WO2021093795A1 - 一种rock抑制剂及其制备方法和用途 - Google Patents
一种rock抑制剂及其制备方法和用途 Download PDFInfo
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- WO2021093795A1 WO2021093795A1 PCT/CN2020/128244 CN2020128244W WO2021093795A1 WO 2021093795 A1 WO2021093795 A1 WO 2021093795A1 CN 2020128244 W CN2020128244 W CN 2020128244W WO 2021093795 A1 WO2021093795 A1 WO 2021093795A1
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- A61K31/41—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having five-membered rings with two or more ring hetero atoms, at least one of which being nitrogen, e.g. tetrazole
- A61K31/415—1,2-Diazoles
- A61K31/4155—1,2-Diazoles non condensed and containing further heterocyclic 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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- A61K31/5375—1,4-Oxazines, e.g. morpholine
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- C07D401/02—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing two hetero rings
- C07D401/04—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom containing two hetero rings directly linked by a ring-member-to-ring-member bond
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- C07D401/00—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, at least one ring being a six-membered ring with only one nitrogen atom
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- C07D405/00—Heterocyclic compounds containing both one or more hetero rings having oxygen atoms as the only ring hetero atoms, and one or more rings having nitrogen as the only ring hetero atom
- C07D405/14—Heterocyclic compounds containing both one or more hetero rings having oxygen atoms as the only ring hetero atoms, and one or more rings having nitrogen as the only ring hetero atom containing three or more hetero rings
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- C07D513/04—Ortho-condensed systems
Definitions
- the present invention relates to the field of medicine, in particular to a compound capable of inhibiting ROCK activity and its preparation method and application.
- Idiopathic interstitial pulmonary fibrosis is a chronic and diffuse pulmonary interstitial disease with unexplained changes in common interstitial pneumonia, and its histopathology and imaging mostly show For the performance of ordinary interstitial pneumonia. Due to its complex pathogenesis, irreversible progression of the disease, early diagnosis is difficult; after diagnosis, the survival rate of patients has decreased significantly over time, with a 3-year survival rate of 50% and a 5-year survival rate of only 20%, which is higher than that of most cancers (such as : Leukemia, breast cancer, colon cancer, uterine tumor, kidney cancer, etc.) have low survival rates and are called "cancers that are not cancer.” At present, there is no definite and significantly effective therapeutic drug for IPF.
- cancers such as : Leukemia, breast cancer, colon cancer, uterine tumor, kidney cancer, etc.
- drugs such as pirfenidone and nintedanib can be used as appropriate, and nintedanib is only recommended for IPF patients with mild to moderate pulmonary dysfunction
- drugs such as pirfenidone and nintedanib can be used as appropriate, and nintedanib is only recommended for IPF patients with mild to moderate pulmonary dysfunction
- IPF patients with severe pulmonary dysfunction can benefit from treatment with nintedanib, and the course of medications need to be further explored.
- Rho GTPase Rho GTPase
- Rho GTPases currently found in mammalian tissue cells mainly include Rho (A, B, C), Rac (1, 2, 3), Cdc42 (Cdc42Hs/G25K, TC10, Tcl), Rho D, Rho G, Chp(1, 2), Rnd(Rho E/Rnd3, Rnd1/Rho6, Rnd2/Rho7), Rho H/TTF, Rif, Wrch1 and Rho BTB(1, 2), where Rho(A, B, C ) Is one of the most important members of Rho GTPase.
- ROCK Rho-associated protein kinase
- Rho-associated kinase Rho-associated kinase
- ROCK1 ROK ⁇ , p160-ROCK
- ROCK2 ROK ⁇ subtypes.
- the amino acid sequence identity of the two subtypes is 65%, and there is a high degree of similarity in the kinase domain (92% identity).
- ROCK is distributed throughout the body. In comparison, ROCK1 has higher expression in non-neural tissues (blood, small intestine, thymus, etc.), while ROCK2 has higher expression in brain, heart, and colon.
- ROCK is involved in a variety of cardiovascular and cerebrovascular diseases, including hypertension, atherosclerosis, ischemic stroke, heart disease, diabetic nephropathy, eye diseases, tumors, nerve damage diseases, radiation damage and autoimmune diseases, etc. .
- the Rho/ROCK signaling pathway participates in the activation of NAD(P)H oxidase, induces oxidative stress, induces cardiac microvascular damage and C-reactive protein-induced atherosclerotic thrombosis; high glucose can activate the Rho/ROCK pathway and induce visceral fat
- the expression of procollagen and type I procollagen in cardioblasts can cause cardioblasts to proliferate and induce diabetic cardiomyopathy; activation of Rho/ROCK signaling pathway can regulate NF- ⁇ B signaling pathway, up-regulate inflammatory genes and induce diabetic nephropathy; Rho The /ROCK signaling pathway changes the permeability of the biomembrane and affects the metastasis of cancer cells; when spinal cord
- Rho/ROCK signaling pathway is also involved in the occurrence and development of fibrotic diseases. Activation of the Rho/ROCK signaling pathway can increase the level of ischemic myocardial fibrosis, and the expression of Rho and ROCK in the heart tissue of acute myocardial fibrosis rats is significantly increased. Activation of the Rho/ROCK signaling pathway can induce phosphorylation of actin and trigger cell fibrosis.
- the results of in vivo and in vitro experiments have proved that the physiological and pathological damages of the heart and lung caused by exposure to radiation for a period of time are related to the fibrosis induced by the Rho/ROCK pathway.
- endothelial adhesion fibronectin and focal adhesion are related to actin skeleton reorganization and stress fiber formation induced by activation of the Rho/ROCK signaling pathway.
- the lung injury of IPF mainly targets alveolar epithelial cells (ACEs).
- ACEs alveolar epithelial cells
- the death of ACEs triggers the wound healing response, including innate immune activation, vascular leakage and extravascular coagulation, fibroblast recruitment, proliferation and activation, extracellular matrix synthesis and Cross-linking, alveolar collapse and epithelial cell regeneration.
- ROCK signal can fundamentally regulate the activities of these cells involved in the healing response, especially epithelial cells, endothelial cells and fibroblasts.
- the key role of ROCK in these reactions further suggests the potential of ROCK inhibitors in the treatment of pulmonary fibrosis.
- ROCK inhibitory pathway to treat many diseases including fibrosis on the market.
- the development of new agents requires careful optimization of the chemical and biological properties of lead compounds. Further, the compound must have the desired pharmacokinetic and pharmacodynamic characteristics. This arduous development process usually requires extensive testing. In many cases, the process of determining the optimal compound often requires the preparation of thousands of structurally similar compounds. Therefore, the improvement of ROCK kinase inhibitors and the development of new framework compounds with ROCK1 and/or ROCK2 kinase inhibitory effects are of positive significance for the treatment of the aforementioned diseases.
- the present invention provides compounds represented by the following formula (I), their racemates, stereoisomers, tautomers, isotopic labels, nitrogen oxides, solvates, Polymorphs, metabolites, esters, pharmaceutically acceptable salts or prodrugs:
- W and V are independently C or N;
- Y is a chemical bond, or unsubstituted or optionally substituted with one, two or more R y groups as follows: (C 1 -C 20 ) aliphatic hydrocarbon group, optionally containing one, two or more hetero Atomic (C 1 -C 20 ) aliphatic hydrocarbon group;
- Ring A is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5- 20-membered heteroaryl;
- Ring B is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5- 20-membered heteroaryl;
- Ring C is unsubstituted or optionally substituted with one, two or more R c groups as follows: C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5- 20-membered heteroaryl;
- Ring D is unsubstituted or optionally substituted with one, two or more R d as follows: C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5- 20-membered heteroaryl;
- R 11 and R 12 are each independently selected from H, or unsubstituted or optionally substituted with one, two or more R groups as follows: C(O)R 14 , (C 1 -C 20 ) fat Hydrocarbyl group, optionally containing one, two or more heteroatoms (C 1 -C 20 ) aliphatic hydrocarbon group, C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5-20 membered heteroaryl; alternatively, R 11 and R 12 together with the nitrogen atom to which they are attached form a 3-20 membered heterocyclic group that is unsubstituted or optionally substituted with one, two or more R or 5-20 membered heteroaryl group;
- R 13 is selected from H, OH, CN, or unsubstituted or optionally substituted with one, two or more R (C 1 -C 20 ) aliphatic hydrocarbon groups or optionally contains one, two or more A heteroatom (C 1 -C 20 ) aliphatic hydrocarbon group;
- R 14 is selected from H, OH, halogen, or unsubstituted or optionally substituted with one, two or more R groups as follows: (C 1 -C 20 ) aliphatic hydrocarbon group, optionally including one, two (C 1 -C 20 ) aliphatic hydrocarbon group with one or more heteroatoms , C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5-20 membered heteroaryl group;
- R 15 is selected from H, or unsubstituted or optionally substituted with one, two or more R groups as follows: (C 1 -C 20 ) aliphatic hydrocarbon group, optionally including one, two or more A heteroatom (C 1 -C 20 ) aliphatic hydrocarbon group, C 3-20 alicyclic hydrocarbon group, 3-20 membered heterocyclic group, C 6-20 aryl group or 5-20 membered heteroaryl group;
- the heteroatom may be selected from sulfur, nitrogen, oxygen, phosphorus and silicon, optionally ,
- the heteroatom is inserted into the aliphatic hydrocarbon group, optionally a CC bond and a CH bond; for example, the "(C 1 -C 20 ) aliphatic hydrocarbon group optionally containing one, two or more heteroatoms” can be selected from (C 1 -C 20 ) aliphatic hydrocarbon group oxy group, (C 1 -C 20 ) aliphatic hydrocarbon group mercapto group, (C 1 -C 12 ) aliphatic hydrocarbon group oxy group, (C 1 -C 12 ) aliphatic hydrocarbon group mercapto group, (C 1- C 6 ) aliphatic hydrocarbon group oxy group, (C 1 -C 6 ) aliphatic hydrocarbon group mercapto group, (C 1 -C 6 )
- the (C 1 -C 20 ) aliphatic hydrocarbon group may be selected from (C 1 -C 20 )alkyl, (C 2 -C 20 )alkenyl, (C 2 -C 20 )alkynyl, and further, selected from ( C 1 -C 12 )alkyl, (C 2 -C 12 )alkenyl, (C 2 -C 12 )alkynyl, in some embodiments, can be selected from (C 1 -C 6 )alkyl, (C 2- C 6 )alkenyl, (C 2 -C 6 )alkynyl; for example, selected from methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, tert-butyl, n-pentyl Group, isopentyl, neopentyl, n-hexyl, vinyl, propenyl, butenyl, pentenyl
- halogen is selected from F, Cl, Br, I;
- W and V are each independently C or N;
- Y is a chemical bond, or unsubstituted or optionally substituted with one, two or more R y groups as follows: (C 1 -C 12 ) aliphatic hydrocarbon group, optionally containing one, two or more hetero Atomic (C 1 -C 12 ) aliphatic hydrocarbon group;
- Ring A is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5- 14-membered heteroaryl;
- Ring B is unsubstituted or optionally substituted by one, two or more R ab as follows: C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5- 14-membered heteroaryl;
- Ring C is unsubstituted or optionally substituted by one, two or more R c groups as follows: C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5- 14-membered heteroaryl;
- Ring D is unsubstituted or optionally substituted with one, two or more R d as follows: C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5- 14-membered heteroaryl;
- R 11 and R 12 are each independently selected from H, or unsubstituted or optionally substituted with one, two or more R groups as follows: -C(O)R 14 , (C 1 -C 12 ) Aliphatic hydrocarbon group, (C 1 -C 12 ) aliphatic hydrocarbon group optionally containing one, two or more heteroatoms , C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group Or a 5-14 membered heteroaryl group; or, R 11 and R 12 together with the nitrogen atom to which they are attached form an unsubstituted or optionally substituted 3-12 membered heterocyclic group with one, two or more R Or 5-14 membered heteroaryl;
- R 13 is selected from H, OH, CN, or unsubstituted or optionally substituted with one, two or more R (C 1 -C 12 ) aliphatic hydrocarbon groups or optionally contains one, two or more A heteroatom (C 1 -C 12 ) aliphatic hydrocarbon group;
- R 14 is selected from H, OH, halogen, or unsubstituted or optionally substituted with one, two or more R groups as follows: (C 1 -C 12 ) aliphatic hydrocarbon group, optionally including one, two (C 1 -C 12 ) aliphatic hydrocarbon group with one or more heteroatoms , C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5-14 membered heteroaryl group;
- R 15 is selected from H, or unsubstituted or optionally substituted by one, two or more of the following groups: (C 1 -C 12 ) aliphatic hydrocarbon group, optionally including one, two or more A heteroatom (C 1 -C 12 ) aliphatic hydrocarbon group, C 3-12 alicyclic hydrocarbon group, 3-12 membered heterocyclic group, C 6-14 aryl group or 5-14 membered heteroaryl group;
- the heteroatom may be selected from sulfur, nitrogen, oxygen, phosphorus and silicon, optionally ,
- the heteroatom is inserted into the aliphatic hydrocarbon group, optionally CC bond and CH bond; for example, it can be selected from (C 1 -C 12 ) aliphatic hydrocarbon group oxy group, (C 1 -C 12 ) aliphatic hydrocarbon group mercapto group, (C 1 -C 6 ) Aliphatic hydrocarbon group oxy group, (C 1 -C 6 ) aliphatic hydrocarbon group mercapto group, (C 1 -C 6 ) aliphatic hydrocarbon group oxy group (C 1 -C 6 ) aliphatic hydrocarbon group, (C 1 -C 6 ) aliphatic hydrocarbon group mercapto group (C 1 -C 6) 1 -C 6 ) aliphatic hydrocarbon group, (C 1 -C 12 ) aliphatic hydrocarbon group mercapto group (C 1 -C 6) 1 -C
- the (C 1 -C 12 ) aliphatic hydrocarbon group may be selected from (C 1 -C 12 )alkyl, (C 2 -C 12 )alkenyl, (C 2 -C 12 )alkynyl, and in some embodiments, Can be selected from (C 1 -C 6 )alkyl, (C 2 -C 6 )alkenyl, (C 2 -C 6 )alkynyl;
- halogen is selected from F, Cl, Br, I;
- W and V are independently C or N;
- Y is a chemical bond, or unsubstituted or optionally substituted with one, two or more R y groups as follows: (C 1 -C 6 ) aliphatic hydrocarbon group, optionally containing one, two or more hetero Atomic (C 1 -C 6 ) aliphatic hydrocarbon group;
- Ring A is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring B is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring C is unsubstituted or optionally substituted with one, two or more R c groups as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring D is unsubstituted or optionally substituted with one, two or more R d as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- R 11 and R 12 are each independently selected from H, or unsubstituted or optionally substituted with one, two or more R groups as follows: C(O)R 14 , (C 1 -C 6 ) fat Hydrocarbyl group, optionally containing one, two or more heteroatoms (C 1 -C 6 ) aliphatic hydrocarbon group, C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5-10 membered heteroaryl; or, R 11 and R 12 together with the nitrogen atom to which they are attached form a 3-7 membered heterocyclic group that is unsubstituted or optionally substituted with one, two or more R or 5-10 membered heteroaryl;
- R 13 is selected from H, OH, CN, or unsubstituted or optionally substituted by one, two or more R (C 1 -C 6 ) aliphatic hydrocarbon groups or optionally contains one, two or more A heteroatom (C 1 -C 6 ) aliphatic hydrocarbon group;
- R 14 is selected from H, OH, halogen, or unsubstituted or optionally substituted with one, two or more R groups as follows: (C 1 -C 6 ) aliphatic hydrocarbon group, optionally including one, two (C 1 -C 6 ) aliphatic hydrocarbon group with one or more heteroatoms , C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5-10 membered heteroaryl group;
- R 15 is selected from H, or unsubstituted or optionally substituted with one, two or more R groups as follows: (C 1 -C 6 ) aliphatic hydrocarbon group, optionally including one, two or more A heteroatom (C 1 -C 6 ) aliphatic hydrocarbon group, C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5-10 membered heteroaryl group;
- W and V are independently C or N;
- Y can be selected from the following groups unsubstituted or optionally substituted with one, two or more R y : methylene, ethylene, propylene, -OCH 2 -, -CH 2 O-,- SCH 2 -, -CH 2 S-;
- Ring A is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring B is unsubstituted or optionally substituted with one, two or more R ab as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring C is unsubstituted or optionally substituted with one, two or more R c groups as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Ring D is unsubstituted or optionally substituted with one, two or more R d as follows: C 3-7 alicyclic hydrocarbon group, 3-7 membered heterocyclic group, C 6-10 aryl group or 5- 10-membered heteroaryl;
- Each R x can be independently selected from H, halogen, CN, OH, SH, COOH, methyl, ethyl, propyl, butyl, pentyl, hexyl, vinyl, propenyl, butenyl, pentene Base, hexenyl, ethynyl, propynyl, butynyl, pentynyl, hexynyl, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, methoxy, ethoxy, propoxy Group, butoxy, pentyloxy, hexyloxy, -O(CH 2 ) n O(CH 2 ) m CH 3 , -S(CH 2 ) n S(CH 2 ) m CH 3 , -CF 3 , -CHF 2 , -CH 2 F, -CH 2 CF 3 , -CH 2 CHF 2 , -
- R x , R y , R ab , R c , and R d may be further substituted by one, two or more R; the R has the definition in any one of the above embodiments;
- the R x can be independently selected from H, F, Cl, Br, I, CN, OH, SH, COOH, methyl, ethyl, n-propyl, isopropyl, n-butyl, isobutyl, tert Butyl, n-pentyl, isopentyl, neopentyl, n-hexyl, vinyl, 1-propenyl, 2-propenyl, 1-methylvinyl, 1-butenyl, 1-ethylvinyl , 1-methyl-2-propenyl, 2-butenyl, 3-butenyl, 2-methyl-1-propenyl, 2-methyl-2-propenyl, 1-pentenyl, 1 -Hexenyl, ethynyl, 1-propynyl, 2-propynyl, 1-butynyl, 2-butynyl, 1-isobutynyl, 1-isopentynyl, 2-isopentynyl
- the group In, W and V are not N at the same time;
- the group where ring A and ring B are independently selected from phenyl, C 5-6 alicyclic hydrocarbon group, 5-6 membered heterocyclic group or 5-6 membered heteroaryl group; preferably, at least one of ring A and ring B is Aryl or heteroaryl, or a combination of A and B to form an aryl or heteroaryl;
- Group; or ring A and ring B are combined to form an aryl group or a heteroaryl group;
- ring B is selected from a nitrogen-containing 5-6 membered heterocyclic group or a 5-6 membered heteroaryl group, and is connected to the X group through a N atom present on the ring.
- the group is selected from unsubstituted or optionally substituted with one, two or more R ab:
- * and ** represent the The positions connected to ring D and X respectively.
- * represents the position connected to ring D, and ** represents the position connected to X;
- * represents the position connected to X, and ** represents the position connected to ring D;
- ring C and ring D are each independently selected from the following groups that are unsubstituted or optionally substituted with one, two or more R c /R d : phenyl, thienyl, furyl, Pyrrolyl, oxazolyl, thiazolyl, imidazolyl, pyrazolyl, isoxazolyl, isothiazolyl, oxadiazolyl, triazolyl, thiadiazolyl, thio-4H-pyrazolyl, benzo Furyl, benzothienyl, benzoxazolyl, benzisoxazolyl, benzimidazolyl, benzotriazolyl, indazolyl, indolyl, isoindolyl, pyridyl, pyridazine Group, pyrimidinyl, pyrazinyl, triazinyl, quinolinyl, quinazolinyl, isoquino
- ring C is independently selected from the following structures:
- ring D is independently selected from the following structures:
- W and V are independently C or N; and W and V are not N at the same time;
- X 1 , X 2 , X 3 , X 4 , X 5 , X 6 , X 7 and X 8 are each independently a chemical bond, C, S, O or N;
- the condition is that at most one of X 1 , X 2 , X 3 and X 4 is a chemical bond, and at most one of X 5 , X 6 , X 7 and X 8 is a chemical bond;
- * and ** represent the positions where the group is connected to ring D and X, for example, * represents the position connected to ring D, then ** represents the position connected to X; * represents the position connected to X, Then ** represents the position connected to ring D;
- the dashed ring shown in the structure represents that the two atoms connected in the ring structure can be a single bond (that is, the dashed part corresponding to the connected ring atoms is no bond) or a double bond (that is, the dashed part corresponding to the connected ring atoms is a single bond) .
- W, V, Rab , X, Y, ring C, and ring D have the same definitions as in any embodiment of the general formula (I) above, and m and n are selected from integers from 0 to 7, for example, selected from 0, 1, 2, 3, 4.
- the compound represented by formula (I) is a compound of formula (II) below:
- W and V are independently C or N;
- X 1 , X 2 , X 3 , X 4 , X 5 , X 6 , X 7 and X 8 are each independently a chemical bond, C, S, O or N;
- the condition is that at most one of X 1 , X 2 , X 3 and X 4 is a chemical bond, and at most one of X 5 , X 6 , X 7 and X 8 is a chemical bond;
- W, V, Rab , X, Y, ring C, and ring D have the definitions as defined in any one of the technical solutions of the general formula (I) above, and m and n are selected from integers from 0 to 7, for example, from 0, 1, 2, 3, 4.
- X and It is connected by the N atom present in the ring.
- the group middle Can be selected from the following structures:
- the group middle Can be selected from the following structures:
- the compound represented by formula (I), its racemate, stereoisomer, tautomer, isotope label, nitrogen oxide, solvate, polymorph Among the metabolites, esters, pharmaceutically acceptable salts or prodrugs, the compound of formula (I) can be selected from the following structures:
- the present invention also provides a preparation method of the compound represented by formula (I) (comprising formula (II), including at least one of the following schemes:
- Compound I-2 can optionally further derivatize R x 'on the amide nitrogen to obtain compound I-3;
- R x ' is selected from R x or after the derivatization reaction step (a2) can be The group converted into R x ;
- L 1 is selected from halogen, and the halogen can be selected from F, Cl, Br, I;
- group Q1 is an isocyanate group or -N(R x ')-reactive formate group ;
- Compound I-SM3 is a boronic acid ester containing ring D group;
- Compound 1-2 can optionally further derivatize R x 'on the amide nitrogen to obtain compound 1-3;
- R x ' is selected from R x or after the derivatization reaction step (b2) can be The group converted into R x ;
- L 1 is selected from halogen, and the halogen can be selected from F, Cl, Br, I;
- group Q2 is an active formate group;
- compound I-SM3 is a group containing ring D Borate
- Compound I-2 can optionally further derivatize R x 'on the amide nitrogen to obtain compound I-3;
- R x ' is selected from R x or after the derivatization reaction step (c2) can be The group converted into R x ;
- L 1 is selected from halogen, and the halogen can be selected from F, Cl, Br, I;
- compound I-SM3 is a borate containing ring D group;
- Scheme 1-1 Specific examples of Scheme 1 may include Scheme 1-1:
- Compound I-2-1 can optionally be further derivatized with amide nitrogen to obtain compound I-3;
- the A, B, C, D, W, V, Y, and R x have the definitions in formula (I) described above, and R x is not H;
- L 1 is selected from halogen, and the halogen may Selected from F, Cl, Br, I;
- compound I-SM3 is a boronic acid ester containing ring D group;
- Compound I-2 can optionally further derivatize R x 'on the amide nitrogen to obtain compound I-3;
- the ring A, B, C, D, W, V, Y, R x are selected from the above-mentioned formula (I) as defined above, R x 'is selected from R x or undergoes a derivatization reaction step (a2 ") A group that can be converted into R x ; L 1 is selected from halogen, and the halogen can be selected from F, Cl, Br, I; compound I-SM3 is a borate ester containing a ring D group;
- the used leaving group and amino protecting group can be groups commonly used in the art, for example, the leaving group can be selected from halogen (for example, I or Cl), Wait.
- the group containing phenol or alcohol is easy to leave.
- each step can be conventional operations and conditions in the art.
- steps a1), a1'), a1”), b1) or c1) can be conventional operations and conditions in the art
- the base used is an inorganic base or an organic base, for example, selected from triethylamine (TEA) , Potassium carbonate, isopropylamine, diisopropylethylamine (DIEA), pyridine, lithium carbonate, cesium carbonate, potassium tert-butoxide, sodium tert-butoxide, 1,8-diazabicycloundec-7- At least one of alkene, sodium methoxide, sodium ethoxide, potassium phosphate, potassium hydrogen phosphate, potassium dihydrogen phosphate, sodium hydrogen carbonate, and potassium hydrogen carbonate.
- TAA triethylamine
- DIEA diisopropylethylamine
- pyridine lithium carbonate
- cesium carbonate cesium carbonate
- a1), a1'), a1”), b1) or c1) can preferably be reacted in the presence of a solvent, which is preferably an aprotic organic solvent, such as tetrahydrofuran (THF), acetonitrile One or more of, DMF, dichloromethane, n-hexane, ethyl acetate, diethyl ether, methyl tert-butyl ether, toluene, chloroform, cyclohexane, dioxane or acetone.
- a solvent which is preferably an aprotic organic solvent, such as tetrahydrofuran (THF), acetonitrile
- THF tetrahydrofuran
- acetonitrile One or more of, DMF, dichloromethane, n-hexane, ethyl acetate, diethyl ether, methyl tert-butyl ether, to
- steps a2), a2'), a2"), b2) or c2) can be conventional operations and conditions in the art.
- alkylation reaction, acylation reaction, etc. may preferably exist in a solvent
- the solvent is preferably an organic solvent, such as methanol, ethanol, isopropanol, tert-butanol, toluene, chloroform, cyclohexane, tetrahydrofuran (THF), dichloromethane, acetonitrile, DMF, n-hexane, acetic acid
- organic solvent such as methanol, ethanol, isopropanol, tert-butanol, toluene, chloroform, cyclohexane, tetrahydrofuran (THF), dichloromethane, acetonitrile, DMF, n-hexane, acetic acid
- the coupling reaction in steps a3), a3'), a3"), b3) or c3) can be conventional operations and conditions in the art, preferably in the presence of a solvent.
- the solvents such as methanol, ethanol, isopropanol, tert-butanol, toluene, chloroform, cyclohexane, tetrahydrofuran (THF), acetonitrile, DMF, dichloromethane, n-hexane, ethyl acetate, diethyl ether, methyl tert-butyl
- ether, acetone, dioxane, DMF, and water preferably dioxane or a mixed solution of DMF and water.
- the coupling reaction in steps a3), a3'), a3"), b3) or c3) can be carried out in the presence of a catalyst and a base
- the catalyst includes widely used pd-containing catalysts , Such as Pd(OAc)2 and ligand XPhos, tetrakistriphenylphosphine palladium (ie Pd(PPh3)4), or 1,1'-bis(diphenylphosphino) ferrocene dichloride palladium (ie At least one of Pd(dppf)Cl2), etc., for example, in the presence of K3PO4, Pd(OAc)2 and XPhos.
- the base may be a conventional base in the art, including inorganic bases or organic bases, for example, Selected from triethylamine (TEA), potassium carbonate, isopropylamine, diisopropylethylamine (DIEA), pyridine, increased lithium carbonate, cesium carbonate, potassium tert-butoxide, sodium tert-butoxide, 1,8-diazide Heterobicycloundec-7-ene, sodium methoxide, sodium ethoxide, sodium fluoride, potassium fluoride, cesium fluoride, potassium phosphate, potassium hydrogen phosphate, potassium dihydrogen phosphate, sodium bicarbonate, potassium bicarbonate At least one.
- TAA triethylamine
- DIEA diisopropylethylamine
- pyridine increased lithium carbonate, cesium carbonate, potassium tert-butoxide, sodium tert-butoxide, 1,8-diazide Heterobicycloundec-7-en
- the compound represented by formula (I), its racemates, stereoisomers, tautomers, and nitrogen oxides can be used as raw materials or intermediates to prepare the compound represented by formula (I) Compounds, racemates, stereoisomers, tautomers, prodrugs or pharmaceutically acceptable salts of nitrogen oxides.
- the present invention also provides compounds represented by formula (I), their racemates, stereoisomers, tautomers, and nitrogen oxides in the preparation of compounds represented by formula (I), their racemates , Stereoisomers, tautomers, prodrugs of nitrogen oxides or pharmaceutically acceptable salts.
- the present invention also provides compounds represented by formula (I), their racemates, stereoisomers, tautomers, nitrogen oxides, isotope markers, solvates, polymorphs, metabolites, esters, At least one of the pharmaceutically acceptable salt or prodrug is used in the preparation of a medicine, which is an inhibitor of protein kinase.
- the drug has the function of regulating Rho-kinase.
- the drug can be used to prevent or treat one or more diseases caused by high expression of ROCK or excessive activation of ROCK, such as cardiovascular and cerebrovascular diseases, neurological diseases, fibrotic diseases, eye diseases, tumors, arterial thrombosis, Radiation injury, respiratory diseases, and autoimmune diseases, including atherosclerosis, acute coronary syndrome, hypertension, cerebral vasospasm, cerebral ischemia, ischemic stroke, restenosis, heart disease, heart Failure, myocardial hypertrophy, myocardial ischemia-reperfusion injury, diabetes, diabetic nephropathy, cancer, neuronal degeneration (peripheral or central), nerve injury disease, spinal cord injury, erectile dysfunction, platelet aggregation, white blood cell aggregation, glaucoma, Ocular hypertension, asthma, osteoporosis, pulmonary fibrosis (such as idiopathic pulmonary fibrosis), liver fibrosis, renal fibro
- the present invention also provides a pharmaceutical composition
- a pharmaceutical composition comprising a therapeutically effective amount of a compound represented by formula (I), its racemates, stereoisomers, tautomers, nitrogen oxides, isotope labels, and solvents At least one of compounds, polymorphs, metabolites, esters, pharmaceutically acceptable salts or prodrugs.
- the pharmaceutical composition may also optionally include pharmaceutically acceptable excipients, such as carriers and excipients.
- the auxiliary material may be at least one selected from the group consisting of disintegrants, glidants, lubricants, diluents or fillers, binders, and colorants.
- the pharmaceutical composition of the present invention has the function of regulating Rho-kinase.
- the pharmaceutical composition can be used to prevent or treat one or more diseases caused by high expression of ROCK or excessive activation of ROCK, such as cardiovascular and cerebrovascular diseases, neurological diseases, fibrotic diseases, eye diseases, tumors, arterial thrombosis Diseases, radiation damage, respiratory diseases, and autoimmune diseases, including atherosclerosis, acute coronary syndrome, hypertension, cerebral vasospasm, cerebral ischemia, ischemic stroke, restenosis, heart disease , Heart failure, myocardial hypertrophy, myocardial ischemia-reperfusion injury, diabetes, diabetic nephropathy, cancer, neuronal degeneration (peripheral or central), nerve injury disease, spinal cord injury, erectile dysfunction, platelet aggregation, white blood cell aggregation, Glaucoma, ocular hypertension, asthma, osteoporosis, pulmonary fibrosis (such as idiopathic pulmonary fibrosis), liver
- the present invention also provides a method for regulating the function of Rho-kinase, which comprises administering to an individual in need an effective amount of the compound represented by formula (I), its racemate, stereoisomer, and tautomer Body, nitrogen oxide, isotope label, solvate, polymorph, metabolite, ester, pharmaceutically acceptable salt or prodrug, or the pharmaceutical composition.
- the method can be used to prevent or treat one or more diseases caused by high expression of ROCK or excessive activation of ROCK.
- the present invention also provides a method for preventing or treating one or more diseases caused by high expression of ROCK or excessive activation of ROCK, comprising administering an effective amount of the compound represented by formula (I) to an individual in need , Its racemates, stereoisomers, tautomers, nitrogen oxides, isotope markers, solvates, polymorphs, metabolites, esters, pharmaceutically acceptable salts or prodrugs or said Pharmaceutical composition.
- the diseases such as cardiovascular and cerebrovascular diseases, nervous system diseases, fibrotic diseases, eye diseases, tumors, arterial thrombosis, radiation injury, respiratory system diseases, and autoimmune diseases, including atherosclerosis, acute coronary artery disease Syndrome, hypertension, cerebral vasospasm, cerebral ischemia, ischemic stroke, restenosis, heart disease, heart failure, myocardial hypertrophy, myocardial ischemia reperfusion injury, diabetes, diabetic nephropathy, cancer, neuronal degeneration ( Peripheral or central), nerve injury disease, spinal cord injury, erectile dysfunction, platelet aggregation, white blood cell aggregation, glaucoma, ocular hypertension, asthma, osteoporosis, pulmonary fibrosis (such as idiopathic pulmonary fibrosis) ), liver fibrosis, renal fibrosis, COPD, renal dialysis (epithelial stability), glomerulosclerosis, and neuronal degeneration and inflammation.
- a compound of formula (I) for use in modulating Rho-kinase function comprising administering an effective amount of one or more compounds of the present invention to an individual in need thereof, or comprising the compound Pharmaceutical composition.
- a compound of formula (I) for use in preventing or treating one or more diseases caused by high expression of ROCK or excessive activation of ROCK, comprising administering an effective amount to an individual in need
- the compound represented by the formula (I) its racemates, stereoisomers, tautomers, nitrogen oxides, isotope markers, solvates, polymorphs, metabolites, esters, pharmaceuticals Above acceptable salt or prodrug or said pharmaceutical composition.
- the diseases such as cardiovascular and cerebrovascular diseases, nervous system diseases, fibrotic diseases, eye diseases, tumors, arterial thrombosis, radiation injury, respiratory system diseases, and autoimmune diseases, including atherosclerosis, acute coronary artery disease Syndrome, hypertension, cerebral vasospasm, cerebral ischemia, ischemic stroke, restenosis, heart disease, heart failure, myocardial hypertrophy, myocardial ischemia reperfusion injury, diabetes, diabetic nephropathy, cancer, neuronal degeneration ( Peripheral or central), nerve injury disease, spinal cord injury, erectile dysfunction, platelet aggregation, white blood cell aggregation, glaucoma, ocular hypertension, asthma, osteoporosis, pulmonary fibrosis (such as idiopathic pulmonary fibrosis) ), liver fibrosis, renal fibrosis, COPD, renal dialysis (epithelial stability), glomerulosclerosis, and neuronal degeneration and inflammation.
- halogen refers to F, Cl, Br, and I. In other words, F, Cl, Br, and I can be described as “halogen" in this specification.
- aliphatic hydrocarbon group includes saturated or unsaturated, linear or branched chain hydrocarbon groups.
- the type of the aliphatic hydrocarbon group can be selected from alkyl, alkenyl, alkynyl, etc., and the number of carbon atoms of the aliphatic hydrocarbon group can be 1-20, preferably 1-12, can also be 1-10, and a further preferred range is 1-6.
- the (C 1 -C 12 ) aliphatic hydrocarbon group may be selected from (C 1 -C 12 )alkyl, (C 2 -C 12 )alkenyl, (C 2 -C 12 )alkynyl, and in some embodiments Among them, it can be selected from (C 1 -C 6 )alkyl, (C 2 -C 6 )alkenyl, and (C 2 -C 6 )alkynyl.
- the "aliphatic hydrocarbon group” may optionally include one, two or more heteroatoms (or construed as optional heteroatoms inserted into the aliphatic hydrocarbon group, optionally CC bonds and CH bonds).
- Suitable heteroatoms are obvious to those skilled in the art and include, for example, sulfur, nitrogen, oxygen, phosphorus, and silicon.
- the heteroatom-containing aliphatic hydrocarbon group can be selected from the following groups: (C 1 -C 12 ) aliphatic hydrocarbon group, (C 1 -C 12 ) aliphatic hydrocarbon group mercapto group, (C 1 -C 6 ) aliphatic hydrocarbon group oxygen Group, (C 1 -C 6 )aliphatic hydrocarbyl mercapto group, (C 1 -C 6 )aliphatic hydrocarbyloxy group (C 1 -C 6 )aliphatic hydrocarbyl group, (C 1 -C 6 )aliphatic hydrocarbyl mercapto group (C 1 -C 6) ) Aliphatic hydrocarbon group, (C 1 -C 6 ) aliphatic hydrocarbon group oxy group (C 1 -C 6 ) aliphatic hydrocarbon group oxy group, (C 1 -C 6 ) aliphatic hydrocarbon group mercapto group (C 1 -C 6 ) aliphatic hydrocarbon group mercapto
- C 3-20 alicyclic hydrocarbon group should be understood as a cyclic hydrocarbon group with aliphatic properties, containing a closed carbocyclic ring in the molecule, which can represent a saturated or partially unsaturated monocyclic, bicyclic or polycyclic hydrocarbon ring, also Including bridged rings or spiro rings.
- the alicyclic hydrocarbon group contains two or more carbon rings, they can be connected in a variety of ways: two rings in the molecule can share one carbon atom. This system is called a spiro ring.
- the alicyclic hydrocarbon group may have 3-20 carbon atoms, preferably "C 3-12 alicyclic hydrocarbon group", or "C 3-7 alicyclic hydrocarbon group", which may have 3, 4, 5, 6, 7 , 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20 carbon atoms.
- the alicyclic hydrocarbon group can be "cycloalkyl", “cycloalkenyl”, “cycloalkynyl”, etc.
- the carbon number can be selected from any integer between 3-20 above
- the alicyclic hydrocarbon group can be a single Cycloalkyl groups such as cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, cycloheptyl, cyclooctyl, cyclononyl or cyclodecyl, or bicyclic hydrocarbon groups such as decalin ring.
- C 3-7 cycloalkyl should be understood to mean a saturated monovalent monocyclic or bicyclic hydrocarbon ring, which may be a spiro ring or a bridged ring, which has 3, 4, 5, 6 or 7 carbon atoms.
- the C 3-7 cycloalkyl group may be, for example, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl, bicyclo[1.1.0]butyl, spiropentyl, spiro[2.3]hexyl, bicyclo[ 1.1.1]Pentyl, bicyclo[2.1.0]pentyl, bicyclo[2.1.1]hexyl or bicyclo[3.1.0]hexyl.
- 3-20 membered heterocyclic group means a saturated or partially unsaturated monovalent monocyclic, bicyclic, or polycyclic hydrocarbon ring, and also includes a bridged ring or a spiro ring, which contains 1-5 independently selected from N, Heteroatoms of O, B, P, Si and S.
- the "3-20 membered heterocyclic group” may be, for example, “3-12 membered heterocyclic group", “3-7 membered heterocyclic group” or "5-6 membered heterocyclic group”.
- 3-12 membered heterocyclic group means a saturated monovalent monocyclic or bicyclic hydrocarbon ring containing 1-5, preferably 1-3 heterocyclic groups selected from the group consisting of N, O, B, P, Si and S atom.
- the heterocyclic group may be connected to the rest of the molecule through any of the carbon atoms or the nitrogen atom (if present).
- each atom of the heterocyclic group is independently optionally substituted, for example, by 1 to 5 substituents, 1 to 3 substituents or 1 substituent, Suitable substituents include, but are not limited to, OH, amino, oxo, halogen, CN, nitro, C 1-20 aliphatic hydrocarbon group, C 3-20 alicyclic hydrocarbon group, and the like.
- the heterocyclic group may include, but is not limited to: a 3-membered ring, such as aziridinyl, oxiranyl, and thiiridine; a 4-membered ring, such as azetidinyl, oxygen Etanyl and thietanyl; 5-membered ring, such as dihydrofuranyl, tetrahydrofuranyl, dioxolyl, pyrrolidinyl, imidazolidinyl, pyrazolidinyl, pyrrolidinyl , Dihydrothienyl, tetrahydrothienyl, dihydropyrrolyl, dioxolanyl, oxasulfuranyl, disulfuranyl, oxazolidine- 2-keto, triazolinyl, oxadiazolinyl and thiadiazolinyl; or 6-membered ring, such as dihydropyranyl, tetrahydropyr
- the heterocyclic group may be benzo-fused.
- the heterocyclic group may be bicyclic, such as but not limited to a 5, 5-membered ring, such as hexahydrocyclopenta[c]pyrrole-2(1H)-yl ring, or a 5, 6-membered bicyclic ring, such as hexahydropyrrole And [1,2-a]pyrazine-2(1H)-yl ring.
- the ring containing the nitrogen atom may be partially unsaturated, that is, it may contain one or more double bonds, such as but not limited to 2,5-dihydro-1H-pyrrolyl, 4H-[1,3,4]thiadi Azinyl, 4,5-dihydrooxazolyl or 4H-[1,4]thiazinyl, or it may be benzo-fused, such as but not limited to dihydroisoquinolinyl.
- the heterocyclic group is non-aromatic.
- C 6-20 aryl should be understood to mean a monovalent aromatic or partially aromatic monocyclic, bicyclic or tricyclic hydrocarbon ring with 6 to 20 carbon atoms, preferably “C 6-14 aryl” or “C 6-10 Aryl”.
- C 6-14 aryl should be understood as preferably meaning a monocyclic, bicyclic or partially aromatic monocyclic or partially aromatic monocyclic or partially aromatic having 6, 7, 8, 9, 10, 11, 12, 13 or 14 carbon atoms
- a tricyclic hydrocarbon ring (“C 6-14 aryl"), especially a ring having 6 carbon atoms (“C 6 aryl”), such as phenyl; or biphenyl, or one having 9 carbon atoms Ring (“C 9 aryl”), such as indanyl or indenyl, or a ring with 10 carbon atoms (“C 10 aryl”), such as tetrahydronaphthyl, dihydronaphthyl or naphthyl, Either a ring having 13 carbon atoms (“C 13 aryl”), such as fluorenyl, or a ring having 14 carbon atoms (“C 14 aryl”), such as anthracenyl.
- 5-20 membered heteroaryl should be understood to include such a monovalent monocyclic, bicyclic or tricyclic aromatic ring system which has 5-20 ring atoms and contains 1-5 independently selected from N, O And S heteroatoms, such as "5-14 membered heteroaryl", “5-10 membered heteroaryl”, “5-6 membered heteroaryl”.
- 5-14 membered heteroaryl should be understood to include monovalent monocyclic, bicyclic or tricyclic aromatic ring systems having 5, 6, 7, 8, 9, 10, 11, 12, 13 or 14 ring atoms, especially 5 or 6 or 9 or 10 carbon atoms, and it contains 1-5, preferably 1-3 heteroatoms each independently selected from N, O and S and, additionally in each case The bottom can be benzo-fused.
- the term "5-6 membered heteroaryl” should be understood as a monovalent monocyclic aromatic ring system having 5 or 6 ring atoms, which contains 1-3 heteroatoms each independently selected from N, O and S, and which It can be benzo-fused in each case.
- the heteroaryl group is selected from thienyl, furyl, pyrrolyl, oxazolyl, thiazolyl, imidazolyl, pyrazolyl, isoxazolyl, isothiazolyl, oxadiazolyl, triazolyl, thiol Diazolyl, thio-4H-pyrazolyl, etc.
- heterocyclic group, heteroaryl group or heteroarylene group includes all possible isomeric forms thereof, such as positional isomers thereof. Therefore, for some illustrative non-limiting examples, pyridinyl or pyridinylene includes pyridin-2-yl, pyridin-2-yl, pyridin-3-yl, pyridin-3-yl, pyridin-4-yl And pyridin-4-yl; thienyl or thienylene includes thiophen-2-yl, thiophen-2-yl, thiophen-3-yl, and thiophen-3-yl.
- leaving group shall mean a charged or uncharged atom or group that is released during a substitution or displacement reaction. Suitable examples include, but are not limited to, H, F, Br, Cl, I, mesylate, tosylate, and the like.
- any method for preparing the compounds of the present invention it may be necessary and/or desirable to protect sensitive or reactive groups on any relevant molecules. This can be achieved by conventional protecting groups, such as those described in textbooks or reference books in the field.
- the protecting group can be removed at a convenient subsequent stage using methods known in the art.
- other reagents can be used for this deprotection step, including but not limited to Pd/C, Pd(OH) 2 , PdCl 2 , Pd(OAc) 2 / Et 3 SiH, Raney nickel, appropriately selected acid, appropriately selected base, fluoride, etc.
- the target compound can be separated according to a known method, for example, extraction, filtration, or column chromatography.
- the compound of the present invention may be chiral, and therefore may exist in various enantiomeric forms. Therefore, these compounds may exist in racemate form or optically active form.
- the compounds of the present invention or intermediates thereof can be separated into enantiomeric compounds by chemical or physical methods known to those skilled in the art, or used in synthesis in this form. In the case of racemic amines, diastereomers are prepared from the mixture by reaction with optically active resolving reagents.
- Suitable resolution reagents are optically active acids such as R and S forms of tartaric acid, diacetyl tartaric acid, dibenzoyl tartaric acid, mandelic acid, malic acid, lactic acid, appropriate N-protected amino acids (e.g., N- Benzoyl proline or N-benzenesulfonyl proline) or various optically active camphor sulfonic acids.
- optically active resolving reagents such as dinitrobenzoylphenylglycine, cellulose triacetate or other carbohydrate derivatives or chiral derivatized methacrylate polymers
- Suitable eluents for this purpose are aqueous or alcohol-containing solvent mixtures, for example, hexane/isopropanol/acetonitrile.
- the synthetic methods for preparing heterocyclic and tertiary amine N-oxides are well known to those skilled in the art, and the synthetic methods include the use of peroxyacids such as peroxyacetic acid and m-chloroperoxybenzoic acid (MCPBA), peroxy Hydrogen oxide, alkyl hydroperoxides such as tert-butyl hydroperoxide, sodium perborate and dioxirane (dioxirane) such as dimethyldioxirane oxidize heterocycles and tertiary amines.
- MCPBA peroxyacids
- alkyl hydroperoxides such as tert-butyl hydroperoxide
- sodium perborate and dioxirane (dioxirane) such as dimethyldioxirane oxidize heterocycles and tertiary amines.
- the pharmaceutically acceptable salt may be, for example, an acid addition salt of the compound of the present invention that has a nitrogen atom in the chain or ring and is sufficiently basic, for example, an acid addition salt formed with the following inorganic acids: for example, hydrochloric acid, hydrofluorine Acid, hydrobromic acid, hydroiodic acid, sulfuric acid, pyrosulfuric acid, phosphoric acid or nitric acid, or hydrogen sulfate, or acid addition salts formed with the following organic acids: for example, formic acid, acetic acid, acetoacetic acid, pyruvic acid, trifluoroacetic acid , Propionic acid, butyric acid, caproic acid, heptanoic acid, undecanoic acid, lauric acid, benzoic acid, salicylic acid, 2-(4-hydroxybenzoyl)benzoic acid, camphor acid, cinnamic acid, cyclopentane Propionic acid, digluconic acid, 3-hydroxy-2-nap
- an alkali metal salt such as a sodium salt or potassium salt
- an alkaline earth metal salt such as a calcium salt or a magnesium salt
- an ammonium salt or salts formed with organic bases that provide physiologically acceptable cations, such as salts formed with sodium ions, potassium ions, N-methylglucamine, dimethylglucamine, ethylglucosamine, Lysine, dicyclohexylamine, 1,6-hexanediamine, ethanolamine, glucosamine, meglumine, sarcosine, serinol, trihydroxymethylaminomethane, aminopropanediol, 1-amino-2 ,3,4-Butanetriol.
- an alkali metal salt such as a sodium salt or potassium salt
- an alkaline earth metal salt such as a calcium salt or a magnesium salt
- an ammonium salt or salts formed with organic bases that provide physiologically acceptable cations, such as salts formed with sodium ions, potassium ions, N-methyl
- the pharmaceutically acceptable salt includes the salt formed by the group -COOH with the following substances: sodium ion, potassium ion, calcium ion, magnesium ion, N-methylglucamine, dimethylglucamine, Ethyl glucosamine, lysine, dicyclohexylamine, 1,6-hexanediamine, ethanolamine, glucosamine, meglumine, sarcosine, serinol, trishydroxymethylaminomethane, aminopropanediol , 1-Amino-2,3,4-butanetriol.
- basic nitrogen-containing groups can be quaternized with the following reagents: lower alkyl halides, such as methyl, ethyl, propyl, and butyl chlorides, bromides, and iodides; dialkyl sulfates, such as sulfuric acid Dimethyl, diethyl sulfate, dibutyl sulfate and dipentyl sulfate; long chain halides such as decyl, lauryl, myristyl and stearyl chlorides, bromides and iodides; aralkyl Halides such as benzyl and phenethyl bromide.
- lower alkyl halides such as methyl, ethyl, propyl, and butyl chlorides, bromides, and iodides
- dialkyl sulfates such as sulfuric acid Dimethyl, diethyl sulfate, dibutyl sulfate and dipentyl
- pharmaceutically acceptable salts include hydrochloride, sulfate, nitrate, bisulfate, hydrobromide, acetate, oxalate, citrate, methanesulfonate, formate, or Meglumine salt and so on.
- the "pharmaceutically acceptable salt” includes not only the salt formed at one salt-forming site of the compound of the present invention, but also 2, 3 or all of them.
- the salt formed at the salt-forming site can be varied within a relatively large range, for example, it can be 4 :1 ⁇ 1:4, such as 3:1, 2:1, 1:1, 1:2, 1:3, etc.
- pharmaceutically acceptable anions include anions selected from the ionization of inorganic acids or organic acids.
- the "inorganic acid” includes, but is not limited to, hydrochloric acid, hydrofluoric acid, hydrobromic acid, hydroiodic acid, sulfuric acid, pyrosulfuric acid, phosphoric acid, or nitric acid.
- the "organic acid” includes but is not limited to formic acid, acetic acid, acetoacetic acid, pyruvic acid, trifluoroacetic acid, propionic acid, butyric acid, caproic acid, heptanoic acid, undecanoic acid, lauric acid, benzoic acid, salicylic acid , 2-(4-Hydroxybenzoyl)benzoic acid, camphor acid, cinnamic acid, cyclopentane propionic acid, digluconic acid, 3-hydroxy-2-naphthoic acid, nicotinic acid, hexanoic acid, pectinic acid , Persulfuric acid, 3-phenylpropionic acid, picric acid, pivalic acid, 2-hydroxyethanesulfonic acid, itaconic acid, sulfamic acid, trifluoromethanesulfonic acid, dodecylsulfuric acid, ethanesulfonic acid,
- tautomer refers to an isomer of a functional group resulting from the rapid movement of an atom in a molecule at two positions.
- the compounds of the present invention may exhibit tautomerism.
- Tautomeric compounds can exist in two or more mutually convertible species.
- Proton shift tautomers result from the migration of covalently bonded hydrogen atoms between two atoms.
- Tautomers generally exist in an equilibrium form. An attempt to separate a single tautomer usually produces a mixture whose physical and chemical properties are consistent with a mixture of compounds. The position of equilibrium depends on the chemical properties of the molecule.
- the ketone type is dominant; in phenol, the enol type is dominant.
- the present invention encompasses all tautomeric forms of the compound.
- the term "effective amount” or “therapeutically effective amount” refers to the amount of the compound of the present invention sufficient to achieve the intended application (including but not limited to the treatment of diseases as defined below).
- the therapeutically effective amount may vary depending on the following factors: the intended application (in vitro or in vivo), or the subject to be treated and the disease condition such as the weight and age of the subject, the severity of the disease condition and the mode of administration, etc. It can be easily determined by a person of ordinary skill in the art.
- the specific dosage will vary depending on the following factors: the particular compound selected, the dosing regimen on which it is based, whether it is administered in combination with other compounds, the timing of administration, the tissue to be administered, and the physical delivery system carried.
- excipients refers to pharmaceutically acceptable inert ingredients.
- examples of the types of excipients include, without limitation, binders, disintegrants, lubricants, glidants, stabilizers, fillers, diluents, and the like. Excipients can enhance the handling characteristics of the pharmaceutical preparation, that is, make the preparation more suitable for direct compression by increasing fluidity and/or adhesion.
- Examples of typical pharmaceutically acceptable carriers suitable for the above formulations are: sugars, such as lactose, sucrose, mannitol, and sorbitol; starches, such as corn starch, tapioca starch, and potato starch; cellulose and its derivatives, For example, sodium carboxymethyl cellulose, ethyl cellulose and methyl cellulose; calcium phosphates, such as dicalcium phosphate and tricalcium phosphate; sodium sulfate; calcium sulfate; polyvinylpyrrolidone; polyvinyl alcohol; stearic acid; hard Fatty acid alkaline earth metal salts, such as magnesium stearate and calcium stearate; stearic acid; vegetable oils, such as peanut oil, cottonseed oil, sesame oil, olive oil and corn oil; nonionic, cationic and anionic surfactants; B Glycol polymers; fatty alcohols; and grain hydrolyzed solids and other non-toxic compatible fillers, binders, dis
- HATU 2-(7-benzotriazole oxide)-N,N,N',N'-tetramethylurea hexafluorophosphate
- Pd(dppf)Cl 2 [1,1 '-Bis(diphenylphosphino)ferrocene]palladium dichloride
- EA ethyl acetate
- Boc tert-butoxycarbonyl.
- the compound provided by the present invention has excellent ROCK inhibitory activity.
- the compound of the present invention has better safety, metabolic stability, and high bioavailability.
- the compound of the present invention has a low risk of potential hepatotoxicity.
- the preparation method of the compound of the present invention is simple, easy to purify, and therefore has good application prospects.
- the raw materials and reagents used in the following examples are all commercially available products, or can be prepared by known methods.
- Benzylamine (300 mg) and pyridine (663.6 mg) were dissolved in 5 mL of dichloromethane, and phenyl chloroformate (658 mg) was added dropwise at 0°C. After the addition, the mixture was stirred overnight at room temperature and the reaction was completed. Water was added to the reaction solution, extracted with dichloromethane, the organic phase was washed with saturated brine, and dried over anhydrous sodium sulfate. After the organic phase was concentrated under reduced pressure, 400 mg of the product was obtained.
- Phenyl p-nitrochloroformate (0.54g) was dissolved in anhydrous tetrahydrofuran (5mL), and (3-fluoro-5-methoxyphenyl)methylamine (0.30g) and N,N-di were added dropwise at 0°C.
- a tetrahydrofuran solution (5 mL) of isopropylethylamine (1.00 g) was reacted at 0°C for 2 hours. Without purification, directly cast to the next step.
- MS[M+H]+ 213.9 (solvent methanol).
- Lithium aluminum tetrahydrogen (10.0g) was dissolved in tetrahydrofuran (100mL), protected by nitrogen, and ice-water bath. At 0°C, slowly add 3-fluoro-5-methoxybenzonitrile (8.0g) in tetrahydrofuran (20mL) dropwise. After the addition was completed, the temperature was raised to room temperature and the reaction was stirred for 3 hours. After the reaction is completed, the reaction solution is placed in an ice bath, and saturated sodium sulfate solution is slowly added dropwise until all the gas is released.
- 6-Chloroindole (2.0g) was dissolved in acetic acid (20mL), ice-water bath, sodium cyanoborocyanide (1.0g) was slowly added at 0°C, after the addition, the temperature was raised to room temperature and the reaction was continued for 12 hours with stirring. After the completion of the reaction, the reaction solution was placed in an ice bath, the pH was adjusted to alkaline with 1N NaOH solution, extracted with dichloromethane, the organic phase was dried with anhydrous sodium sulfate and spin-dried to obtain a crude product of 2.2 g as a white solid.
- Dissolve compound T228-1 (800mg) into anhydrous acetonitrile (8mL), lower the temperature to 0°C, add N-bromosuccinimide (551mg) dropwise and dissolve into anhydrous acetonitrile (5mL), drip and control the temperature React at 0°C for 25 minutes.
- compound T228-4 (210mg), 4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-1H-pyrazole-1 -Tert-butyl carboxylate (223mg), [1,1'-bis(diphenylphosphino)ferrocene] palladium dichloride (75mg) and potassium carbonate (211mg) dissolved in 1,4-dioxane The mixed solution of ring (5 mL) and water (1 mL) was stirred at 80°C overnight.
- Example 20 With reference to the preparation method of Example 19 above, the following compounds were prepared:
- T223 395.2 T226 355.2 T227 350.2 T229 388.2 T230 388.2 T231 369.1 T240 309.2 T241 323.1 T242 323.2 T243 457.2 T244 390.2 T245 330.3 T246 368.1 T247 359.2 T248 390.2 T249 395.1
- Ethyl-6-bromoimidazo[1,5-a]pyridine-1-carboxylate (7.5g) was dissolved in methanol/water/tetrahydrofuran (1/1/3, 75mL), Lithium hydroxide (5.8g) was added and reacted at room temperature for 3 hours. Dilute hydrochloric acid (1N) adjusted the pH to 5-6, a large amount of solids precipitated, filtered, washed with water, collected the filter cake, and dried to obtain 6.5 g of white solids with a yield of 96.6%.
- 6-bromoimidazo[1,5-a]pyridine-1-carboxylic acid 6.5g was dissolved in DMF (65mL), HATU (15.4g) and DIEA (10.4g) were added, and stirred at room temperature for 30 Minutes later, (3-fluoro-5-methoxyphenyl)methylamine (6.3g,) was added, and the reaction was continued for 1 hour at room temperature.
- aqueous phase was extracted with dichloromethane (20 ml*2), and the aqueous phase was retained. Adjust the pH of the aqueous phase to 8-9 with sodium carbonate solution, extract with dichloromethane (20mL*3), combine the organic phases, wash with saturated brine (30mL), dry with anhydrous sodium sulfate, filter and concentrate to obtain 800mg of yellow oil.
- Phenyl 4-nitrochloroformate (607 mg) was dissolved in THF (8 mL), protected by nitrogen, and a THF (2 mL) solution of compound M012-2 (500 mg) and pyridine (596 mg) was added dropwise thereto, and stirred at room temperature overnight.
- LCMS detects that the reaction is complete, and proceed to the next step without treatment.
- compound M009 (800mg), 4-bromo-3-nitro-1-(((2-(trimethylsilyl)ethoxy)methyl)-1H-pyrazole (544mg), Anhydrous potassium carbonate (1040mg) and (1,1'-bis(diphenylphosphino)ferrocene) palladium dichloride (137mg) were added to 1,4-dioxane: water 20:1 (10mL ). Stir in an oil bath at 80°C for 2 hours.
- Example 37 Compound (S)-5-(3-amino-1H-pyrazol-4-yl)-6-fluoro-N-(1-(3-fluoro-3-methoxyphenyl)-2 -Hydroxyethyl) indoline-1-carboxamide (T365) preparation
- Example 38 Compound (S)-5-(3-chloro-1H-pyrazol-4-yl)-6-fluoro-N-(1-(3-fluoro-3-methoxyphenyl)-2 -Hydroxyethyl) indole-1-carboxamide (T359) preparation
- Example 39 compound (S)-6-fluoro-5-(3-fluoro-1H-pyrazol-4-yl)-N-(1-(3-fluoro-5-methoxyphenyl)-2- Preparation of hydroxyethyl) indoline-1-carboxamide (T374)
- T389-9 (50mg) was dissolved in dimethyl sulfoxide (3mL) and methanol (2mL), separated by SFC chiral preparative chromatography, mobile phase: carbon dioxide-methanol (ammonia), lyophilized to obtain white solid T389-S (18.1mg).
- the lyophilized T389-R was dissolved in dichloromethane (10 mL), and sodium carbonate solution (2 mL) was added. A large amount of solid precipitated out. The filter cake was lyophilized to obtain T389-R (9.9 mg). MS[M+H]+: 496.0.
- Example 44 compound (S)-N-(1-(3-(cyclopentylcarbamoyl)phenyl)-2-hydroxyethyl)-6-fluoro-5-(1H-pyrazole-4- Yl)indole-1-carboxamide (T356-S) and (R)-N-(1-(3-(cyclopentylcarbamoyl)phenyl)-2-hydroxyethyl)-6- Preparation of fluoro-5-(1H-pyrazol-4-yl)indoline-1-carboxamide (T356-R)
- Dissolve compound T356-1 (6.00g) in anhydrous methanol (60mL), add iodobenzenediacetic acid (9.18g) and potassium hydroxide (7.99g) at 0°C, react at room temperature for 30 minutes, add 100mL water, acetic acid Extract with ethyl ester (100mL*3), combine the organic phases, wash with saturated brine (50mL*2), dry with anhydrous sodium sulfate, filter and concentrate, and dissolve the resulting crude product in anhydrous methanol (30mL) and dilute hydrochloric acid (2M, 30mL), stirred overnight at room temperature, added 100mL water, extracted with ethyl acetate (100mL*3), combined the organic phases, washed with saturated brine (50mL*2), dried over anhydrous sodium sulfate, filtered and concentrated.
- iodobenzenediacetic acid 9.18g
- potassium hydroxide (7.99g) at 0°C
- the crude compound T356-3 (5.0 g) was dissolved in anhydrous methanol (50 mL), palladium carbon (1.0 g) was added, hydrogen gas was introduced, and the mixture was stirred at room temperature overnight. After the reaction was completed, saturated aqueous sodium bicarbonate solution (2 mL) was added, stirred and filtered, and the filtrate was concentrated.
- Example 45 Compound N-(2-amino-1-(3-fluoro-5-methoxyphenyl)ethyl)-6-fluoro-5-(1H-pyrazol-4-yl)indoline Preparation of -1-formamide (T371)
- the compound T360-3 (410mg) was dissolved in a mixed solvent of dioxane (4mL) and water (1mL), and 4-(4,4,5,5-tetramethyl-1,3,2 was added to the system -Dioxaborolan-2-yl)-1H-pyrazole-1-carboxylic acid tert-butyl ester (490mg), [1,1'-bis(diphenylphosphino)ferrocene]palladium dichloride (88mg), potassium carbonate (460mg). The reaction was stirred at 80°C overnight.
- Dissolve compound T375-3 (200mg) into a mixed solvent of dioxane (4mL) and water (1mL), and add tert-butyl 4-(4,4,5,5-tetramethyl-1) to the system ,3,2-Dioxaborolan-2-yl)-1H-pyrazole-1-carboxylate (203mg), [1,1'-bis(diphenylphosphino)ferrocene]dichloro Palladium (67 mg), potassium carbonate (190 mg). The reaction was stirred at 80°C overnight.
- Example 54 compound (S)-6-fluoro-N-(1-(3-fluoro-5-(2-(isobutylamino)-2-oxoethoxy)phenyl)-2-hydroxyethyl )-5-(1H-pyrazol-4-yl)indoline-1-carboxamide (T367)
- Example 55 Compound (S)-N-(1-(3-(2-(3,3-difluoroazetidin-1-yl)-2-oxoethoxy)-5-fluorobenzene (Yl)-2-hydroxyethyl)-6-fluoro-5-(1H-pyrazol-4-yl)indole-1-carboxamide (T350)
- Example 56 Compound (S)-N-(1-(3-(2-(((3,3-difluorocyclobutyl)amino)-2-oxoethoxy)-5-fluorophenyl) Preparation of -2-hydroxyethyl)-6-fluoro-5-(1H-pyrazol-4-yl)indole-1-carboxamide (T369)
- Example 59 Compound (S)-6-fluoro-N-(1-(3-fluoro-3-isobutoxyphenyl)-2-hydroxyethyl)-5-(1H-pyrazole-4- Base) indole-1-carboxamide (T354)
- Example 60 Compound (S)-6-fluoro-N-(1-(3-fluoro-5-methoxyphenyl)-2-hydroxyethyl)-5-(1H-pyrazol-4-yl) two Preparation of indole-1-carboxamide (T377)
- T377-1 (320 mg) was dissolved in dichloromethane (4 mL), methanol hydrochloric acid gas (2 mL) was added, and the mixture was stirred at room temperature for 16 hours. It was concentrated under reduced pressure and purified by preparative chromatography (acetonitrile/0.1% formic acid-water/0.1% formic acid) to obtain 87.3 mg of T377 as a white solid, yield: 34%. MS[M+H]+: 416.0.
- Example 61 the compound 6-fluoro-N-(1-(3-fluoro-5-((1-methylazetidine-3-yl)methoxy)phenyl)-2-hydroxyethyl)- Preparation of 5-(1H-pyrazol-4-yl)indoline-1-carboxamide (T343)
- Example 62 Compound (S)-6-fluoro-N-(1-(3-fluoro-5-methoxyphenyl)-2-hydroxyethyl)-5-(3-methyl-1H-pyrazole -4-yl)indole-1-carboxamide (T381) preparation
- 6-bromoimidazo[1,5-a]pyridine-1-carboxylic acid 200mg was dissolved in DMF (10mL), HATU (473mg) and DIEA (322mg) were added, and after stirring for 30 minutes at room temperature, (S)-2-amino-2-(3-fluoro-5-methoxyphenyl)ethanol (230 mg) was added, and the reaction was continued for 1 hour at room temperature.
- Example 66 Compound 6-(5-Fluoro-1H-pyrazol-4-yl)-N-(3-fluoro-5-methoxybenzyl)imidazo[1,5-a]pyridine-1-methyl Preparation of amide (T355)
- Example 68 Compound N-(3-(cyclopropylmethoxy)-5-fluorobenzyl)-6-fluoro-5-(3-fluoro-1H-pyrazol-4-yl)indoline Preparation of indole-1-carboxamide (T347)
- compound M013 (900mg), 4-bromo-3-nitro-1-(((2-(trimethylsilyl)ethoxy)methyl)-1H-pyrazole (673mg), Anhydrous potassium carbonate (575mg) and (1,1'-bis(diphenylphosphino)ferrocene) palladium dichloride (152mg) were added to 1,4-dioxane: water 20:1 (10mL ). Stir in an oil bath at 80°C for 2 hours. After the reaction is complete, add water (50mL) to dilute and extract with ethyl acetate (30mL*3).
- Example 70 Compound 5-(3-amino-1H-pyrazol-4-yl)-N-(3-cyano-5-fluorobenzyl)-6-fluoroindole-1-carboxamide (T348) Preparation
- Example 72 compound (S)-N-(1-(3,5-difluorophenyl)-2-(dimethylamino)ethyl)-6-fluoro-5-(3-fluoro-1H-pyridine Azol-4-yl)indoline-1-carboxamide (T366-S) and (R)-N-(1-(3,5-difluorophenyl)-2-(dimethylamino)ethyl )-6-fluoro-5-(3-fluoro-1H-pyrazol-4-yl)indoline-1-carboxamide (T366-R)
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Abstract
Description
| 化合物编号 | LC-MS:[M+H] + |
| T210 | 365.1 |
| T211 | 382.1 |
| T212 | 437.2 |
| T213 | 411.3 |
| T214 | 437.4 |
| T215 | 451.0 |
| T216 | 465.2 |
| 化合物编号 | LC-MS:[M+H] + |
| T223 | 395.2 |
| T226 | 355.2 |
| T227 | 350.2 |
| T229 | 388.2 |
| T230 | 388.2 |
| T231 | 369.1 |
| T240 | 309.2 |
| T241 | 323.1 |
| T242 | 323.2 |
| T243 | 457.2 |
| T244 | 390.2 |
| T245 | 330.3 |
| T246 | 368.1 |
| T247 | 359.2 |
| T248 | 390.2 |
| T249 | 395.1 |
| 化合物编号 | LC-MS:[M+H] + |
| T232 | 367.1 |
| T233 | 366.2 |
| T234 | 366.2 |
| T235 | 366.2 |
| T236 | 380.2 |
| T237 | 365.2 |
| T239 | 366.2 |
| 化合物 | HepG2CC 50(μM) |
| T202 | >50 |
| T203 | >50 |
| T204 | >50 |
| T205 | >50 |
| T356-R | >200 |
| T346 | 45 |
| T357 | 96 |
| T361 | >100 |
| T345 | 40.8 |
| T387 | >100 |
| T355 | >100 |
| T385 | >100 |
| T384 | >100 |
| T391 | >100 |
| T380 | 35.3 |
Claims (10)
- 式(I)所示的化合物、其消旋体、立体异构体、互变异构体、同位素标记物、氮氧化物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药:其中,W和V各自独立的为C或者N;X为-C(=O)NR x-,-NR x-C(=O)-;Y为化学键,或者无取代或任选被一个、两个或更多个R y取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基;环A为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;环B为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;环C为无取代或任选被一个、两个或更多个R c取代的如下基团:C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;环D为无取代或任选被一个、两个或更多个R d取代的如下基团:C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;每个R y,R ab,R c,R d独立的选自H,卤素,硝基、亚硝基,CN,OH,SH,=O,-NR 11R 12、-C(O)NR 11R 12、-C(=S)NR 11R 12、-S(O) 2NR 11R 12、-C(=NR 13)NR 11R 12、-NHC(O)NR 11R 12、-P(O) 2NR 11R 12、-P(O)R 13NR 11R 12、-NR 11S(O) 2R 12、-NR 11P(O) 2R 12、-NR 11P(O)R 13R 12、-C(O)R 14、-NHC(O)R 14、-C(O)OR 15、-OC(O)R 15,或无取代或任选被一个、两个或更多个R取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6- 20芳基或5-20元杂芳基;每个R x独立的选自H、卤素、CN、OH、SH、-NR 11R 12、-C(O)NR 11R 12、-C(=S)NR 11R 12、-S(O) 2NR 11R 12、-C(=NR 13)NR 11R 12、-NHC(O)NR 11R 12、-P(O) 2NR 11R 12、-P(O)R 13NR 11R 12、-NR 11S(O) 2R 12、-NR 11P(O) 2R 12、-NR 11P(O)R 13R 12、-C(O)R 14、-NHC(O)R 14、-C(O)OR 15、-OC(O)R 15,或无取代或任选被一个、两个或更多个R取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;R 11、R 12各自独立地选自H、或者未取代的或任选被一个、两个或更多个R取代的如下基团:-C(O)R 14,(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;或者,R 11和R 12连同它们所连接的氮原子一起形成未取代的或任选被一个、两个或更多个R取代的3-20元杂环基或5-20元杂芳基;R 13选自H、OH、CN、或者未取代的或任选被一个、两个或更多个R取代的(C 1-C 20)脂肪烃基或任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基;R 14选自H、OH、卤素、或者未取代的或任选被一个、两个或更多个R取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;R 15选自H、或者未取代的或任选被一个、两个或更多个R取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;每个R独立的选自=O,卤素,CN,OH,SH,NH 2,COOH,或者未取代的或任选被一个、两个 或更多个R’取代的如下基团:(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基,C 3-20脂环烃基,3-20元杂环基,C 6-20芳基或5-20元杂芳基;每个R’独立的选自=O,卤素,CN,OH,SH,NH 2,COOH,(C 1-C 20)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 20)脂肪烃基。
- 根据权利要求1所述的式(I)所示的化合物、其消旋体、立体异构体、互变异构体、同位素标记物、氮氧化物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药,其特征在于:在式(I)所示的化合物中,W和V各自独立的为C或者N;X为-C(=O)NR x-,-NR x-C(=O)-;Y为化学键,或者无取代或任选被一个、两个或更多个R y取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基;环A为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;环B为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;环C为无取代或任选被一个、两个或更多个R c取代的如下基团:C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;环D为无取代或任选被一个、两个或更多个R d取代的如下基团:C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;每个R y,R ab,R c,R d独立的选自H,卤素,硝基、亚硝基,CN,OH,SH,=O,-NR 11R 12、-C(O)NR 11R 12、-C(=S)NR 11R 12、-S(O) 2NR 11R 12、-C(=NR 13)NR 11R 12、-NHC(O)NR 11R 12、-P(O) 2NR 11R 12、-P(O)R 13NR 11R 12、-NR 11S(O) 2R 12、-NR 11P(O) 2R 12、-NR 11P(O)R 13R 12、-C(O)R 14、-NHC(O)R 14、-C(O)OR 15、-OC(O)R 15,或无取代或任选被一个、两个或更多个R取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6- 14芳基或5-14元杂芳基;每个R x独立的选自H、卤素、CN、OH、SH、-NR 11R 12、-C(O)NR 11R 12、-C(=S)NR 11R 12、-S(O) 2NR 11R 12、-C(=NR 13)NR 11R 12、-NHC(O)NR 11R 12、-P(O) 2NR 11R 12、-P(O)R 13NR 11R 12、-NR 11S(O) 2R 12、-NR 11P(O) 2R 12、-NR 11P(O)R 13R 12、-C(O)R 14、-NHC(O)R 14、-C(O)OR 15、-OC(O)R 15,或无取代或任选被一个、两个或更多个R取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;R 11、R 12各自独立地选自H、或者未取代的或任选被一个、两个或更多个R取代的如下基团:-C(O)R 14,(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;或者,R 11和R 12连同它们所连接的氮原子一起形成未取代的或任选被一个、两个或更多个R取代的3-12元杂环基或5-14元杂芳基;R 13选自H、OH、CN、或者未取代的或任选被一个、两个或更多个R取代的(C 1-C 12)脂肪烃基或任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基;R 14选自H、OH、卤素、或者未取代的或任选被一个、两个或更多个R取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;R 15选自H、或者未取代的或任选被一个、两个或更多个R取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;每个R独立的选自=O,卤素,CN,OH,SH,NH 2,COOH,或者未取代的或任选被一个、两个或更多个R’取代的如下基团:(C 1-C 12)脂肪烃基,任选地包含一个、两个或更多个杂原子的(C 1-C 12)脂肪烃基,C 3-12脂环烃基,3-12元杂环基,C 6-14芳基或5-14元杂芳基;每个R’独立的选自=O,卤素,CN,OH,SH,NH 2,COOH,(C 1-C 12)脂肪烃基,任选地包含一 个、两个或更多个杂原子的(C 1-C 12)脂肪烃基。
- 根据权利要求1所述的式(I)所示的化合物、其消旋体、立体异构体、互变异构体、同位素标记物、氮氧化物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药,其特征在于:其中,W和V各自独立的为C或者N;X为-C(=O)NR x-,-NR x-C(=O)-;Y可以选自无取代或任选被一个、两个或更多个R y取代的如下基团:亚甲基、亚乙基、亚丙基、-OCH 2-、-CH 2O-、-SCH 2-、-CH 2S-;环A为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-7脂环烃基,3-7元杂环基,C 6-10芳基或5-10元杂芳基;环B为无取代或任选被一个、两个或更多个R ab取代的如下基团:C 3-7脂环烃基,3-7元杂环基,C 6-10芳基或5-10元杂芳基;环C为无取代或任选被一个、两个或更多个R c取代的如下基团:C 3-7脂环烃基,3-7元杂环基,C 6-10芳基或5-10元杂芳基;环D为无取代或任选被一个、两个或更多个R d取代的如下基团:C 3-7脂环烃基,3-7元杂环基,C 6-10芳基或5-10元杂芳基;每个R y,R ab,R c,R d可以独立的选自H、卤素、硝基、亚硝基、CN、OH、SH、COOH、=O、甲基、乙基、丙基、丁基、戊基、己基、乙烯基、丙烯基、丁烯基、戊烯基、己烯基、乙炔基、丙炔基、丁炔基、戊炔基、己炔基、环丙基、环丁基、环戊基、环己基、甲氧基、乙氧基、丙氧基、丁氧基、戊基氧基、己基氧基、-O(CH 2) nO(CH 2) mCH 3、-S(CH 2) nS(CH 2) mCH 3、-CF 3、-CHF 2、-CH 2F、-CH 2CF 3、-CH 2CHF 2、-CH 2CH 2F、NH 2(CH 2) m-、(CH 3) 2N(CH 2) m-、CH 3NH(CH 2) m-、C 6H 5NH(CH 2) m-、-(NH) kC(O)NH 2、-(NH) kC(O)NH(CH 2) mCH 3、-(NH) kC(O)N(CH 3)(CH 2) mCH 3、-(NH) kC(O)NHC 6H 5、-(NH) kC(O)(CH 2) mCH 3、-(NH) kC(O)(CH 2) mC 6H 5、-OC(O)(CH 2) mCH 3、-O(CH 2) mC(=O)(CH 2)m(NH) kH、-C(O)O(CH 2) mCH 3、-OC(O)(CH 2) mC 6H 5、-C(O)O(CH 2) mC 6H 5、-C(=S)NH 2、-C(=S)NHCH 3、-C(=S)N(CH 3) 2、-S(O) 2NH 2、-S(O) 2NHCH 3、-S(O) 2N(CH 3) 2、-NHS(O) 2NH 2、-NHS(O) 2CH 3、-NCH 3S(O) 2NHCH 3、-P(O) 2NH 2、-P(O) 2NHCH 3、-P(O) 2N(CH 3) 2、-NHP(O) 2CH 3、-N(CH 3)P(O) 2CH 3、-C(=NH)NH 2、-C(=NH)NHCH 3、-C(=NH)N(CH 3) 2、-C(=NCH 3)NH 2、-C(=NCH 3)NHCH 3、-C(=NCH 3)N(CH 3) 2、氧杂环丁烷基、氮杂环丁烷基、四氢吡喃基、四氢呋喃基、吗啉基、四氢噻吩基、二氧杂环戊烯基、吡咯烷基、咪唑烷基、吡唑烷基、吡咯啉基、四氢吡喃基、哌啶基、二噻烷基、硫代吗啉基、哌嗪基、三噻烷基、二氮杂环庚烷基、苯基、苄基、 其中,n选自1,2或3;m选自0,1,2或3;k选自0或1;所述R x,R y,R ab,R c,R d可以进一步被一个、两个或更多个R取代;R具有上述任意一实施方案中的定义;每个R x可以独立的选自H、卤素、CN、OH、SH、COOH、甲基、乙基、丙基、丁基、戊基、己基、乙烯基、丙烯基、丁烯基、戊烯基、己烯基、乙炔基、丙炔基、丁炔基、戊炔基、己炔基、环丙基、环丁基、环戊基、环己基、甲氧基、乙氧基、丙氧基、丁氧基、戊基氧基、己基氧基、-O(CH 2) nO(CH 2) mCH 3、-S(CH 2) nS(CH 2) mCH 3、-CF 3、-CHF 2、-CH 2F、-CH 2CF 3、-CH 2CHF 2、-CH 2CH 2F、NH 2(CH 2) m-、(CH 3) 2N(CH 2) m-、CH 3NH(CH 2) m-、C 6H 5NH(CH 2) m-、-(NH) kC(O)NH 2、-(NH) kC(O)NH(CH 2) mCH 3、-(NH) kC(O)N(CH 3)(CH 2) mCH 3、-(NH) kC(O)NHC 6H 5、-(NH) kC(O)(CH 2) mCH 3、-(NH) kC(O)(CH 2) mC 6H 5、-OC(O)(CH 2) mCH 3、-C(O)O(CH 2) mCH 3、-OC(O)(CH 2) mC 6H 5、-C(O)O(CH 2) mC 6H 5、-C(=S)NH 2、-C(=S)NHCH 3、-C(=S)N(CH 3) 2、-S(O) 2NH 2、-S(O) 2NHCH 3、- S(O) 2N(CH 3) 2、-NHS(O) 2NH 2、-NHS(O) 2CH 3、-NCH 3S(O) 2NHCH 3、-P(O) 2NH 2、-P(O) 2NHCH 3、-P(O) 2N(CH 3) 2、-NHP(O) 2CH 3、-N(CH 3)P(O) 2CH 3、-C(=NH)NH 2、-C(=NH)NHCH 3、-C(=NH)N(CH 3) 2、-C(=NCH 3)NH 2、-C(=NCH 3)NHCH 3、-C(=NCH 3)N(CH 3) 2、氧杂环丁烷基、氮杂环丁烷基、四氢吡喃基、四氢呋喃基、吗啉基、四氢噻吩基、二氧杂环戊烯基、吡咯烷基、咪唑烷基、吡唑烷基、吡咯啉基、四氢吡喃基、哌啶基、二噻烷基、硫代吗啉基、哌嗪基、三噻烷基、二氮杂环庚烷基、苯基、苄基、 其中,n选自1,2或3;m选自0,1,2或3;k选自0或1;所述R x可以进一步被一个、两个或更多个R取代;R具有上述任意一实施方案中的定义。
- 根据权利要求1~3任一项所述的式(I)所示的化合物、其消旋体、立体异构体、互变异构体、同位素标记物、氮氧化物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药,其特征在于:在一些实施方式中,环C、环D分别独立的选自无取代或任选被一个、两个或更多个R c/R d取代的如下基团:苯基、噻吩基、呋喃基、吡咯基、噁唑基、噻唑基、咪唑基、吡唑基、异噁唑基、异噻唑基、噁二唑基、三唑基、噻二唑基、噻-4H-吡唑基、苯并呋喃基、苯并噻吩基、苯并噁唑基、苯并异噁唑基、苯并咪唑基、苯并三唑基、吲唑基、吲哚基、异吲哚基、吡啶基、哒嗪基、嘧啶基、吡嗪基、三嗪基、喹啉基、喹唑啉基、异喹啉基、吖辛因基、吲嗪基、嘌呤基、噌啉基、酞嗪基、喹唑啉基、喹喔啉基、萘啶基、蝶啶基、咔唑基、吖啶基、吩嗪基、吩噻嗪基、吩噁嗪基;R c、R d具有如上文通式(I)任意一技术方案中的定义。
- 根据权利要求1~3任一项所述的式(I)所示的化合物、其消旋体、立体异构体、互变异构体、同位素标记物、氮氧化物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药,其特征在于:式(I)所示的化合物为下式(II)的化合物:其中,W和V各自独立的为C或者N;X 1、X 2、X 3、X 4、X 5、X 6、X 7和X 8各自独立的为化学键、C、S、O或者N;条件是,X 1、X 2、X 3和X 4中至多一个为化学键,且X 5、X 6、X 7和X 8中至多一个为化学键;W、V、R ab、X、Y、环C、环D具有如上文通式(I)任意一技术方案中的定义,m、n选自0到7的整数,例如,选自0,1,2,3,4;
- 权利要求1~5任一项所述式(I)所示的化合物、其消旋体、立体异构体、互变异构体、氮氧化物、同位素标记物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药的制备方法,其特征在于,包括如下方案中的至少一种:方案1:a1)化合物I-SM1在碱性条件下,与化合物I-SM2反应得到化合物I-2;a2)化合物I-2可任选进一步对酰胺氮上R x’进行衍生化处理,得到化合物I-3;a3)化合物I-2或者I-3与化合物I-SM3经Suzuki偶联反应得到化合物I;其中,所述环A、B、C、D、W、V、Y、R x具有如前文所述式(I)中的定义,R x’选自R x或经过衍生化反应步骤(a2)可以转变为R x的基团;L 1选自卤素,所述卤素可以选自F、Cl、Br、I;基团Q1为异氰酸酯基团或者-N(R x’)-活性甲酸酯基团;化合物I-SM3为含有环D基团的硼酸酯;方案2:b1)化合物I-SM1’在碱性条件下,与化合物I-SM2’反应得到化合物I-2;b2)化合物I-2可任选进一步对酰胺氮上R x’进行衍生化处理,得到化合物I-3;b3)化合物I-2或者I-3与化合物I-SM3经Suzuki偶联反应得到化合物I;其中,所述环A、B、C、D、W、V、Y、R x具有如前文所述式(I)中的定义,R x’选自R x或经过衍生化反应步骤(b2)可以转变为R x的基团;L 1选自卤素,所述卤素可以选自F、Cl、Br、I;基团Q2为活性甲酸酯基团;化合物I-SM3为含有环D基团的硼酸酯;或者方案3:c1)化合物I-SM1’与化合物I-SM2”在碱性条件下反应得到化合物I-2;c2)化合物I-2可任选进一步对酰胺氮上R x’进行衍生化处理,得到化合物I-3;c3)化合物I-2或者I-3与化合物I-SM3经Suzuki偶联反应得到化合物I;其中,所述环A、B、C、D、W、V、Y、R x选自如前文所述式(I)中所述定义,R x’选自R x或经过衍生化反应步骤(c2)可以转变为R x的基团;L 1选自卤素,所述卤素可以选自F、Cl、Br、I;化合物I-SM3为含有环D基团的硼酸酯。
- 权利要求1~6任一项所述式(I)所示的化合物、其消旋体、立体异构体、互变异构体、氮氧化物、同位素标记物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药中的至少一种在制备药物中的用途,所述药物为蛋白质激酶的抑制剂。
- 根据权利要求8所述的用途,其特征在于,所述药物用于预防或治疗一种或多种ROCK的高表达或ROCK的过度激活导致的疾病;优选地,所述药物用于预防或治疗如下疾病:心脑血管疾病、神经系统疾病、纤维化疾病、眼疾病、肿瘤、动脉血栓形成病症、辐射损伤、呼吸系统疾病、以及自身免疫性疾病,包括动脉粥样硬化、急性冠脉综合征、高血压、脑血管痉挛、脑缺血、缺血性脑卒中、再狭窄、心脏病、心脏衰竭、心肌肥厚、心肌缺血再灌注损伤、糖尿病、糖尿病肾病、癌症、神经元变性、神经损伤性疾病、脊髓损伤、勃起功能障碍、血小板凝聚、白细胞聚集、青光眼、眼部高血压、哮喘、骨质疏松症、肺纤维化(如特发性肺纤维化)、肝纤维化、肾脏纤维化、COPD、肾透析、肾小球硬化症以及神经元变性炎症。
- 一种药物组合物,其特征在于,包含治疗有效量的权利要求1~6任一项所述式(I)所示的化合 物、其消旋体、立体异构体、互变异构体、氮氧化物、同位素标记物、溶剂化物、多晶型物、代谢产物、酯、药学上可接受的盐或前药中的至少一种;优选地,所述药物组合物还包含药学上可接受的辅料;优选地,所述辅料选自下列中的至少一种:崩解剂、助流剂、润滑剂、稀释剂或填充剂、粘合剂、着色剂。
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| US17/756,079 US20230050653A1 (en) | 2019-11-15 | 2020-11-12 | Rock inhibitor and preparation method therefor and use thereof |
| AU2020381792A AU2020381792A1 (en) | 2019-11-15 | 2020-11-12 | Rock inhibitor, preparation method therefor and use thereof |
| PH1/2022/551189A PH12022551189A1 (en) | 2019-11-15 | 2020-11-12 | Rock inhibitor, preparation method therefor and use thereof |
| CA3158241A CA3158241A1 (en) | 2019-11-15 | 2020-11-12 | Rock inhibitor and preparation method therefor and use thereof |
| MX2022005858A MX2022005858A (es) | 2019-11-15 | 2020-11-12 | Inhibidor de la rock y metodo de preparacion para el mismo y uso del mismo. |
| EP20888391.8A EP4059928A4 (en) | 2019-11-15 | 2020-11-12 | Rock inhibitor, preparation method therefor and use thereof |
| KR1020227017674A KR20220102622A (ko) | 2019-11-15 | 2020-11-12 | Rock 억제제 및 이의 제조 방법과 용도 |
| CN202080078665.8A CN114728926A (zh) | 2019-11-15 | 2020-11-12 | 一种rock抑制剂及其制备方法和用途 |
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|---|---|---|---|---|
| WO2022212326A1 (en) | 2021-03-29 | 2022-10-06 | Halia Therapeutics, Inc. | Nek7 inhibitors |
| WO2022237892A1 (zh) * | 2021-05-14 | 2022-11-17 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的酸加成盐及盐的晶型、组合物和药物用途 |
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| WO2023226965A1 (en) * | 2022-05-26 | 2023-11-30 | Dizal (Jiangsu) Pharmaceutical Co., Ltd. | Rock inhibitors and uses thereof |
| JP2024524851A (ja) * | 2021-06-11 | 2024-07-09 | 大塚製薬株式会社 | Erk阻害剤を調製するプロセス |
| WO2024149366A1 (zh) * | 2023-01-13 | 2024-07-18 | 武汉朗来科技发展有限公司 | 一种rock抑制剂中间体的制备方法 |
| WO2024229406A1 (en) | 2023-05-04 | 2024-11-07 | Revolution Medicines, Inc. | Combination therapy for a ras related disease or disorder |
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| US12448379B2 (en) | 2022-11-30 | 2025-10-21 | Blueprint Medicines Corporation | Wild type kit inhibitors |
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| WO2025265060A1 (en) | 2024-06-21 | 2025-12-26 | Revolution Medicines, Inc. | Therapeutic compositions and methods for managing treatment-related effects |
| WO2026006747A1 (en) | 2024-06-28 | 2026-01-02 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026015796A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026015825A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Use of ras inhibitor for treating pancreatic cancer |
| WO2026015790A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026015801A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026050446A1 (en) | 2024-08-29 | 2026-03-05 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026072904A2 (en) | 2024-09-26 | 2026-04-02 | Revolution Medicines, Inc. | Compositions and methods for treating lung cancer |
| WO2026090245A1 (en) | 2024-10-22 | 2026-04-30 | Revolution Medicines, Inc. | Use of ras inhibitors for treating cancer |
| WO2026090116A2 (en) | 2024-10-21 | 2026-04-30 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026090127A1 (en) | 2024-10-22 | 2026-04-30 | Revolution Medicines, Inc. | Methods of treating a ras protein-related disease or disorder |
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- 2020-11-12 WO PCT/CN2020/128244 patent/WO2021093795A1/zh not_active Ceased
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| Publication number | Priority date | Publication date | Assignee | Title |
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| WO2022212326A1 (en) | 2021-03-29 | 2022-10-06 | Halia Therapeutics, Inc. | Nek7 inhibitors |
| WO2022237892A1 (zh) * | 2021-05-14 | 2022-11-17 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的酸加成盐及盐的晶型、组合物和药物用途 |
| WO2022237878A1 (zh) * | 2021-05-14 | 2022-11-17 | 武汉朗来科技发展有限公司 | 化合物的晶型、含晶型组合物及其制备方法和应用 |
| JP2024524851A (ja) * | 2021-06-11 | 2024-07-09 | 大塚製薬株式会社 | Erk阻害剤を調製するプロセス |
| CN115894463A (zh) * | 2021-09-30 | 2023-04-04 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的制备方法、其中间体及中间体的制备方法 |
| WO2023051753A1 (zh) * | 2021-09-30 | 2023-04-06 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的制备方法、其中间体及中间体的制备方法 |
| CN116425745A (zh) * | 2022-01-13 | 2023-07-14 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的盐及盐的晶型、组合物和药物用途 |
| WO2023134688A1 (zh) * | 2022-01-13 | 2023-07-20 | 武汉朗来科技发展有限公司 | 一种rock抑制剂的盐及盐的晶型、组合物和药物用途 |
| WO2023226965A1 (en) * | 2022-05-26 | 2023-11-30 | Dizal (Jiangsu) Pharmaceutical Co., Ltd. | Rock inhibitors and uses thereof |
| US12448379B2 (en) | 2022-11-30 | 2025-10-21 | Blueprint Medicines Corporation | Wild type kit inhibitors |
| WO2024149366A1 (zh) * | 2023-01-13 | 2024-07-18 | 武汉朗来科技发展有限公司 | 一种rock抑制剂中间体的制备方法 |
| WO2024229406A1 (en) | 2023-05-04 | 2024-11-07 | Revolution Medicines, Inc. | Combination therapy for a ras related disease or disorder |
| WO2025034702A1 (en) | 2023-08-07 | 2025-02-13 | Revolution Medicines, Inc. | Rmc-6291 for use in the treatment of ras protein-related disease or disorder |
| WO2025080946A2 (en) | 2023-10-12 | 2025-04-17 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2025171296A1 (en) | 2024-02-09 | 2025-08-14 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2025224050A1 (en) | 2024-04-22 | 2025-10-30 | Institut National de la Santé et de la Recherche Médicale | Methods of treatment of patients suffering from hypomelanosis of ito |
| WO2025240847A1 (en) | 2024-05-17 | 2025-11-20 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2025255438A1 (en) | 2024-06-07 | 2025-12-11 | Revolution Medicines, Inc. | Methods of treating a ras protein-related disease or disorder |
| WO2025265060A1 (en) | 2024-06-21 | 2025-12-26 | Revolution Medicines, Inc. | Therapeutic compositions and methods for managing treatment-related effects |
| WO2026006747A1 (en) | 2024-06-28 | 2026-01-02 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026015796A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026015825A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Use of ras inhibitor for treating pancreatic cancer |
| WO2026015790A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026015801A1 (en) | 2024-07-12 | 2026-01-15 | Revolution Medicines, Inc. | Methods of treating a ras related disease or disorder |
| WO2026050446A1 (en) | 2024-08-29 | 2026-03-05 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026072904A2 (en) | 2024-09-26 | 2026-04-02 | Revolution Medicines, Inc. | Compositions and methods for treating lung cancer |
| WO2026090116A2 (en) | 2024-10-21 | 2026-04-30 | Revolution Medicines, Inc. | Ras inhibitors |
| WO2026090245A1 (en) | 2024-10-22 | 2026-04-30 | Revolution Medicines, Inc. | Use of ras inhibitors for treating cancer |
| WO2026090127A1 (en) | 2024-10-22 | 2026-04-30 | Revolution Medicines, Inc. | Methods of treating a ras protein-related disease or disorder |
Also Published As
| Publication number | Publication date |
|---|---|
| PH12022551189A1 (en) | 2023-10-09 |
| JP7688633B2 (ja) | 2025-06-04 |
| CN114728926A (zh) | 2022-07-08 |
| CA3158241A1 (en) | 2021-05-20 |
| EP4059928A4 (en) | 2023-11-15 |
| MX2022005858A (es) | 2022-06-14 |
| AU2020381792A1 (en) | 2022-06-30 |
| EP4059928A1 (en) | 2022-09-21 |
| US20230050653A1 (en) | 2023-02-16 |
| KR20220102622A (ko) | 2022-07-20 |
| JP2023501799A (ja) | 2023-01-19 |
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