Patent classifications
C07D217/22
ISOQUINOLINE DERIVATIVES AS SIK2 INHIBITORS
Provided are compounds of the Formula I, and salts and solvates thereof: (I) wherein R.sup.1, R.sup.2, R.sup.3, X.sup.1, X.sup.2, X.sup.3 and Z are defined in the specification. The compounds are inhibitors of salt-inducible kinase (SIK), particular SIK2, and are useful in therapy, particularly in the treatment of a proliferative disorder, a benign neoplasm, pathological angiogenesis, an inflammatory disease or condition, a musculoskeletal disease or condition, an autoimmune disease, a haematological disease or condition, a neurological disease or condition, a psychiatric disorder, or a metabolic disorder.
##STR00001##
SUBSTITUTED MONO- AND POLYAZANAPHTHALENE DERIVATIVES AND THEIR USE
Disclosed are compounds of formula (I) wherein A is CH or N, B is CR or N; and D is CR; R represents hydrogen, OH or NH.sub.2; R1 and R2, independently of each other, represent hydrogen, N(R3).sub.2, halogen, cyano, nitro, R4-C1-C4alkyl, R4-C1-C4halogenoalkyl, OH, R4-C1-C4alkoxy, R4-C1-C4halogenoalkoxy, SH, R4-C1-C4alkythio, R4-C1-C4halogenoalkylthio; R3 represents, independently at each occurrence, hydrogen, R4-C1-C4alkyl or R4-C1-C4halogenoalkyl; R3a represents, independently at each occurrence, hydrogen or C1-C4 alkyl; R4 represents, independently at each occurrence, hydrogen, halogen, cyano, OH, SH, NH.sub.2, NH(CH.sub.3) or N(CH.sub.3).sub.2; X represents a group of formula -E- or -E-F—, wherein E and F are different from each other and represent a group selected from —C(R3a)2-, —(C═O)—, —NR3a- and —O— and F is linked to Y, with the proviso that if X represents -E-F— one of E or F represents —C(R3a).sub.2- or —(C═O)—; Y represents a group selected from C1-C6alkyl, mono- or bicyclic C3-C11cycloalkyl, which may be partially unsaturated, mono- or bicyclic 3 to 11-membered heterocycloalkyl, which may be partially unsaturated, a mono- or bicyclic group comprising at least one aryl or heteroaryl cycle, wherein said heterocycloalkyl group and said group comprising at least one heteroaryl cycle comprise one or more heteroatoms selected from nitrogen, oxygen and sulfur and said group Y is either unsubstituted or substituted by one or more substituents and comprises including its substituents one or more than one nitrogen atom having a lone electron pair; and Z represents a mono- or bicyclic group comprising at least one aryl or heteroaryl cycle, said heteroaryl cycle comprising one or more heteroatoms selected from nitrogen, oxygen and sulfur, which aryl or heteroaryl group is unsubstituted or substituted by one or more substituents; including tautomers of said compounds, mixtures of two tautomeric forms of said compounds, and pharmaceutically acceptable salts of said compounds, tautomers thereof or mixtures of two tautomeric forms thereof, preferably with the proviso that Y comprises one or more primary amino group —NH.sub.2, when X represents —(C═O)— or —(C═O)—NR3a-, wherein R3a represents hydrogen or C1-C4alkyl; which are useful for the treatment of proliferation disorders or diseases, such as cancer.
##STR00001##
Isoquinolines as inhibitors of HPK1
- Bryan Chan ,
- Joy Drobnick ,
- Lewis Gazzard ,
- Timothy Heffron ,
- Jun Liang ,
- Sushant Malhotra ,
- Rohan Mendonca ,
- Naomi Rajapaksa ,
- Craig Stivala ,
- John Tellis ,
- Weiru Wang ,
- BinQing Wei ,
- Aihe Zhou ,
- Matthew W. Cartwright ,
- Michael Lainchbury ,
- Emanuela Gancia ,
- Eileen Seward ,
- Andrew Madin ,
- David Favor ,
- Kin Chiu Fong ,
- Yonghan Hu ,
- Andrew Good
Isoquinoline compounds and their use as inhibitors of HPK1 (hematopoietic kinase 1) are described. The compounds are useful in treating HPK1-dependent disorders and enhancing an immune response. Also described are methods of inhibiting HPK1, methods of treating HPK1-dependent disorders, methods for enhancing an immune response, and methods for preparing the isoquinoline compounds.
Isoquinolines as inhibitors of HPK1
- Bryan Chan ,
- Joy Drobnick ,
- Lewis Gazzard ,
- Timothy Heffron ,
- Jun Liang ,
- Sushant Malhotra ,
- Rohan Mendonca ,
- Naomi Rajapaksa ,
- Craig Stivala ,
- John Tellis ,
- Weiru Wang ,
- BinQing Wei ,
- Aihe Zhou ,
- Matthew W. Cartwright ,
- Michael Lainchbury ,
- Emanuela Gancia ,
- Eileen Seward ,
- Andrew Madin ,
- David Favor ,
- Kin Chiu Fong ,
- Yonghan Hu ,
- Andrew Good
Isoquinoline compounds and their use as inhibitors of HPK1 (hematopoietic kinase 1) are described. The compounds are useful in treating HPK1-dependent disorders and enhancing an immune response. Also described are methods of inhibiting HPK1, methods of treating HPK1-dependent disorders, methods for enhancing an immune response, and methods for preparing the isoquinoline compounds.
ARYL CYCLOPROPYL-AMINO-ISOQUINOLINYL AMIDE COMPOUNDS
Provided herein are amino isoquinolinyl amide and sulfonamide compounds that affect the function of kinases and other proteins in a cell and that are useful as therapeutic agents. In particular, these compounds are useful in the treatment of eye diseases such as glaucoma and retinal diseases, as anti-inflammatory agents, for the treatment of cardiovascular diseases, and for diseases characterized by abnormal growth, such as cancers.
Bicyclic-fused heteroaryl or aryl compounds
- John David Trzupek ,
- Katherine Lin Lee ,
- Mark Edward Bunnage ,
- Seungil Han ,
- David Hepworth ,
- Frank Eldridge Lovering ,
- John Paul Mathias ,
- Nikolaos Papaioannou ,
- Betsy Susan Pierce ,
- Joseph Walter Strohbach ,
- Stephen Wayne Wright ,
- Christoph Wolfgang Zapf ,
- Lori Krim Gavrin ,
- Arthur Lee ,
- David Randolph Anderson ,
- Kevin Joseph Curran ,
- Christoph Martin Dehnhardt ,
- Eddine Saiah ,
- Joel Adam Goldberg ,
- Xiaolun Wang ,
- Horng-Chih Huang ,
- Richard Vargas ,
- Michael Dennis Lowe ,
- Akshay Patny
Compounds, tautomers and pharmaceutically acceptable salts of the compounds are disclosed, wherein the compounds have the structure of Formula Ia, ##STR00001##
as defined in the specification. Corresponding pharmaceutical compositions, methods of treatment, methods of synthesis, and intermediates are also disclosed.
Bicyclic-fused heteroaryl or aryl compounds
- John David Trzupek ,
- Katherine Lin Lee ,
- Mark Edward Bunnage ,
- Seungil Han ,
- David Hepworth ,
- Frank Eldridge Lovering ,
- John Paul Mathias ,
- Nikolaos Papaioannou ,
- Betsy Susan Pierce ,
- Joseph Walter Strohbach ,
- Stephen Wayne Wright ,
- Christoph Wolfgang Zapf ,
- Lori Krim Gavrin ,
- Arthur Lee ,
- David Randolph Anderson ,
- Kevin Joseph Curran ,
- Christoph Martin Dehnhardt ,
- Eddine Saiah ,
- Joel Adam Goldberg ,
- Xiaolun Wang ,
- Horng-Chih Huang ,
- Richard Vargas ,
- Michael Dennis Lowe ,
- Akshay Patny
Compounds, tautomers and pharmaceutically acceptable salts of the compounds are disclosed, wherein the compounds have the structure of Formula Ia, ##STR00001##
as defined in the specification. Corresponding pharmaceutical compositions, methods of treatment, methods of synthesis, and intermediates are also disclosed.
INHIBITORS OF KRAS G12C
Compounds having activity as inhibitors of G12C mutant KRAS protein are provided. The compounds have the following structure (I):
##STR00001##
or a pharmaceutically acceptable salt, tautomer, prodrug or stereoisomer thereof, wherein R.sup.1, R.sup.2a, R.sup.3a, R.sup.3b, R.sup.4a, R.sup.4b, G.sup.1, G.sup.2, L.sup.1, L.sup.2, m.sup.1, m.sup.2, A, B, W, X, Y, Z and E are as defined herein. Methods associated with preparation and use of such compounds, pharmaceutical compositions comprising such compounds and methods to modulate the activity of G12C mutant KRAS protein for treatment of disorders, such as cancer, are also provided.
INHIBITORS OF KRAS G12C
Compounds having activity as inhibitors of G12C mutant KRAS protein are provided. The compounds have the following structure (I):
##STR00001##
or a pharmaceutically acceptable salt, tautomer, prodrug or stereoisomer thereof, wherein R.sup.1, R.sup.2a, R.sup.3a, R.sup.3b, R.sup.4a, R.sup.4b, G.sup.1, G.sup.2, L.sup.1, L.sup.2, m.sup.1, m.sup.2, A, B, W, X, Y, Z and E are as defined herein. Methods associated with preparation and use of such compounds, pharmaceutical compositions comprising such compounds and methods to modulate the activity of G12C mutant KRAS protein for treatment of disorders, such as cancer, are also provided.
Isoquinoline-steroid conjugates and uses thereof
Provided herein are compounds and pharmaceutical compositions useful in modulating kinase activity, and related diseases. Also provided herein are methods of treating an eye disease or disorder in a subject. Also provided herein are methods of reducing intraocular pressure in a subject. Also provided herein are methods of modulating kinase activity in a cell. Also provided herein are methods of making the compounds provided herein, and compounds useful for the preparation of the compounds provided herein.