如以下之免疫檢查點分子之抑制劑:CBL-B、CD27、CD28、CD40、CD122、CD96、CD73、CD47、OX40、GITR、CSF1R、JAK、PI3Kδ、PI3Kγ、TAM、精胺酸酶、CD137 (亦稱4-1BB)、ICOS、A2AR、B7-H3、B7-H4、BTLA、CTLA-4、LAG3、TIM3、TIGIT、CD112R、VISTA、PD-1、PD-L1及PD-L2。在一些實施例中,免疫檢查點分子為選自CD27、CD28、CD40、ICOS、OX40、GITR及CD137之刺激性檢查點分子。在一些實施例中,免疫檢查點分子為選自A2AR、B7-H3、B7-H4、BTLA、CTLA-4、IDO、KIR、LAG3、PD-1、TIM3及VISTA之抑制性檢查點分子。在一些實施例中,本文中提供之化合物可與一或多種選自KIR抑制劑、TIGIT抑制劑、LAIR1抑制劑、CD160抑制劑、2B4抑制劑及TGFRβ抑制劑之藥劑組合使用。
在一些實施例中,免疫檢查點分子之抑制劑為抗PD1抗體、抗PD-L1抗體或抗CTLA-4抗體。
在一些實施例中,免疫檢查點分子之抑制劑為PD-1之抑制劑,例如抗PD-1單株抗體。在一些實施例中,抗PD-1單株抗體為納武單抗、派姆單抗(亦稱MK-3475)、皮利珠單抗(pidilizumab)、SHR-1210、PDR001或AMP-224。在一些實施例中,抗PD-1單株抗體為納武單抗或派姆單抗。在一些實施例中,抗PD1抗體為派姆單抗。
在一些實施例中,免疫檢查點分子之抑制劑為PD-L1之抑制劑,例如抗PD-L1單株抗體。在一些實施例中,抗PD-L1單株抗體為BMS-935559、MEDI4736、MPDL3280A (亦稱RG7446)或MSB0010718C。在一些實施例中,抗PD-L1單株抗體為MPDL3280A或MEDI4736。
在一些實施例中,免疫檢查點分子之抑制劑為CTLA-4之抑制劑,例如抗CTLA-4抗體。在一些實施例中,抗CTLA-4抗體為伊匹單抗或曲美木單抗(tremelimumab)。
在一些實施例中,免疫檢查點分子之抑制劑為LAG3之抑制劑,例如抗LAG3抗體。在一些實施例中,抗LAG3抗體為BMS-986016、LAG525或INCAGN2385。
在一些實施例中,免疫檢查點分子之抑制劑為TIM3之抑制劑,例如抗TIM3抗體。在一些實施例中,抗TIM3抗體為INCAGN2390、MBG453或TSR-022。
在一些實施例中,免疫檢查點分子之抑制劑為GITR之抑制劑,例如抗GITR抗體。在一些實施例中,抗GITR抗體為TRX518、MK-4166、INCAGN1876、MK-1248、AMG228、BMS-986156、GWN323或MEDI1873。
在一些實施例中,免疫檢查點分子之抑制劑為OX40抑制劑,例如抗OX40抗體或OX40L融合蛋白。在一些實施例中,抗OX40抗體為MEDI0562、MOXR-0916、PF-04518600、GSK3174998或BMS-986178。在一些實施例中,OX40L融合蛋白為MEDI6383。
本發明之化合物可進一步與一或多種消炎劑、類固醇、免疫抑制劑或治療性抗體組合使用。
式(I)或如本文所述之任一式之化合物、如申請專利範圍任一項中所敍述及本文所述之化合物或其鹽可與另一免疫原性劑組合,該免疫原性劑諸如癌細胞、經純化之腫瘤抗原(包括重組蛋白、肽及碳水化合物分子)、細胞及經編碼免疫刺激細胞介素之基因轉染之細胞。可使用之腫瘤疫苗之非限制性實例包括黑色素瘤抗原之肽,諸如gp100、MAGE抗原、Trp-2、MARTI及/或酪胺酸酶之肽,或經轉染以表現細胞介素GM-CSF之腫瘤細胞。
式(I)或如本文所述之任一式之化合物、如申請專利範圍任一項中所敍述及本文所述之化合物或其鹽可與用於治療癌症之疫苗接種方案組合使用。在一些實施例中,腫瘤細胞經轉導以表現GM-CSF。在一些實施例中,腫瘤疫苗包括來自與人類癌症有關之病毒(諸如人類乳頭狀瘤病毒(HPV)、肝炎病毒(HBV及HCV)及卡波西氏疱疹肉瘤病毒(KHSV))的蛋白質。在一些實施例中,本發明之化合物可與諸如自腫瘤組織本身分離之熱休克蛋白的腫瘤特異性抗原組合使用。在一些實施例中,式(I)或如本文所述之任一式之化合物、如申請專利範圍任一項中所敍述及本文所述之化合物或其鹽可與活化有效抗腫瘤反應之樹突狀細胞免疫接種組合使用。
本發明之化合物可與使表現Feα或Feγ受體之效應細胞靶向至腫瘤細胞的雙特異性大環肽組合使用。本發明之化合物亦可與活化宿主免疫反應之大環肽組合。
本發明之化合物可與骨髓移植組合用於治療多種造血來源腫瘤。
式(I)或如本文所述之任一式之化合物、如申請專利範圍任一項中所敍述及本文所述之化合物或其鹽可與刺激對病原體、毒素及自體抗原之免疫反應的疫苗組合使用。此治療方法可特別適用之病原體之實例包括當前無有效疫苗之病原體或習知疫苗不完全有效之病原體。此等病原體包括(但不限於) HIV病原體、肝炎(A型、B型及C型)病原體、流感病原體、疱疹病原體、賈第鞭毛蟲屬(Giardia)、瘧疾病原體、利什曼蟲、金黃色葡萄球菌(Staphylococcus aureus)、綠膿桿菌(Pseudomonas Aeruginosa)。
引起本發明之方法可治療之感染的病毒包括(但不限於)人類乳頭狀瘤病毒、流感病毒、A型、B型、C型或D型肝炎病毒、腺病毒、痘病毒、單純疱疹病毒、人類巨細胞病毒、嚴重急性呼吸症候群病毒、埃博拉病毒、麻疹病毒、疱疹病毒(例如VZV、HSV-1、HAV-6、HSV-II及CMV、愛潑斯坦巴爾病毒)、黃病毒、埃可病毒、鼻病毒、柯薩奇病毒、冠狀病毒、呼吸道合胞病毒、腮腺炎病毒、輪狀病毒、麻疹病毒、風疹病毒、細小病毒、牛痘病毒、HTLV病毒、登革熱病毒、乳頭狀瘤病毒、軟疣病毒、脊髓灰質炎病毒、狂犬病病毒、JC病毒及蟲媒病毒性腦炎病毒。
引起本發明之方法可治療之感染的致病細菌包括(但不限於)衣原體屬、立克次氏體細菌、分枝桿菌屬、葡萄球菌屬、鏈球菌屬、肺炎球菌屬、腦膜炎球菌及淋球菌、克雷伯氏桿菌屬、變形桿菌、沙雷氏菌屬、假單胞菌屬、軍團桿菌、白喉桿菌、沙門氏菌、桿菌屬、霍亂菌、破傷風菌、肉毒中毒菌、炭疽菌、瘟疫菌、鉤端螺旋體病菌及萊姆病細菌。
引起本發明之方法可治療之感染的致病真菌包括(但不限於)念珠菌屬(白色念珠菌、克魯斯氏念珠菌、光滑念珠菌、熱帶念珠菌等)、新型隱球菌、麯黴屬(菸麯黴、黑麯黴等)、毛黴菌目(毛黴屬、犁頭黴屬、根黴屬菌)、申克孢子絲菌、皮炎芽生菌、巴西副球孢子菌、粗球孢子菌及莢膜組織胞漿菌。
引起可用本發明之方法治療之感染的致病寄生物包括(但不限於)痢疾內變形蟲、結腸小袋蟲、福勒氏耐格里原蟲、棘阿米巴屬、藍氏賈第鞭毛蟲、隱孢子蟲屬、肺炎肺囊蟲、間日瘧原蟲、果氏巴貝蟲、布氏錐蟲、克氏錐蟲、杜氏利什曼蟲、剛地弓形蟲及巴西鉤蟲。
當向患者投與超過一種藥劑時,其可同時、分開、依序或組合(例如對於超過兩種藥劑)投與。IV. 調配、劑型及投藥
當用作藥物時,本發明之化合物可呈醫藥組合物形式投與。因此,本發明提供一種組合物,其包含式(I)或如本文所述之任一式之化合物、如申請專利範圍任一項中所敍述及本文所述之化合物或其醫藥學上可接受之鹽或其任一實施例,及至少一種醫藥學上可接受之載劑或賦形劑。此等組合物可以製藥領域熟知之方式製備,且可藉由多種途徑投與,此視指示局部還是全身治療及待治療之區域而定。投與可為局部投與(包括經皮、表皮、經眼及黏膜,包括鼻內、陰道及直腸遞送)、肺投與(例如藉由吸入或吹入粉末或氣霧劑,包括藉由噴霧器;氣管內或鼻內)、經口投與或非經腸投與。非經腸投與包括靜脈內、動脈內、皮下、腹膜內、肌肉內投與或注射或輸注;或顱內,例如鞘內或心室內投與。非經腸投與可呈單次推注劑量形式,或可例如藉由連續灌注幫浦。用於局部投與之醫藥組合物及調配物可包括經皮貼片、軟膏、洗劑、乳膏、凝膠、滴劑、栓劑、噴霧、液體及粉劑。習知醫藥載劑、水性、粉末或油性基劑、增稠劑及其類似物可為需要或合乎需要的。
本發明亦包括醫藥組合物,其含有本發明之化合物或其醫藥學上可接受之鹽作為活性成分,以及一或多種醫藥學上可接受之載劑或賦形劑。在一些實施例中,組合物適合於局部投與。在製造本發明之組合物時,活性成分通常與賦形劑混合,由賦形劑稀釋,或裝入此類載劑內,呈例如膠囊、藥囊、紙劑或其他容器形式。當賦形劑充當稀釋劑時,其可為固體、半固體或液體物質,充當活性成分之媒劑、載劑或介質。因此,組合物可呈錠劑、丸劑、粉劑、糖錠、藥囊、扁囊劑、酏劑、懸浮液、乳液、溶液、糖漿、氣霧劑(呈固體形式或於液體介質中)、軟膏(含有例如至多10重量%之活性化合物)、軟及硬明膠膠囊、栓劑、無菌可注射溶液及無菌包裝粉劑之形式。
在製備調配物時,活性化合物在與其他成分組合前可經研磨,以提供適當粒度。若活性化合物基本上不溶,則其可研磨至小於200目之粒度。若活性化合物基本上溶於水,則粒度可藉由研磨來調整以在調配物中實質上均勻分佈,例如約40目。
本發明之化合物可使用已知之研磨程序,諸如濕磨來研磨,以獲得適合於錠劑形成及其他調配物類型之粒度。本發明化合物之細粉狀(奈米顆粒)製劑可藉由本領域中已知之方法製備,參見例如WO 2002/000196。
合適賦形劑之一些實例包括乳糖、葡萄糖、蔗糖、山梨糖醇、甘露醇、澱粉、阿拉伯膠、磷酸鈣、褐藻酸鹽、黃芪膠、明膠、矽酸鈣、微晶纖維素、聚乙烯吡咯啶酮、纖維素、水、糖漿及甲基纖維素。調配物可另外包括:潤滑劑,諸如滑石、硬脂酸鎂及礦物油;潤濕劑;乳化劑及懸浮劑;防腐劑,諸如羥苯甲酸甲酯及羥苯甲酸丙酯;甜味劑;及調味劑。本發明之組合物可經調配以藉由採用本領域中已知之程序,使活性成分在投與患者之後快速、持續或延遲釋放。
在一些實施例中,醫藥組合物包含矽化微晶纖維素(SMCC)及至少一種本文所述之化合物或其醫藥學上可接受之鹽。在一些實施例中,矽化微晶纖維素包含約98%微晶纖維素及約2%二氧化矽w/w。
在一些實施例中,組合物為包含至少一種本文所述之化合物或其醫藥學上可接受之鹽及至少一種醫藥學上可接受之載劑或賦形劑的持續釋放組合物。在一些實施例中,組合物包含至少一種本文所述之化合物或其醫藥學上可接受之鹽及至少一種選自微晶纖維素、乳糖單水合物、羥丙基甲基纖維素及聚氧化乙烯之組分。在一些實施例中,組合物包含至少一種本文所述之化合物或其醫藥學上可接受之鹽及微晶纖維素、乳糖單水合物及羥丙基甲基纖維素。在一些實施例中,組合物包含至少一種本文所述之化合物或其醫藥學上可接受之鹽及微晶纖維素、乳糖單水合物及聚氧化乙烯。在一些實施例中,組合物進一步包含硬脂酸鎂或二氧化矽。在一些實施例中,微晶纖維素為Avicel PH102™。在一些實施例中,乳糖單水合物為Fast-flo 316™。在一些實施例中,羥丙基甲基纖維素為羥丙基甲基纖維素2208 K4M (例如Methocel K4 M Premier™)及/或羥丙基甲基纖維素2208 K100LV (例如Methocel K00LV™)。在一些實施例中,聚氧化乙烯為聚氧化乙烯WSR 1105 (例如Polyox WSR 1105™)。
在一些實施例中,濕式造粒製程用於產生組合物。在一些實施例中,乾式造粒製程用於產生組合物。
組合物可呈單位劑型調配,各劑量含有約5至約1,000 mg (1 g),更通常約100 mg至約500 mg活性成分。在一些實施例中,各劑量含有約10 mg活性成分。在一些實施例中,各劑量含有約50 mg活性成分。在一些實施例中,各劑量含有約25 mg活性成分。術語「單位劑型」係指適合呈單一劑量用於人類個體及其他哺乳動物之物理離散單元,各單元含有經計算以產生所需治療效果之預定量的活性物質以及合適醫藥賦形劑。
用於調配醫藥組合物之組分具有高純度且實質上不含可能有害之污染物(例如至少國家食品級,一般至少分析級,且更通常至少醫藥級)。尤其對於人類食用而言,組合物較佳根據如美國食品與藥物管理局(U.S. Food and Drug Administration)之適用規定中所定義之優良製造規範標準製造或調配。舉例而言,合適調配物可為無菌及/或實質上等滲及/或完全遵守美國食品與藥物管理局之所有優良製造規範規定。
活性化合物可在寬劑量範圍內有效,且一般以治療學上有效量投與。然而,應瞭解,化合物事實上投與之量通常將由醫師根據有關環境來決定,包括待治療之病狀、所選投藥途徑、實際投與之化合物、個別患者之年齡、體重及反應、患者症狀之嚴重程度及其類似因素。
本發明化合物之治療劑量可根據例如特定治療用途、化合物之投與方式、患者之健康及狀況及處方醫師之判斷變化。醫藥組合物中本發明化合物之比例或濃度可視包括劑量、化學特性(例如疏水性)及投藥途徑之許多因素而變化。舉例而言,本發明之化合物可提供於含有約0.1至約10% w/v化合物之水性生理緩衝溶液中以供非經腸投與。一些典型劑量範圍為每日每公斤體重約1 μg至約1 g。在一些實施例中,劑量範圍為每日每公斤體重約0.01 mg至約100 mg。劑量很可能視諸如疾病或病症之類型及進展程度、特定患者之整體健康狀態、所選化合物之相對生物效力、賦形劑之調配及其投藥途徑的變數而定。可自來源於活體外或動物模型測試系統之劑量反應曲線外推有效劑量。
為製備諸如錠劑之固體組合物,將主要活性成分與醫藥賦形劑混合來形成含有本發明化合物之均勻混合物的固體預調配組合物。當稱此等預調配組合物為均質時,活性成分通常均勻分散在組合物中,以便組合物容易再分成同等有效單位劑型,諸如錠劑、丸劑及膠囊。接著此固體預調配劑再分成含有例如約0.1 mg至約1000 mg本發明之活性成分的上述類型之單位劑型。
本發明之錠劑或丸劑可包覆包衣或以另外方式混配,得到提供長期作用之益處的劑型。舉例而言,錠劑或丸劑可包含內部配藥組分及外面配藥組分,後者呈在前者上之包膜形式。兩種組分可由肠溶衣层隔開,該肠溶衣层用於對抗在胃中崩解,且允許內部組分完整進入十二指腸或延遲釋放。多種物質可用於此類肠溶衣层或包衣,此類物質包括許多多元酸及多元酸與諸如蟲膠、鯨蠟醇及乙酸纖維素之混合物。
可併入本發明之化合物及組合物以供經口或藉由注射投與之液體形式包括水溶液、經適當調味之糖漿、水性或油性懸浮液及含食用油(諸如棉籽油、芝麻油、椰子油或花生油)之經調味乳液,以及酏劑及類似醫藥媒劑。
用於吸入或吹入之組合物包括於醫藥學上可接受之水性溶劑或有機溶劑或其混合物中之溶液及懸浮液,以及粉劑。液體或固體組合物可含有如上所述之合適醫藥學上可接受之賦形劑。在一些實施例中,組合物藉由經口或經鼻呼吸途徑投與以實現局部或全身作用。組合物可藉由使用惰性氣體噴霧。噴霧溶液可直接自噴霧裝置呼吸,或噴霧裝置可附接至面罩、帳或間歇性正壓呼吸機。溶液、懸浮液或粉劑組合物可經口或經鼻自以適當方式遞送調配物之裝置投與。
局部調配物可含有一或多種習知載劑。在一些實施例中,軟膏可含有水及一或多種選自例如液體石蠟、聚氧乙烯烷基醚、丙二醇、白凡士林及其類似物之疏水性載劑。乳膏之載劑組合物可基於水與甘油及一或多種其他組分(例如單硬脂酸甘油酯、PEG-單硬脂酸甘油酯及鯨蠟硬脂醇)組合。凝膠可使用異丙醇及水,適當地與諸如甘油、羥乙基纖維素及其類似物之其他組分組合來調配。在一些實施例中,局部調配物含有至少約0.1重量%、至少約0.25重量%、至少約0.5重量%、至少約1重量%、至少約2重量%或至少約5重量%之本發明化合物。局部調配物可例如以100 g適當包裝在管內,管視情況連帶治療例如牛皮癬或其他皮膚病狀之所選適應症之說明書。
化合物或組合物投與患者之量將視所投與之物、投與目的(諸如預防或治療)、患者狀態、投與方式及其類似物而變。在治療應用中,組合物可以足夠治癒或至少部分阻止疾病症狀及其併發症之量投與已罹患疾病之患者。有效劑量將視所治療之疾病病狀以及主治醫師視諸如疾病嚴重程度、患者年齡、體重及整體狀況及其類似因素之因素進行判斷而定。
向患者投與之組合物可呈上述醫藥組合物形式。此等組合物可藉由習知滅菌技術來滅菌,或可無菌過濾。水溶液可經包裝以原樣使用,或凍乾,凍乾製劑在投與前與無菌水性載劑組合。化合物製劑之pH值通常將在3與11之間,更佳5至9且最佳7至8。應瞭解某些上述賦形劑、載劑或穩定劑之使用將形成醫藥鹽。
本發明化合物之治療劑量可根據例如具體治療用途、化合物之投與方式、患者之健康及狀況及處方醫師之判斷變化。醫藥組合物中本發明化合物之比例或濃度可視包括劑量、化學特性(例如疏水性)及投藥途徑之許多因素而變化。舉例而言,本發明之化合物可提供於含有約0.1% w/v至約10% w/v化合物之水性生理緩衝溶液中以供非經腸投與。一些典型劑量範圍為每日每公斤體重約1 μg至約1 g。在一些實施例中,劑量範圍為每日每公斤體重約0.01 mg至約100 mg。劑量很可能視諸如疾病或病症之類型及進展程度、特定患者之整體健康狀態、所選化合物之相對生物效力、賦形劑之調配及其投藥途徑的變數而定。可自來源於活體外或動物模型測試系統之劑量反應曲線外推有效劑量。V. 標記化合物及分析方法
本發明之化合物可進一步用於研究正常及異常組織中之生物過程。因此,本發明之另一態樣係關於本發明之標記化合物(放射性標記、螢光標記等),其不僅可用於成像技術中,且亦可用於活體外與活體內分析中,用於定位及定量包括人類之組織樣品中之PD-1或PD-L1蛋白質,且藉由抑制標記化合物之結合來鑑別PD-L1配位體。因此,本發明包括含有此類標記化合物之PD-1/PD-L1結合分析。
本發明進一步包括本發明之同位素取代化合物。「同位素取代」化合物為其中一或多個原子經原子數相同但原子質量或質量數不同,例如原子質量或質量數不同於在自然界中通常發現(亦即天然存在)之原子質量或質量數之原子置換或取代的本發明化合物。應瞭解「放射性標記」化合物為併入至少一種放射性同位素(例如放射性核素)之化合物。可併入本發明之化合物中的合適放射性核素包括但不限於3
H (氚亦寫成T)、11
C、13
C、14
C、13
N、15
N、15
O、17
O、18
O、18
F、35
S、36
Cl、82
Br、75
Br、76
Br、77
Br、123
I、124
I、125
I及131
I。併入本發明之放射性標記化合物中的放射性核素將視放射性標記化合物之特定應用而定。舉例而言,對於活體外PD-L1蛋白質標記及競爭分析,併入3
H、14
C、82
Br、125
I、131
I、35
S或之化合物一般最為有用。對於放射性成像應用,11
C、18
F、125
I、123
I、124
I、131
I、75
Br、76
Br或77
Br一般最為有用。
在一些實施例中,放射性核素選自由3
H、14
C、125
I、35
S及82
Br組成之群。用於放射性同位素併入有機化合物中之合成方法為本領域中已知。
特定言之,本發明之標記化合物可用於篩選分析中以鑑別及/或評估化合物。舉例而言,可藉由經由追蹤標記,監測在與PD-L1蛋白質接觸時的濃度變化,來評估新合成或鑑別之經標記化合物(亦即測試化合物)結合PD-L1蛋白質之能力。舉例而言,可評估測試化合物(標記)減少已知結合於PD-L1蛋白質之另一化合物(亦即標準化合物)之結合的能力。因此,測試化合物與標準化合物競爭與PD-L1蛋白質結合之能力直接與其結合親合力相關。相反,在一些其他篩選分析中,標準化合物經標記且測試化合物未經標記。因此,監測經標記之標準化合物之濃度,以評估標準化合物與測試化合物之間的競爭,且因此確定測試化合物之相對結合親合力。VI. 套組
本發明亦包括醫藥套組,其可用於例如治療或預防與PD-L1活性,包括其與諸如PD-1及B7-1 (CD80)之其他蛋白質的相互作用相關之疾病或病症,諸如癌症或感染,該等套組包括一或多個含有包含治療有效量之式(I)化合物或其任一實施例之醫藥組合物的容器。此類套組可進一步包括多種習知醫藥套組組件中的一或多種,諸如具有一或多種醫藥學上可接受之載劑的容器、額外容器等,如本領域技術人員顯而易知。套組中亦可包括作為插頁或作為標籤之說明書,其指示組分之投與量、投與準則及/或組分混合準則。
本文中可使用以下縮寫:aq. (水溶液);br (寬峰);d (雙峰);dd (雙二重峰);DCM (二氯甲烷);DMF (N
,N
-二甲基甲醯胺);Et (乙基);EtOAc (乙酸乙酯);g (公克);h (小時);HPLC (高效液相層析法);Hz (赫茲);J (耦合常數);LCMS (液相色譜法-質譜分析法);m (多重峰);M (莫耳濃度);MS (質譜分析法);Me (甲基);MeCN (乙腈);MeOH (甲醇);mg (毫克);min. (分鐘);mL (毫升);mmol (毫莫耳);nM (奈莫耳濃度);NMR (核磁共振譜法);Ph (苯基);r.t. (室溫),s (單峰);t (三重峰或第三);TBS (第三丁基二甲基矽烷基);tert (第三);tt (三重三重峰);TFA (三氟乙酸);THF (四氫呋喃);μg (微克);μL (微升);μM (微莫耳濃度);wt % (重量百分比)。
本發明將經由特定實例更詳細地描述。提供下列實例以達成說明之目的,且不意欲以任何方式限制本發明。本領域技術人員將容易識別多個非關鍵參數,此等參數可變化或修改,得到基本上相同結果。已根據本文所述之至少一種分析,發現實例之化合物抑制PD-1/PD-L1蛋白質/蛋白質相互作用之活性。實例
下文提供本發明化合物之實驗程序。在Waters質量引導之分級分離系統上,對所製備之一些化合物進行開放存取製備型LCMS純化。已在文獻中詳細描述用於操作此等系統之基礎設備設置、方案及控制軟體。參見例如Blom, 「Two-Pump At Column Dilution Configuration for Preparative LC-MS」, K. Blom,J. Combi. Chem
.,2002
,4
, 295-301;Blom等人, 「Optimizing Preparative LC-MS Configurations and Methods for Parallel Synthesis Purification」,J. Combi. Chem
.,2003
,5
, 670-83;及Blom等人, 「Preparative LC-MS Purification: Improved Compound Specific Method Optimization」,J. Combi. Chem
.,2004
,6
, 874-883。實例 1 (R
)-1-((7- 氰基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : 3- 氯 -4- 羥基 -5- 硝基苯甲酸甲酯
在0℃下向3-氯-4-羥基苯甲酸甲酯(Alfa Aesar,#A512389:10.0 g,53.6 mmol)於乙酸(20.0 mL)中之溶液中逐滴添加乙酸(20.0 mL)及硝酸(4.72 mL,112 mmol)之混合物。接著移除冰浴且將稠混合物在室溫下攪拌2小時。接著在0℃下將等體積水添加至反應懸浮液。過濾混合物且用冷水洗滌。獲得黃色固體作為所需產物,不進行進一步純化。LC-MS C8
H7
ClNO5
(M+H)+
之計算值:m/z = 232.0;實驗值232.0。步驟 2 : 3- 胺基 -5- 氯 -4- 羥基苯甲酸甲酯
使3-氯-4-羥基-5-硝基苯甲酸甲酯(2.08 g,8.98 mmol)在氫氣環境壓力下使用鈀/碳(10重量%,0.57 g,0.539 mmol)在乙酸乙酯(15 mL)中氫化1小時。所得懸浮液經Celite墊過濾且用EtOAc洗滌且在減壓下移除溶劑,得到粗產物,其藉由管柱層析法(用MeOH/DCM 0%-10%溶離)來純化。LC-MS C8
H9
ClNO3
(M+H)+
之計算值:m/z = 202.0;實驗值202.0。步驟 3 : 2-(3- 溴 -2- 甲基苯基 )-7- 氯苯并 [d] 噁唑 -5- 甲酸甲酯
將3-胺基-5-氯-4-羥基苯甲酸甲酯(1.04 g,5.16 mmol)、3-溴-2-甲基苯甲醛(AstaTech,#52940:0.98 g,4.92 mmol)於EtOH (25 ml)中之混合物置於小瓶中且在室溫下攪拌1小時。接著濃縮混合物。使殘餘物再溶於二氯甲烷(25 mL)中且添加二氯二氰基醌(1.12 g,4.92 mmol)。將混合物在室溫下攪拌30分鐘。將反應物用二氯甲烷稀釋且用Na2
S2
O3
水溶液及NaHCO3
水溶液洗滌。有機相經MgSO4
乾燥,過濾且濃縮濾液。粗殘餘物未經進一步純化直接使用。LC-MS C16
H12
BrClNO3
(M+H)+
之計算值:m/z = 380.0;實驗值379.9。步驟 4 : (2-(3- 溴 -2- 甲基苯基 )-7- 氯苯并 [d] 噁唑 -5- 基 ) 甲醇
在-78℃下向2-(3-溴-2-甲基苯基)-7-氯苯并[d]噁唑-5-甲酸甲酯(395.0 mg,1.04 mmol)於DCM (10.0 ml)中之溶液中逐滴添加氫化二異丁基鋁之DCM溶液(1.0 M,2.08 ml,2.08 mmol)。使混合物緩慢升溫至0℃。接著將混合物用EtOAc及DCM淬滅,接著用羅氏鹽(Rochell's salt)水溶液淬滅。將混合物在室溫下用力攪拌1小時。分離有機相且經MgSO4
乾燥,接著經短Celite墊過濾以移除固體。濃縮濾液且藉由管柱層析法(用0-5% MeOH/DCM溶離)來純化。LC-MS C15
H12
BrClNO2
(M+H)+
之計算值:m/z = 352.0;實驗值352.0。步驟 5 : (7- 氯 -2-(2- 甲基 -3-(4,4,5,5- 四甲基 -1,3,2- 二氧雜硼雜環戊烷 -2- 基 ) 苯基 ) 苯并 [d] 噁唑 -5- 基 ) 甲醇
將(2-(3-溴-2-甲基苯基)-7-氯苯并[d]噁唑-5-基)甲醇(113 mg,0.322 mmol)、雙(頻哪醇根基)二硼(98 mg,0.386 mmol)、二氯[1,1'-雙(二苯基膦基)二茂鐵]鈀(II)二氯甲烷加合物(26.3 mg,0.032 mmol)及無水乙酸鉀(79 mg,0.804 mmol)於1,4-二噁烷(3.5 mL)中之混合物用氮氣淨化且在110℃下攪拌2小時。將粗物質用DCM稀釋,且接著經Celite過濾。濃縮濾液。殘餘物藉由急驟層析法(用0-40% EtOAc/己烷溶離)來純化。LC-MS C21
H24
BClNO4
(M+H)+
之計算值:m/z = 400.2;實驗值400.2。步驟 6 : 5-( 羥基甲基 )-2-(2- 甲基 -3-(4,4,5,5- 四甲基 -1,3,2- 二氧雜硼雜環戊烷 -2- 基 ) 苯基 ) 苯并 [d] 噁唑 -7- 甲腈
在室溫下將經攪拌之(7-氯-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-5-基)甲醇(1.08 g,2.63 mmol)、氰化鋅(0.253 g,2.11 mmol)及甲烷磺酸根基(2-二第三丁基膦基-2',4',6'-三異丙基-1,1'-聯苯)(2'-胺基-1,1'-聯苯-2-基)鈀(II) (0.171 g,0.211 mmol)於THF (5.27 ml)及水(5.27 ml)中之混合物脫氣且用N2
回填三次。將其在90℃下加熱隔夜。將反應混合物在熱時用THF稀釋。使其冷卻至室溫且過濾以移除不溶固體。濾液真空濃縮。接著添加乙腈。將所得漿狀物過濾且用乙腈洗滌。收集固體且未經進一步純化直接用於下一步。LC-MS C22
H24
BN2
O4
(M+H)+
之計算值:m/z = 391.2;實驗值: 391.2。步驟 7 : 5- 甲醯基 -2-(2- 甲基 -3-(4,4,5,5- 四甲基 -1,3,2- 二氧雜硼雜環戊烷 -2- 基 ) 苯基 ) 苯并 [d] 噁唑 -7- 甲腈
向5-(羥基甲基)-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-7-甲腈(1.51 g,3.68 mmol)於DCM (16.4 mL)及DMF (2.0 ml)中之溶液中添加戴斯-馬丁高碘烷(Dess-Martin periodinane)(2.49 g,5.70 mmol)。將混合物在室溫下攪拌3小時。將粗混合物用飽和Na2
S2
O3
及飽和NaHCO3
淬滅。將混合物用DCM萃取三次。合併有機相,乾燥且過濾。濃縮濾液。將乙醚添加至殘餘物以形成漿狀物,進行過濾,得到所需醛。LCMS C22
H22
BN2
O4
(M+H)+之計算值:m/z = 389.2;實驗值389.2。步驟 8 : 7- 溴 -N-(3- 氯 -2- 甲基苯基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 胺
向7-溴-2-甲基吡啶并[3,2-d]嘧啶-4-醇(Combi-Blocks,目錄號ST-6117:175 mg,0.729 mmol)、氯化苯甲基三乙基銨(332 mg,1.46 mmol)及N,N-二乙基苯胺(174 µl,1.09 mmol)於乙腈(3.6 ml)中之混合物添加磷醯氯(408 µl,4.37 mmol)。將混合物在90℃下攪拌2小時。接著使反應冷卻至室溫。在減壓下移除揮發物。殘餘物直接使用。
向含以上殘餘物之2-丙醇(3.6 ml)添加3-氯-2-甲基苯胺(113 mg,0.800 mmol)及甲烷磺酸(47.2 µl,0.727 mmol)。將混合物在80℃下攪拌2小時。接著使反應冷卻至室溫。混合物藉由NaHCO3
水溶液小心淬滅,用DCM萃取。合併之DCM溶液經MgSO4
乾燥且過濾。濃縮濾液。殘餘物藉由急驟層析法(0-70% EtOAc/己烷)來純化。LC-MS C15
H13
BrClN4
(M+H)+
之計算值:m/z = 363.0;實驗值363.0。步驟 9 : N-(3- 氯 -2- 甲基苯基 )-2- 甲基 -7- 乙烯基吡啶并 [3,2-d] 嘧啶 -4- 胺
將7-溴-N-(3-氯-2-甲基苯基)-2-甲基吡啶并[3,2-d]嘧啶-4-胺(250 mg,0.687 mmol)、4,4,5,5-四甲基-2-乙烯基-1,3,2-二氧雜硼雜環戊烷(159 mg,1.03 mmol)、肆(三苯基膦)鈀(0) (79 mg,0.069 mmol)及磷酸鉀(365 mg,1.72 mmol)於第三丁醇(3.4 ml)及水(3.4 ml)中之混合物用N2
淨化且密封。將所得混合物在100℃下攪拌3小時。反應混合物冷卻,接著用乙酸乙酯萃取。合併之有機層用鹽水洗滌,經MgSO4
乾燥,過濾且在減壓下濃縮。粗殘餘物未經進一步純化直接用於下一步。LC-MS C17
H16
ClN4
(M+H)+
之計算值:m/z = 311.2;實驗值311.2。步驟 10 : 4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 甲醛
向小瓶饋入N-(3-氯-2-甲基苯基)-2-甲基-7-乙烯基吡啶并[3,2-d]嘧啶-4-胺(214 mg,0.689 mmol)、THF (5.5 ml)、攪拌棒及水(1.4 ml)。向此溶液添加過碘酸鈉(736 mg,3.44 mmol),接著添加四氧化鋨(水中4% w/w,270 µl,0.034 mmol)。在室溫下攪拌1小時後將反應用飽和硫代硫酸鈉水溶液淬滅。接著混合物用DCM萃取,且合併之有機層用水、鹽水洗滌,經MgSO4
乾燥,過濾,且真空濃縮。粗殘餘物未經進一步純化直接用於下一步。LC-MS C16
H14
ClN4
O (M+H)+之計算值:m/z = 313.1;實驗值313.1。步驟 11 : (R)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 ) 吡咯啶 -3- 醇
將4-((3-氯-2-甲基苯基)胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-甲醛(215 mg,0.687 mmol)及(R
)-吡咯啶-3-醇(71.9 mg,0.825 mmol)於DCM (4.6 ml)中之混合物在室溫下攪拌30分鐘。接著添加三乙醯氧基硼氫化鈉(219 mg,1.03 mmol)。將混合物在室溫下進一步攪拌1小時。將反應用NH4
OH水溶液淬滅,藉由DCM萃取。將有機相合併且經MgSO4
乾燥。在過濾後,將DCM溶液濃縮且殘餘物藉由急驟層析法(0-12% MeOH/DCM)來純化,得到所需產物。LC-MS C20
H23
ClN5
O (M+H)+
之計算值:m/z = 384.2;實驗值384.2。步驟 12 : (R)-5- 甲醯基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
將(R)-1-((4-((3-氯-2-甲基苯基)胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇(229 mg,0.597 mmol)、5-甲醯基-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-7-甲腈(步驟 7 :
255 mg,0.657 mmol)、氯(2-二環己基膦基-2′,4′,6′-三異丙基-1,1′-聯苯)[2-(2′-胺基-1,1′-聯苯)]鈀(II) (47.0 mg,0.060 mmol)及磷酸鉀(317 mg,1.493 mmol) 於水(1.0 ml)及1,4-二噁烷(5.0 ml)中之混合物用N2
淨化且接著密封。將反應在100℃下攪拌2小時。使反應冷卻至室溫。將反應混合物用DCM及H2
O稀釋。分離各層。將水層用DCM萃取三次。有機層經MgSO4
乾燥,過濾且濃縮,得到粗殘餘物,其未經進一步純化直接用於下一步。LC-MS C36
H32
N7
O3
(M+H)+
之計算值:m/z = 610.3;實驗值610.4。步驟 13 : (R)-1-((7- 氰基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
將(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈(16 mg,0.026 mmol)及哌啶-4-甲酸第三丁酯(9.7 mg,0.052 mmol)於DCM (500 µL)中之混合物在室溫下攪拌2小時。接著添加三乙醯氧基硼氫化鈉(16.7 mg,0.079 mmol)。將混合物進一步在室溫下攪拌1小時。將反應用三氟乙酸(404 µL,5.25 mmol)處理且在室溫下攪拌30分鐘。在蒸發揮發物後,殘餘物在MeOH中稀釋,接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到所需TFA鹽。LC-MS C42
H43
N8
O4
(M+H)+
之計算值:m/z = 723.3;實驗值723.3。1
H NMR (500 MHz, DMSO) δ 9.08 (s, 1H), 8.38 (d,J
= 9.5 Hz, 2H), 8.19 (d,J
= 7.1 Hz, 1H), 8.10 (s, 1H), 7.65 - 7.55 (m, 2H), 7.48 (d,J
= 6.8 Hz, 1H), 7.42 (t,J
= 7.7 Hz, 1H), 7.18 (d,J
= 7.5 Hz, 1H), 4.72 (s, 2H), 4.59 - 4.41 (m, 3H), 3.76 - 3.20 (m, 6H), 3.09 - 2.90 (m, 2H), 2.56 (s, 3H), 2.49 (s, 3H), 2.48 (s, 1H), 2.39 - 2.25 (m, 1H), 2.14 - 2.02 (m, 2H), 1.96 (s, 3H), 1.96 - 1.86 (m, 1H), 1.80 - 1.68 (m, 2H)。實例 2 (R)-1-((7- 氰基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (R)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 醇
本化合物係使用與針對實例 1 步驟 11
所述類似之程序,用(R
)-3-甲基吡咯啶-3-醇代替(R
)-吡咯啶-3-醇製備。LC-MS C21
H25
ClN5
O (M+H)+
之計算值:m/z = 398.2;實驗值398.2。步驟 2 : (R)-5- 甲醯基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 1 步驟 12
所述類似之程序,用(R
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)-3-甲基吡咯啶-3-醇(步驟 1
)代替(R
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇製備。LC-MS C37
H34
N7
O3
(M+H)+
之計算值:m/z = 624.3;實驗值624.3。步驟 3 : (R)-1-((7- 氰基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1 步驟 13
所述類似之程序,用(R
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 2
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H45
N8
O4
(M+H)+
之計算值:m/z = 737.4;實驗值737.4。實例 3 (S)-1-((7- 氰基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (S)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 醇
本化合物係使用與針對實例 1 步驟 11
所述類似之程序,用(S
)-3-甲基吡咯啶-3-醇代替(R
)-吡咯啶-3-醇製備。LC-MS C21
H25
ClN5
O (M+H)+
之計算值:m/z = 398.2;實驗值398.2。步驟 2 : (S)-5- 甲醯基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 1 步驟 12
所述類似之程序,用(S
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)-3-甲基吡咯啶-3-醇(步驟 1
)代替(R
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇製備。LC-MS C37
H34
N7
O3
(M+H)+
之計算值:m/z = 624.3;實驗值624.3。步驟 3 : (S)-1-((7- 氰基 -2-(3'-(7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1 步驟 13
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 2
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H45
N8
O4
(M+H)+
之計算值:m/z = 737.4;實驗值737.4。實例 4 (S)-1-((7- 氰基 -2-(3'-(7-((1- 羥基丙烷 -2- 基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (S)-2-((4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基胺基 ) 丙 -1- 醇
本化合物係使用與針對實例 1 步驟 11
所述類似之程序,用(S)-2-胺基丙-1-醇代替(R
)-吡咯啶-3-醇製備。LC-MS C19
H23
ClN5
O (M+H)+
之計算值:m/z = 372.2;實驗值372.2。步驟 2 : (S)-5- 甲醯基 -2-(3'-(7-((1- 羥基丙烷 -2- 基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 1 步驟 12
所述類似之程序,用(S
)-2-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基胺基)丙-1-醇(步驟 1
)代替(R
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇製備。LC-MS C35
H32
N7
O3
(M+H)+
之計算值:m/z = 598.3;實驗值598.3。步驟 3 : (S)-1-((7- 氰基 -2-(3'-(7-((1- 羥基丙烷 -2- 基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1 步驟 13
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 2
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H43
N8
O4
(M+H)+
之計算值:m/z = 711.3;實驗值711.3。實例 5 (S)-1-((7- 氰基 -2-(3'-(7-((2- 羥基丙基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (S)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基胺基 ) 丙 -2- 醇
本化合物係使用與針對實例 1 步驟 11
所述類似之程序,用(S
)-1-胺基丙-2-醇代替(R
)-吡咯啶-3-醇製備。LC-MS C19
H23
ClN5
O (M+H)+
之計算值:m/z = 372.2;實驗值372.2。步驟 2 : (S)-5- 甲醯基 -2-(3'-(7-((2- 羥基丙基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 1 步驟 12
所述類似之程序,用(S
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基胺基)丙-2-醇(步驟 1
)代替(R
)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇製備。LC-MS C35
H32
N7
O3
(M+H)+
之計算值:m/z = 598.3;實驗值598.3。步驟 3 : (S)-1-((7- 氰基 -2-(3'-(7-((2- 羥基丙基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1 步驟 13
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 2
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H43
N8
O4
(M+H)+
之計算值:m/z = 711.3;實驗值711.3。實例 6 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
將(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈(實例 1 步驟 12 :
16 mg,0.026 mmol)、(R
)-吡咯啶-3-甲酸(6.0 mg,0.052 mmol)及三乙胺(7.3 µL,0.052 mmol)於DCM (500 µL)中之混合物在室溫下攪拌2小時。接著添加三乙醯氧基硼氫化鈉(16.69 mg,0.079 mmol)。將混合物進一步在室溫下攪拌1小時。反應混合物在MeOH中稀釋,接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H41
N8
O4
(M+H)+
之計算值:m/z = 709.3;實驗值709.3。實例 7 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(R
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 2 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H43
N8
O4
(M+H)+
之計算值:m/z = 723.3;實驗值723.3。實例 8 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 3 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H43
N8
O4
(M+H)+
之計算值:m/z = 723.3;實驗值723.3。實例 9 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-1- 羥基丙烷 -2- 基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 4 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C40
H41
N8
O4
(M+H)+
之計算值:m/z = 697.3;實驗值697.3。實例 10 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-2- 羥基丙基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 5 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C40
H41
N8
O4
(M+H)+
之計算值:m/z = 697.3;實驗值697.3。實例 11 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
將(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈(實例 1 步驟 12 :
16 mg,0.026 mmol)、(R
)-3-甲基吡咯啶-3-甲酸(6.8 mg,0.052 mmol)及三乙胺(7.3 µL,0.052 mmol)於DCM (500 µL)中之混合物在室溫下攪拌2小時。接著添加三乙醯氧基硼氫化鈉(16.7 mg,0.079 mmol)。將混合物進一步在室溫下攪拌1小時。反應混合物在MeOH中稀釋,接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H43
N8
O4
(M+H)+
之計算值:m/z = 723.3;實驗值723.3。1
H NMR (600 MHz, DMSO) δ 9.87 (s, 1H), 8.77 (d,J
= 1.7 Hz, 1H), 8.15 (d,J
= 7.3 Hz, 1H), 8.10 (s, 1H), 7.95 (s, 1H), 7.90 - 7.81 (m, 2H), 7.55 (t,J
= 7.7 Hz, 1H), 7.44 (d,J
= 6.9 Hz, 1H), 7.36 (t,J
= 7.8 Hz, 1H), 7.06 (d,J
= 7.3 Hz, 1H), 4.21 (dt,J
= 6.3, 3.6 Hz, 1H), 3.87 - 3.80 (m, 1H), 3.79 - 3.72 (m, 2H), 3.72 - 3.66 (m, 1H), 2.92 (d,J
= 9.1 Hz, 1H), 2.71 (dd,J
= 9.6, 6.1 Hz, 1H), 2.65 (q,J
= 8.0 Hz, 1H), 2.62 - 2.54 (m, 2H), 2.48 - 2.46 (m, 6H), 2.46 - 2.43 (m, 1H), 2.38 (dd,J
= 9.6, 3.5 Hz, 1H), 2.33 - 2.26 (m, 2H), 2.05 - 1.99 (m, 1H), 1.98 (s, 3H), 1.60 - 1.50 (m, 2H), 1.24 (s, 3H)。實例 12 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(R
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 2 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H45
N8
O4
(M+H)+
之計算值:m/z = 737.4;實驗值737.4。實例 13 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 3 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H45
N8
O4
(M+H)+
之計算值:m/z = 737.4;實驗值737.4。實例 14 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-1- 羥基丙烷 -2- 基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 4 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H43
N8
O4
(M+H)+
之計算值:m/z = 711.3;實驗值711.3。實例 15 (R)-1-((7- 氰基 -2-(3'-(7-(((S)-2- 羥基丙基胺基 ) 甲基 )-2- 甲基吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(S
)-5-甲醯基-2-(3'-(7-((2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 5 步驟 2
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H43
N8
O4
(M+H)+
之計算值:m/z = 711.3;實驗值711.3。實例 16 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : 7- 溴 -2-( 二氟甲基 )-4H- 吡啶并 [3,2-d][1,3] 噁嗪 -4- 酮
將3-胺基-5-溴吡啶甲酸(PharmBlock目錄號PB0554:645 mg,2.97 mmol)及2,2-二氟乙酸酐(4.14 g,23.8 mmol)之混合物在60℃下攪拌3小時。在冷卻至室溫後,揮發物藉由旋轉蒸發儀及高真空幫浦移除。殘餘物直接用於下一步。LC-MS C8
H4
BrF2
N2
O2
(M+H)+
之計算值:m/z = 276.9;實驗值277.0。步驟 2 : 7- 溴 -2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 醇
將厚壁玻璃管中7-溴-2-(二氟甲基)-4H-吡啶并[3,2-d][1,3]噁嗪-4-酮(801 mg,2.89 mmol)及氫氧化銨水溶液(8.0 ml,28%)之混合物密封且在85℃下攪拌2小時。在冷卻至室溫後,接著蒸發溶液且將殘餘物用CH3
CN及甲苯再稀釋。懸浮液再次蒸發且殘餘物未經進一步純化即用於下一步 。LC-MS C8
H5
BrF2
N3
O (M+H)+
之計算值:m/z = 276.0;實驗值276.0。步驟 3 : 7- 溴 -N-(3- 氯 -2- 甲基苯基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 胺
向7-溴-2-(二氟甲基)吡啶并[3,2-d]嘧啶-4-醇(來自步驟 2
之粗產物:
750 mg,2.72 mmol)、氯化苯甲基三乙基銨(1238 mg,5.43 mmol)及N,N-二乙基苯胺(648 µl,4.08 mmol)於乙腈(13.6 ml)中之混合物添加磷醯氯(1.52 ml,16.3 mmol)。將混合物在75℃下攪拌2小時。接著使反應冷卻至室溫。在減壓下移除揮發物。
向3-氯-2-甲基苯胺(409 mg,2.89 mmol)及7-溴-4-氯-2-(二氟甲基)吡啶并[3,2-d]嘧啶(以上殘餘物)於2-丙醇(14.4 ml)中之溶液中添加甲烷磺酸(188 µl,2.89 mmol)。將混合物在80℃下攪拌2小時。接著使反應冷卻至室溫。混合物藉由NaHCO3
水溶液小心淬滅。將沈澱過濾,用水洗滌且藉由空氣乾燥。固體直接用於下一步。LC-MS C15
H11
BrClF2
N4
(M+H)+
之計算值:m/z = 399.0;實驗值399.0。步驟 4 : N-(3- 氯 -2- 甲基苯基 )-2-( 二氟甲基 )-7- 乙烯基吡啶并 [3,2-d] 嘧啶 -4- 胺
將7-溴-N-(3-氯-2-甲基苯基)-2-(二氟甲基)吡啶并[3,2-d]嘧啶-4-胺(841 mg,2.10 mmol)、4,4,5,5-四甲基-2-乙烯基-1,3,2-二氧雜硼雜環戊烷(537 µl,3.16 mmol)、肆(三苯基膦)鈀(0) (243 mg,0.21 mmol)及磷酸鉀(1117 mg,5.26 mmol)於第三丁醇(7.0 ml)及水(7.0 ml)中之混合物用N2
淨化且接著在100℃下攪拌3小時。使反應冷卻至室溫。將反應混合物用水稀釋且用DCM萃取。有機層經MgSO4
乾燥,過濾且濃縮,得到粗殘餘物,其藉由急驟層析法(0-30% EtOAc/DCM)來純化。LC-MS C17
H14
ClF2
N4
(M+H)+
之計算值:m/z = 347.1;實驗值347.1。步驟 5 : 4-(3- 氯 -2- 甲基苯基胺基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -7- 甲醛
向小瓶饋入N-(3-氯-2-甲基苯基)-2-(二氟甲基)-7-乙烯基吡啶并[3,2-d]嘧啶-4-胺(195 mg,0.562 mmol)、THF (4.5 ml)、攪拌棒及水(1.1 ml)。向此溶液添加過碘酸鈉(601 mg,2.81 mmol),接著四氧化鋨(水中4% w/w,221 µl,0.028 mmol)。在室溫下攪拌1小時後,將反應用飽和硫代硫酸鈉水溶液淬滅。混合物接著用DCM萃取,且合併之有機層用水、鹽水洗滌,經MgSO4
乾燥,過濾,且真空濃縮。粗殘餘物未經進一步純化直接用於下一步。LC-MS C16
H12
ClF2
N4
O (M+H)+之計算值:m/z = 349.1;實驗值349.1。步驟 6 : (R)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 ) 吡咯啶 -3- 醇
將4-((3-氯-2-甲基苯基)胺基)-2-(二氟甲基)吡啶并[3,2-d]嘧啶-7-甲醛(101 mg,0.290 mmol)及(R
)-吡咯啶-3-醇(30.3 mg,0.348 mmol)於DCM (1931 µl)中之混合物在室溫下攪拌30分鐘。接著添加三乙醯氧基硼氫化鈉(92 mg,0.434 mmol)。將混合物進一步在室溫下攪拌1小時。將反應用NH4
OH水溶液淬滅且藉由DCM萃取。將有機相合併且經MgSO4
乾燥。在過濾後,DCM溶液濃縮成殘餘物,其藉由急驟層析法(0-12% MeOH/DCM)來純化。LC-MS C20
H21
ClF2
N5
O (M+H)+
之計算值:m/z = 420.1;實驗值420.2。步驟 7 : (R)-2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-5- 甲醯基苯并 [d] 噁唑 -7- 甲腈
將(R
)-1-((4-((3-氯-2-甲基苯基)胺基)-2-(二氟甲基)吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇(34.4 mg,0.082 mmol)、5-甲醯基-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-7-甲腈(實例 1 步驟 7 :
35 mg,0.090 mmol)、氯(2-二環己基膦基-2′,4′,6′-三異丙基-1,1′-聯苯)[2-(2′-胺基-1,1′-聯苯)]鈀(II) (6.5 mg,8.2 µmol)及磷酸鉀(43.5 mg,0.205 mmol)於水(140 µl)及1,4-二噁烷(690 µl)中之混合物用N2
淨化且接著密封。將反應在100℃下攪拌2小時。使反應冷卻至室溫。將反應混合物用DCM及H2
O稀釋。分離各層。將水層用DCM萃取三次。有機層經MgSO4
乾燥,過濾且濃縮,得到粗殘餘物,其未經進一步純化直接用於下一步。LC-MS C36
H30
F2
N7
O3
(M+H)+
之計算值:m/z = 646.2;實驗值646.3。步驟 8 : (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
將(R
)-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(9.5 mg,0.015 mmol)及哌啶-4-甲酸第三丁酯(5.45 mg,0.029 mmol)之混合物在室溫下攪拌2小時。接著添加三乙醯氧基硼氫化鈉(9.36 mg,0.044 mmol)。將混合物在室溫下攪拌1小時。接著向混合物添加三氟乙酸(300 µL)且攪拌30分鐘。蒸發揮發物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H41
F2
N8
O4
(M+H)+
之計算值:m/z = 759.3;實驗值759.6。1
H NMR (500 MHz, DMSO) δ 10.63 (s, 1H), 9.13 (s, 1H), 8.52 (d,J
= 2.0 Hz, 1H), 8.39 (d,J
= 1.6 Hz, 1H), 8.19 (dd,J
= 7.9, 1.5 Hz, 1H), 8.11 (d,J
= 2.1 Hz, 1H), 7.64 (dd,J
= 8.1, 1.3 Hz, 1H), 7.59 (t,J
= 7.7 Hz, 1H), 7.49 (dd,J
= 7.5, 1.5 Hz, 1H), 7.41 (t,J
= 7.8 Hz, 1H), 7.16 (dd,J
= 7.6, 1.3 Hz, 1H), 6.74 (t,J
= 54.5 Hz, 1H), 4.85 - 4.65 (m, 2H), 4.58 - 4.40 (m, 3H), 3.74 - 3.00 (m, 8H), 2.78 - 2.54 (m, 1H), 2.50 (s, 3H), 2.32 - 1.91 (m, 5H), 1.95 (s, 3H), 1.79 - 1.67 (m, 1H)。實例 17 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(R
)-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(實例 16 步驟 7
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H39
F2
N8
O4
(M+H)+
之計算值:m/z = 745.3;實驗值745.3。實例 18 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(R
)-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(實例 16 步驟 7
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H41
F2
N8
O4
(M+H)+
之計算值:m/z = 759.3;實驗值759.6。實例 19 (R)-1-((7- 氰基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2-( 三氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (R)-5- 甲醯基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2-( 三氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 16
所述類似程序(步驟 1-7
),在步驟 1
中用三氟乙酸酐代替2,2-二氟乙酸酐製備。LC-MS C36
H29
F3
N7
O3
(M+H)+
之計算值:m/z = 664.2;實驗值664.2。步驟 2 : (R)-1-((7- 氰基 -2-(3'-(7-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-2-( 三氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1 步驟 13
所述類似之程序,用(R)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 1
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H40
F3
N8
O4
(M+H)+
之計算值:m/z = 777.3;實驗值777.3。實例 20 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-2-( 三氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(R)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 19 步驟 1
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H38
F3
N8
O4
(M+H)+
之計算值:m/z = 763.3;實驗值763.3。實例 21 (R)-1-((7- 氰基 -2-(3'-(7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-2-( 三氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(R)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(實例 19 步驟 1
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H40
F3
N8
O4
(M+H)+
之計算值:m/z = 777.3;實驗值777.3。實例 22 (S)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(S)-吡咯啶-3-甲酸代替(R)-吡咯啶-3-甲酸及(R
)-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(實例 16 步驟 7
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H39
F2
N8
O4
(M+H)+
之計算值:m/z = 745.3;實驗值745.3。實例 23 (S)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(S)-3-甲基吡咯啶-3-甲酸代替(R)-吡咯啶-3-甲酸及(R
)-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(實例 16 步驟 7
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H41
F2
N8
O4
(M+H)+
之計算值:m/z = 759.3;實驗值759.3。實例 24 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-4- 甲基哌啶 -4- 甲酸
本化合物係使用與針對實例 16
所述類似之程序,在步驟8中用4-甲基哌啶-4-甲酸第三丁酯代替哌啶-4-甲酸第三丁酯製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H43
F2
N8
O4
(M+H)+
之計算值:m/z = 773.3;實驗值773.3。實例 25 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-N,N- 二甲基哌啶 -4- 甲醯胺
向(R)-1-((7-氰基-2-(3'-((2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸(實例16:7.0 mg,9.22 µmol)、二甲基胺(2.0M甲醇溶液,0.014 ml)及N,N-二異丙基乙胺(5 µl,0.028 mmol)於DMF (0.3 ml)中之溶液中添加HATU (7.0 mg,0.018 mmol)。在室溫下攪拌2小時後,將反應混合物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C44
H46
F2
N9
O3
(M+H)+
之計算值:m/z = 786.4;實驗值786.4。實例 26 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-N- 甲基哌啶 -4- 甲醯胺
本化合物係使用與針對實例 25
所述類似之程序,用甲胺溶液代替二甲胺溶液製備。將反應混合物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H44
F2
N9
O3
(M+H)+
之計算值:m/z = 772.4;實驗值772.3。實例 27 (R)-3-(1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲醯胺基 ) 丙酸
本化合物係使用與針對實例 25
所述類似之程序,用3-胺基丙酸第三丁酯代替二甲胺溶液製備。在形成醯胺鍵後,將反應混合物用三氟乙酸(0.5 mL)處理且在室溫下攪拌1小時。接著將反應混合物濃縮,再溶於MeOH中且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C45
H46
F2
N9
O5
(M+H)+
之計算值:m/z = 830.4;實驗值830.3。實例 28 (R)-1-((7- 氰基 -2-(3'-(2- 環丙基 -7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸 步驟 1 : (R)-2-(3'-(2- 環丙基 -7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-5- 甲醯基苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 16
所述類似程序(步驟 1-7
),在步驟 1
中用環丙烷甲酸酐代替2,2-二氟乙酸酐製備。LC-MS C38
H34
N7
O3
(M+H)+
之計算值:m/z = 636.3;實驗值636.4。步驟 2 : (R)-1-((7- 氰基 -2-(3'-(2- 環丙基 -7-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(R)-2-(3'-(2-環丙基-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)-5-甲醯基苯并[d]噁唑-7-甲腈(步驟 1
)代替(R
)-5-甲醯基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H43
N8
O4
(M+H)+
之計算值:m/z = 735.3;實驗值735.3。實例 29 (R)-1-((2-(3'-(2- 胺基 -7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-7- 氰基苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : N-(7- 溴 -4- 側氧基 -3,4- 二氫吡啶并 [3,2-d] 嘧啶 -2- 基 ) 乙醯胺
將3-胺基-5-溴吡啶甲醯胺(1.88 g,8.70 mmol)及胺基甲醯氯鹽酸鹽(1.30 g,11.31 mmol)於環丁碸(5.44 ml)及二甲基碸(5.44 ml)中之混合物在密封小瓶中在165℃下攪拌5小時。在冷卻至室溫後,將反應用水小心稀釋以形成懸浮液。沈澱藉由過濾收集且用水洗滌。固體在空氣中乾燥且未進行進一步純化直接使用。將以上固體(685 mg,2.84 mmol)及乙酸酐(13.4 ml)之混合物在115℃下攪拌8小時。在冷卻至室溫後,將混合物用DCM稀釋且用水洗滌。有機層經MgSO4
乾燥,過濾且濃縮,得到粗物質,其直接用於下一步。LC-MS C9
H8
BrN4
O2
(M+H)+
之計算值:m/z = 283.0;實驗值283.0。步驟 2 : 7- 溴 -N4
-(3- 氯 -2- 甲基苯基 ) 吡啶并 [3,2-d] 嘧啶 -2,4- 二胺
向N-(7-溴-4-側氧基-3,4-二氫吡啶并[3,2-d]嘧啶-2-基)乙醯胺(201 mg,0.710 mmol)、氯化苯甲基三乙基銨(323 mg,1.420 mmol)及N,N-二乙基苯胺(169 µl,1.065 mmol)於乙腈(3.5 ml)中之混合物添加POCl3
(397 µl,4.26 mmol)。將混合物在75℃下攪拌2小時。接著使反應冷卻至室溫。在減壓下移除揮發物。
向3-氯-2-甲基苯胺(100 mg,0.710 mmol)及N-(7-溴-4-氯吡啶并[3,2-d]嘧啶-2-基)乙醯胺(以上殘餘物)於2-丙醇(3549 µl)中之溶液中添加甲烷磺酸(46.1 µl,0.710 mmol)。將混合物在80℃下攪拌2小時。接著使反應冷卻至室溫。混合物藉由NaHCO3
水溶液小心淬滅。將沈澱過濾,用水洗滌且藉由空氣乾燥。固體直接用於下一步。LC-MS C14
H12
BrClN5
(M+H)+
之計算值:m/z = 364.0;實驗值364.0。步驟 3 : (R)-1-((2- 胺基 -4-(3- 氯 -2- 甲基苯基胺基 ) 吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 ) 吡咯啶 -3- 醇
本化合物係使用與針對實例 16
所述類似程序(步驟 4-6
),在步驟 4
中用7- 溴 -N4
-(3- 氯 -2- 甲基苯基 ) 吡啶并 [3,2-d] 嘧啶 -2,4- 二胺
代替7- 溴 -N-(3- 氯 -2- 甲基苯基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 胺
製備。LC-MS C19
H22
ClN6
O (M+H)+
之計算值:m/z = 385.2;實驗值385.2。步驟 4 : 1-((7- 氰基 -2-(2- 甲基 -3-(4,4,5,5- 四甲基 -1,3,2- 二氧雜硼雜環戊烷 -2- 基 ) 苯基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸第三丁酯
將5-甲醯基-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-7-甲腈(實例1步驟7:684 mg,1.76 mmol)及哌啶-4-甲酸第三丁酯(392 mg,2.11 mmol)於DCM (7.0 ml)中之混合物在室溫下攪拌2小時。接著添加三乙醯氧基硼氫化鈉(560 mg,2.64 mmol)。將混合物進一步在室溫下攪拌1小時。將反應用NH4
OH水溶液淬滅且藉由DCM萃取。將有機相合併且經MgSO4
乾燥。在過濾後,DCM溶液濃縮成殘餘物,其藉由急驟層析法(0-20% EtOAc/己烷)來純化。LC-MS C32
H41
BN3
O5
(M+H)+
之計算值:m/z = 558.3;實驗值558.3。步驟 5 : (R)-1-((2-(3'-(2- 胺基 -7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-7- 氰基苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
將(R)-1-((2-胺基-4-((3-氯-2-甲基苯基)胺基)吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇(33.9 mg,0.088 mmol)、1-((7-氰基-2-(2-甲基-3-(4,4,5,5-四甲基-1,3,2-二氧雜硼雜環戊烷-2-基)苯基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸第三丁酯(54 mg,0.097 mmol)、氯(2-二環己基膦基-2′,4′,6′-三異丙基-1,1′-聯苯)[2-(2′-胺基-1,1′-聯苯)]鈀(II) (6.9 mg,8.8 µmol)及磷酸鉀(46.7 mg,0.22 mmol)於水(150 µl)及1,4-二噁烷(750 µl)中之混合物用N2
淨化且接著在100℃下攪拌3小時。使反應冷卻至室溫。將反應混合物用DCM及H2
O稀釋。分離各層。將水層用DCM萃取三次。有機層合併,經MgSO4
乾燥,過濾且濃縮,得到粗殘餘物。殘餘物溶於DCM (1 mL)中且用三氟乙酸(1.0 mL)處理。在室溫下攪拌30分鐘後,蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C41
H42
N9
O4
(M+H)+
之計算值:m/z = 724.3;實驗值724.4。實例 30 (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : (R)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 醇
本化合物係使用與針對實例 16 步驟 6
所述類似之程序,用(R
)-3-甲基吡咯啶-3-醇代替(R
)-吡咯啶-3-醇製備。LC-MS C21
H23
ClF2
N5
O (M+H)+
之計算值:m/z = 434.2;實驗值434.2。步驟 2 : (R)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 29
所述類似之程序,在步驟5中用(R)-1-((4-(3- 氯 -2- 甲基苯基胺基 )-2-( 二氟甲基 ) 吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 醇
(步驟 1
)代替(R)-1-((2- 胺基 -4-(3- 氯 -2- 甲基苯基胺基 ) 吡啶并 [3,2-d] 嘧啶 -7- 基 ) 甲基 ) 吡咯啶 -3- 醇
製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H43
F2
N8
O4
(M+H)+
之計算值:m/z = 773.3;實驗值773.3。實例 31 (S)-1-((7- 氰基 -2-(3'-(2-( 二氟甲基 )-7-((3- 羥基 -3- 甲基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 30
所述類似之程序,用(S
)-3-甲基吡咯啶-3-醇代替(R
)-3-甲基吡咯啶-3-醇製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H43
F2
N8
O4
(M+H)+
之計算值:m/z = 773.3;實驗值773.3。實例 32 (R)-1-((7- 氰基 -2-(3'-(2-( 羥基甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸 步驟 1 : 7- 溴 -2-( 羥基甲基 ) 吡啶并 [3,2-d] 嘧啶 -4(3H)- 酮
在0℃下向3-胺基-5-溴吡啶甲醯胺(142 mg,0.657 mmol)於THF中之溶液中添加乙酸2-氯-2-側氧基乙酯(90 mg,0.66 mmol)。將混合物在室溫下攪拌直至LCMS顯示反應結束。接著將水緩慢添加至混合物。將沈澱過濾且收集,用少量水及CH3
CN洗滌。在空氣乾燥後,固體直接使用。
將厚玻璃管中以上固體及氫氧化銨(水溶液,28%,1.7 ml,12.04 mmol)之混合物在85℃下攪拌2小時。在冷卻至室溫後,將溶液蒸發且殘餘物用CH3
CN及甲苯再稀釋。懸浮液再次蒸發且殘餘物未經進一步純化即用於下一步。LC-MS C8
H7
BrN3
O2
(M+H)+
之計算值:m/z = 256.0;實驗值256.1。步驟 2 : 7- 溴 -2-(( 第三丁基二甲基矽烷基氧基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4(3H)- 酮
向7-溴-2-(羥基甲基)吡啶并[3,2-d]嘧啶-4(3H)-酮(185 mg,0.722 mmol)及咪唑(73.8 mg,1.084 mmol)於DMF (4817 µl)中之溶液中添加第三丁基二甲基氯矽烷(120 mg,0.795 mmol)。將混合物在室溫下攪拌2小時。接著將混合物濃縮且殘餘物藉由急驟層析法(0-20% EtOAc/己烷)來純化,得到所需產物。LC-MS C14
H21
BrN3
O2
Si (M+H)+
之計算值:m/z = 370.1;實驗值370.1。步驟 3 : 7- 溴 -2-(( 第三丁基二甲基矽烷基氧基 ) 甲基 )-N-(3- 氯 -2- 甲基苯基 ) 吡啶并 [3,2-d] 嘧啶 -4- 胺
在0℃下向7-溴-2-((第三丁基二甲基矽烷基氧基)甲基)吡啶并[3,2-d]嘧啶-4(3H)-酮(201 mg,0.54 mmol)及DIEA (190 µl,1.09 mmol)於DCM (2.2 ml)中之混合物添加甲烷磺醯氯(85 µl,1.09 mmol)。將混合物在室溫下攪拌3小時。接著將3-氯-2-甲基苯胺(100 mg,0.71 mmol)添加至混合物且對應混合物進一步在室溫下攪拌隔夜。將混合物用DCM稀釋且接著用水洗滌。DCM溶液經MgSO4
乾燥且過濾。濾液濃縮。殘餘物藉由急驟層析法(0-40% EtOAc/己烷)來純化。LC-MS C21
H27
BrClN4
OSi (M+H)+
之計算值:m/z = 493.1;實驗值493.1。步驟 4 : (R)-1-((2-(3'-(2-(( 第三丁基二甲基矽烷基氧基 ) 甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-7- 氰基苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
本化合物係使用與針對實例 1
所述類似程序(步驟9-13),用7-溴-2-((第三丁基二甲基矽烷基氧基)甲基)-N-(3-氯-2-甲基苯基)吡啶并[3,2-d]嘧啶-4-胺(步驟 3
)代替7-溴-N-(3-氯-2-甲基苯基)-2-甲基吡啶并[3,2-d]嘧啶-4-胺製備。結束後,反應溶液直接用於下一步。LC-MS C48
H57
N8
O5
Si (M+H)+
之計算值:m/z = 853.4;實驗值853.4。步驟 5 : (R)-1-((7- 氰基 -2-(3'-(2-( 羥基甲基 )-7-((3- 羥基吡咯啶 -1- 基 ) 甲基 ) 吡啶并 [3,2-d] 嘧啶 -4- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 哌啶 -4- 甲酸
在室溫下向以上反應溶液(步驟 4
)添加三乙胺三氫氟酸鹽(411 µl,60當量)。將混合物進一步在此溫度下攪拌1小時。接著將反應混合物濃縮且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H43
N8
O5
(M+H)+
之計算值:m/z = 739.3;實驗值739.5。實例 33 (R)-1-((7- 氰基 -2-(3'-(3-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-6- 甲基 -1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸 步驟 1 : 5- 溴 -N- 第三丁基 -3-(2- 側氧基丙基 ) 吡啶甲醯胺
在-40℃下在N2
氛圍下向二異丙基胺(3.42 ml,24.0 mmol)於THF (10 mL)中之溶液中添加丁基鋰(2.5 M己烷,12.79 ml,32.0 mmol)。將混合物在此溫度下攪拌5分鐘。接著添加5-溴-N-(第三丁基)-3-甲基吡啶甲醯胺(2.71 g,10.0 mmol)於THF (2 mL)中之溶液。將反應在-40℃下攪拌30分鐘,接著升溫至-10℃。接著在-40℃下在攪拌下將以上混合物添加至含乙酸乙酯(1.17 ml,12.0 mmol)之THF (6 mL)。在添加後,反應進一步攪拌且緩慢升溫至-10℃。接著反應藉由添加NH4
Cl水溶液淬滅。混合物接著用DCM萃取三次。有機相合併且經MgSO4
乾燥且過濾。濃縮濾液且殘餘物藉由急驟層析法,使用EtOAc/己烷(0-25%)來純化,得到所需產物。LC-MS C13
H18
BrN2
O2
(M+H)+
之計算值:m/z = 313.1;實驗值313.1。步驟 2 : 3- 溴 -6- 甲基 -1,7- 萘啶 -8- 醇
將5-溴-N-(第三丁基)-3-(2-側氧基丙基)吡啶甲醯胺(716 mg,2.29 mmol)及乙酸銨(1762 mg,22.86 mmol)於乙酸(1.8 ml)中之混合物加熱至108℃且在此溫度下攪拌12小時。使反應冷卻至室溫。添加水,形成沈澱。過濾懸浮液且收集固體以直接使用。LC-MS C9
H8
BrN2
O (M+H)+
之計算值:m/z = 239.0;實驗值239.1。步驟 3 : (R)-1-((8-(3- 氯 -2- 甲基苯基胺基 )-6- 甲基 -1,7- 萘啶 -3- 基 ) 甲基 ) 吡咯啶 -3- 醇
本化合物係使用與針對實例 16
所述類似之程序(步驟 3-6
),用
3-溴-6-甲基-1,7-萘啶-8-醇(步驟 2
)代替7-溴-2-(二氟甲基)吡啶并[3,2-d]嘧啶-4-醇製備。LC-MS C21
H24
ClN4
O (M+H)+
之計算值:m/z = 383.2;實驗值383.3。步驟 4 : (R)-5- 甲醯基 -2-(3'-(3-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-6- 甲基 -1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 1 步驟 12
所述類似之程序,用(R)-1-((8-(3-氯-2-甲基苯基胺基)-6-甲基-1,7-萘啶-3-基)甲基)吡咯啶-3-醇(步驟 3
)代替(R)-1-((4-(3-氯-2-甲基苯基胺基)-2-甲基吡啶并[3,2-d]嘧啶-7-基)甲基)吡咯啶-3-醇製備。LC-MS C37
H33
N6
O3
(M+H)+
之計算值:m/z = 609.3;實驗值609.4。步驟 5 : (R)-1-((7- 氰基 -2-(3'-(3-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-6- 甲基 -1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 ) 吡咯啶 -3- 甲酸
本化合物係使用與針對實例 6
所述類似之程序,用(R)-5-甲醯基-2-(3'-(3-((3-羥基吡咯啶-1-基)甲基)-6-甲基-1,7-萘啶-8-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-7-甲腈(步驟 4
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C42
H42
N7
O4
(M+H)+
之計算值:m/z = 708.3;實驗值708.3。實例 34 (R)-1-((7- 氰基 -2-(3'-(6-( 二氟甲基 )-3-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸 步驟 1 : (R)-2-(3'-(6-( 二氟甲基 )-3-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-5- 甲醯基苯并 [d] 噁唑 -7- 甲腈
本化合物係使用與針對實例 33
所述類似之程序(步驟 1-4
),用2,2-二氟乙酸甲酯代替乙酸乙酯製備。LC-MS C37
H31
F2
N6
O3
(M+H)+
之計算值:m/z = 645.2;實驗值645.2。步驟 2 : (R)-1-((7- 氰基 -2-(3'-(6-( 二氟甲基 )-3-(((R)-3- 羥基吡咯啶 -1- 基 ) 甲基 )-1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 ) 苯并 [d] 噁唑 -5- 基 ) 甲基 )-3- 甲基吡咯啶 -3- 甲酸
本化合物係使用與針對實例 11
所述類似之程序,用(R)-2-(3'-(6-( 二氟甲基 )-3-((3- 羥基吡咯啶 -1- 基 ) 甲基 )-1,7- 萘啶 -8- 基胺基 )-2,2'- 二甲基聯苯 -3- 基 )-5- 甲醯基苯并 [d] 噁唑 -7- 甲腈
(步驟 1
)代替(R
)-5-甲醯基-2-(3'-((7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基)胺基)-2,2'-二甲基-[1,1'-聯苯]-3-基)苯并[d]噁唑-7-甲腈製備。蒸發反應混合物且將殘餘物用MeOH稀釋且接著藉由製備型HPLC (pH = 2,乙腈/水+TFA)來純化,得到呈TFA鹽形式之所需產物。LC-MS C43
H42
F2
N7
O4
(M+H)+
之計算值:m/z = 758.3;實驗值758.3。實例 A. 均相時間 解析 螢光 (HTRF) PD-1/PD-L1 結合分析
分析係在最終體積為20 μL之標準黑色384孔聚苯乙烯盤中進行。抑制劑首先在DMSO中連續稀釋,接著添加至盤孔,接著添加其他反應組分。分析中DMSO之最終濃度為1%。分析在具有0.05% Tween-20及0.1% BSA之PBS緩衝液(pH 7.4)中在25℃下進行。在C端具有His標籤之重組人類PD-L1蛋白質(19-238)購自AcroBiosystems (PD1-H5229)。在C端具有Fc標籤之重組人類PD-1蛋白質(25-167)亦購自AcroBiosystems (PD1-H5257)。PD-L1及PD-1蛋白質在分析緩衝液中稀釋且添加10 μL至盤孔。將盤離心且將蛋白質與抑制劑一起培育40分鐘。在培育後,添加10 μL補充有對Fc具有特異性之經銪穴狀化合物標記之抗人類IgG (PerkinElmer-AD0212)及結合於SureLight®-別藻藍蛋白(APC,PerkinElmer-AD0059H)之抗His抗體的HTRF偵測緩衝液。在離心之後,將盤在25℃下培育60分鐘,接著在PHERAstar FS盤式讀數器(665 nm/620 nm比率)上讀數。分析中之最終濃度為:3 nM PD1,10 nM PD-L1,1 nM銪抗人類IgG及20 nM抗His-別藻藍蛋白。藉由使用GraphPad Prism 5.0軟體,擬合對照活性百分比相對於抑制劑濃度log之曲線,來確定IC50
。實例 B. 含有 Src 同源區 2 結構域之磷酸酶 (SHP) 分析
U2OS/PD-L1細胞(DiscoveRx公司)維持於添加有10% FBS、0.25 μg/ml嘌呤黴素之McCoy’s 5A培養基中。在移除培養基之後,細胞培養基替換為分析培養基(具有1% FBS之RPMI1640培養基)。接著將U2OS/PD-L1細胞於20 μL分析培養基中以每孔5000個細胞添加於384孔黑色透明底分析盤(CELLCOAT®組織培養盤,Greiner Bio-One)。藉由在DMSO中連續稀釋來製備測試化合物且藉由ECHO液體處理機(Labcyte)將125 nL化合物首先轉移至384 REMP盤孔(Thermofisher),接著添加27.5 μL分析培養基。將分析培養基中5 μL/孔化合物轉移至具有0.05% DMSO之細胞盤,最終分析中為0.25 μM。將Jurkat-PD-1-SHP細胞(DiscoveRx公司)在補充有10% FBS、250 μg/ml潮黴素B、500 μg/ml G418之RPMI1640培養基中培養。在用分析培養基替換培養基之後,將20 μL中5,000個Jurkat-PD-1-SHP細胞分配至各孔。將分析盤在37℃、5% CO2
下培育2小時,接著添加2.5 μL PathHunter試劑1 (DiscoveRx公司)至各孔。將分析盤在黑暗中以350 rpm震盪1分鐘,接著添加10 μL PathHunter試劑2 (DiscoveRx公司)。在室溫下培育1小時之後,用TopCount讀數器(Perkin Elmer)記錄化學發光信號。具有DMSO之孔用作陽性對照且不含細胞之孔用作陰性對照。藉由使用GraphPad Prism 6.0軟體,擬合對照活性百分比相對於化合物濃度log之曲線,來確定IC50
。實例 C. 活化 T 細胞核因子 (NFAT) 分析
PD-L1 aAPC/CHO-K1細胞(Promega)維持於添加有10% FBS、200 μg/ml潮黴素B、250 μg/ml遺傳黴素(G418)之F-12培養基中。將Jurkat-PD-1-NFAT效應細胞(Promega)在補充有10% FBS、100 μg/ml潮黴素B、500 μg/ml G418之RPMI 1640培養基中培養。PD-L1 aAPC/CHO-K1細胞之培養基首先替換為分析培養基(具有1% FBS之RPMI1640培養基)。接著將PD-L1 aAPC/CHO-K1細胞於10 μL分析培養基中以每孔8000個細胞添加於白色384孔白色透明底分析盤(CELLCOAT®組織培養盤,Greiner Bio-One)。藉由在DMSO中連續稀釋來製備測試化合物且藉由PlateMate Plus (Thermofisher)將DMSO中0.8 μL測試化合物首先轉移至384 REMP盤孔(Thermofisher),接著添加50 μL塗鋪培養基。將分析培養基中5 μL化合物轉移至具有0.4% DMSO之細胞,最終分析中為2 μM。在移除培養基之後,將5 μL分析培養基中10,000個Jurkat-PD-1-NFAT效應細胞分配至各孔。將分析盤在37℃、5% CO2
下培育24小時。在分析盤平衡至室溫15分鐘後,添加20 μL/孔Bio-Glo™試劑(Promega)。在室溫下培育8分鐘之後,在Pherastar微量盤式讀數器(BMG Labtech)上讀取螢光。基於相對於各分析盤內DMSO孔標準化之發光比率計算誘導倍數(FOI)。基於各化合物之最高FOI與各分析盤內對照化合物之最大FOI的比率,報導最大誘導百分比。具有DMSO之孔用作陰性對照且含具有最高FOI之對照化合物之孔用作陽性對照。藉由使用GraphPad Prism 6.0軟體,擬合對照活性百分比相對於化合物濃度log之曲線,來確定EC50。實例 D. PD-L1 全血內化分析
為測定人類全血中之PD-L1內化,將正常人類血液(Biological Specialty公司, Colmar. PA)於96孔「2 ml分析阻斷液」(Corning, Corning NY)中在37℃下在一系列濃度之測試化合物及1 ng/ml人類干擾素γ (R&D Systems公司 Minn. MN)存在或不存在下培育18-20小時。接著在黑暗中在室溫下將血液與PD-L1 (MIH1, eBioscience;或BD Biosciences San Jose, CA)、CD14 (Life Technologies, Carlsbad, CA)一起染色30分鐘。將全血/紅細胞在37℃下在黑暗中溶解/固定(溶解緩衝液,BD Biosciences) 5分鐘且接著在1600 RPM下離心5分鐘。使細胞再懸浮於染色緩衝液(BD Bioscience, San Jose, CA)中且轉移至96孔圓底盤(Corning)中。基於CD14+ (BD Biosciences)對細胞進行閘控,且藉由平均螢光強度(MFI) (BD LSRFortessa™ X-20)測定PD-L1表現。藉由使用GraphPad Prism 7.0軟體,擬合化合物抑制百分比相對於化合物濃度log之曲線,來確定IC50
。實例 E. 在大鼠、猴及犬中之活體內藥物動力學
對於活體內藥物動力學實驗,經靜脈內或經由口腔管飼法將測試化合物投與雄性史泊格多利大鼠(Sprague Dawley rat)、雄性米格魯犬(beagle dog)或雌性及雄性食蟹獼猴(Cynomolgus monkey)。對於IV給藥,使用10%二甲基乙醯胺(DMAC)於酸化鹽水中之調配物以0.5至1 mg/kg給與測試化合物,大鼠經由IV推注,且犬及猴分別為5分鐘或10分鐘IV輸注。對於經口給與,使用含0.5%甲基纖維素之檸檬酸鹽緩衝液(pH 3.5)中5% DMAC以1.0至3.0 mg/kg給與測試化合物。在給藥前及給藥後多個時間點直至24小時,收集血液樣品。使用EDTA作為抗凝劑,收集所有血液樣品,且進行離心,獲得血漿樣品。藉由LC-MS法測定測試化合物之血漿濃度。藉由標準非房室方法,使用Phoenix®
WinNonlin軟體程式(7.0版,Pharsight公司),所量測之血漿濃度用於計算PK參數。
在大鼠及猴中,進行至多六種測試化合物之盒式給藥,以獲得初步PK參數。實例 F. 結果
在HTRF PD-1/PD-L1結合分析(實例A)、SHP分析(實例B)、NFAT分析(實例C)及全血內化分析(實例D)每一者中評定如實例1-34中所例示之本發明之化合物。展示各分析中觀察到之數值範圍的截止值。針對所測試化合物獲得之結果顯示於表1中。 表 1
除本文所述之外,本領域之技術人員自以上描述將顯而易見本發明之多種修改。此類修改亦意欲在隨附申請專利範圍之範疇內。本申請案中引用之各參考文獻,包括不限於所有專利、專利申請案及公開案,均以引用之方式整體併入本文中。
Claims (41)
- 一種式(I’)化合物,(I’) 或其醫藥學上可接受之鹽或立體異構體,其中: 環A為氮雜環丁烷基、吡咯啶基或哌啶基; X1 為CH或N; R1 為甲基或鹵基; R2 為C1-4 烷基、C1-4 烷氧基、C1-4 鹵基烷基、C1-4 鹵基烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、OH、NH2 、-NH-C1-4 烷基、-N(C1-4 烷基)2 、4至6員雜環烷基或4至6員雜環烷基-C1-2 烷基-,其中該4至6員雜環烷基及4至6員雜環烷基-C1-2 烷基-各具有一或兩個選自O及N之雜原子作為環原子,且其中R2 之該C1-4 烷基、C1-4 烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、-NH-C1-4 烷基、-N(C1-4 烷基)2 、4至6員雜環烷基及4至6員雜環烷基-C1-2 烷基-各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代; R3 係選自(R)-3-羥基-3-甲基吡咯啶-1-基、(S)-3-羥基-3-甲基吡咯啶-1-基、(R)-3-羥基吡咯啶-1-基、(S)-3-羥基吡咯啶-1-基、(R)-2-羥基-2-甲基-乙基胺基、(S)-2-羥基-2-甲基-乙基胺基、(R)-2-羥基-1-甲基-乙基胺基及(S)-2-羥基-1-甲基-乙基胺基;且 R4 為H或C1-3 烷基;且 R5 為C(O)OH、C(O)N(CH3 )2 、C(O)NH(CH3 )或C(O)NH(CH2 )2 C(O)OH。
- 一種式(I)化合物,(I) 或其醫藥學上可接受之鹽或立體異構體,其中: 環A為氮雜環丁烷基、吡咯啶基或哌啶基; X1 為CH或N; R1 為甲基或鹵基; R2 為C1-4 烷基、C1-4 烷氧基、C1-4 鹵基烷基、C1-4 鹵基烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、OH、NH2 、-NH-C1-4 烷基、-N(C1-4 烷基)2 、4至6員雜環烷基或4至6員雜環烷基-C1-2 烷基-,其中該4至6員雜環烷基及4至6員雜環烷基-C1-2 烷基-各具有一或兩個選自O及N之雜原子作為環原子,且其中R2 之該C1-4 烷基、C1-4 烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、-NH-C1-4 烷基、-N(C1-4 烷基)2 、4至6員雜環烷基及4至6員雜環烷基-C1-2 烷基-各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代; R3 係選自(R)-3-羥基-3-甲基吡咯啶-1-基、(S)-3-羥基-3-甲基吡咯啶-1-基、(R)-3-羥基吡咯啶-1-基、(S)-3-羥基吡咯啶-1-基、(R)-2-羥基-2-甲基-乙基胺基、(S)-2-羥基-2-甲基-乙基胺基、(R)-2-羥基-1-甲基-乙基胺基及(S)-2-羥基-1-甲基-乙基胺基;且 R4 為H或C1-3 烷基。
- 如申請專利範圍第1 項或第2 項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中環A為吡咯啶基。
- 如申請專利範圍第1 項或第2 項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中環A為哌啶基。
- 如申請專利範圍第1 項至第7 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中X1 為N。
- 如申請專利範圍第1 項至第7 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中X1 為CH。
- 如申請專利範圍第1 項至第9 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R1 為CH3 或Cl。
- 如申請專利範圍第1 項至第9 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R1 為CH3 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為C1-4 烷基、C1-4 烷氧基、C1-4 鹵基烷基、C1-4 鹵基烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、OH、NH2 、-NH-C1-4 烷基、-N(C1-4 烷基)2 、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2 之該C1-4 烷基、C1-4 烷氧基、C3-6 環烷基、C3-6 環烷基-C1-2 烷基-、-NH-C1-4 烷基、-N(C1-4 烷基)2 、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自鹵基、CN及OH之取代基取代。
- 如申請專利範圍第12 項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為甲基、乙基、異丙基、甲氧基、乙氧基、CF3 、CHF2 、CFH2 、OCF3 、OCHF2 、OCH2 F、環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、OH、NH2 、NHCH3 、N(CH3 )2 、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基或哌啶-1-基甲基,其中R2 之該甲基、乙基、異丙基、甲氧基、乙氧基、環丙基、環丁基、環己基、環丙基甲基、環丁基甲基、環己基甲基、NHCH3 、N(CH3 )2 、1-氮雜環丁烷基、氮雜環丁烷-1-基甲基、1-吡咯啶基、吡咯啶-1-基甲基、1-哌啶基及哌啶-1-基甲基各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為C1-4 烷基或C1-4 鹵基烷基,其各視情況經1個或2個獨立地選自F、Cl、Br、CN及OH之取代基取代。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為C1-4 烷基或C1-4 鹵基烷基。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CH3 、CF3 、CHF2 、CH(CH3 )2 、NH2 、環丙基或CH2 OH。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CH3 、CF3 、CHF2 或CH(CH3 )2 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CH3 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CF3 或CHF2 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CH(CH3 )2 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為NH2 。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為環丙基。
- 如申請專利範圍第1 項至第11 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R2 為CH2 OH。
- 如申請專利範圍第1 項至第23 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R3 為(R)-3-羥基-3-甲基吡咯啶-1-基或(S)-3-羥基-3-甲基吡咯啶-1-基。
- 如申請專利範圍第1 項至第23 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R3 為(R)-3-羥基吡咯啶-1-基或(S)-3-羥基吡咯啶-1-基。
- 如申請專利範圍第1 項至第23 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R3 為(R)-2-羥基-2-甲基-乙基胺基或(S)-2-羥基-2-甲基-乙基胺基。
- 如申請專利範圍第1 項至第23 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R3 為(R)-2-羥基-1-甲基-乙基胺基或(S)-2-羥基-1-甲基-乙基胺基。
- 如申請專利範圍第1 項至第27 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R4 為H或CH3 。
- 如申請專利範圍第1 項至第27 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R4 為H。
- 如申請專利範圍第1 項至第27 項中任一項之化合物,或其醫藥學上可接受之鹽或立體異構體,其中R4 為CH3 。
- 如申請專利範圍第1 項之化合物,其中該化合物係選自: (R )-1-((7-氰基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (S)-1-((7-氰基-2-(3'-(7-((3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (S)-1-((7-氰基-2-(3'-(7-((1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (S)-1-((7-氰基-2-(3'-(7-((2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-3-羥基-3-甲基吡咯啶-1-基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-1-羥基丙烷-2-基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((S)-2-羥基丙基胺基)甲基)-2-甲基吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-(((R)-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-(((R)-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(7-((3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;及 (R)-1-((7-氰基-2-(3'-(7-(((R)-3-羥基吡咯啶-1-基)甲基)-2-(三氟甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸, 或其醫藥學上可接受之鹽或立體異構體。
- 如申請專利範圍第1 項之化合物,其中該化合物係選自: (S)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-(((R)-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (S)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-(((R)-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-4-甲基哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-N,N-二甲基哌啶-4-甲醯胺; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-N-甲基哌啶-4-甲醯胺; (R)-3-(1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲醯胺基)丙酸; (R)-1-((7-氰基-2-(3'-(2-環丙基-7-(((R)-3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸; (R)-1-((2-(3'-(2-胺基-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)-7-氰基苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基-3-甲基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (S)-1-((7-氰基-2-(3'-(2-(二氟甲基)-7-((3-羥基-3-甲基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(2-(羥基甲基)-7-((3-羥基吡咯啶-1-基)甲基)吡啶并[3,2-d]嘧啶-4-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)哌啶-4-甲酸; (R)-1-((7-氰基-2-(3'-(3-(((R)-3-羥基吡咯啶-1-基)甲基)-6-甲基-1,7-萘啶-8-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)吡咯啶-3-甲酸;及 (R)-1-((7-氰基-2-(3'-(6-(二氟甲基)-3-(((R)-3-羥基吡咯啶-1-基)甲基)-1,7-萘啶-8-基胺基)-2,2'-二甲基聯苯-3-基)苯并[d]噁唑-5-基)甲基)-3-甲基吡咯啶-3-甲酸, 或其醫藥學上可接受之鹽或立體異構體。
- 一種醫藥組合物,其包含如申請專利範圍第1 項至第36 項中任一項之化合物或其醫藥學上可接受之鹽或立體異構體及醫藥學上可接受之賦形劑或載劑。
- 一種抑制PD-1/PD-L1相互作用之方法,該方法包括向患者投與如申請專利範圍第1 項至第36 項中任一項之化合物或其醫藥學上可接受之鹽或立體異構體。
- 一種治療與PD-1/PD-L1相互作用之抑制相關之疾病或病症的方法,該方法包括向有需要之患者投與治療有效量之如申請專利範圍第1 項至第36 項中任一項之化合物或其醫藥學上可接受之鹽或立體異構體。
- 如申請專利範圍第39 項之方法,其中該疾病或病症為感染性疾病、發炎、自體免疫性疾病、癌症或神經變性病症。
- 刺激及/或增加患者中之免疫反應之方法,該方法包括向有需要之患者投與治療有效量之如申請專利範圍第1 項至第36 項中任一項之化合物或其醫藥學上可接受之鹽或立體異構體。
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