Patent classifications
C07D265/36
BETA ADRENERGIC AGONIST AND METHODS OF USING THE SAME
The present disclosure is directed to chemical compounds and to the use of such compounds in the treatment of diseases associated with an adrenergic receptor.
BETA ADRENERGIC AGONIST AND METHODS OF USING THE SAME
The present disclosure is directed to chemical compounds and to the use of such compounds in the treatment of diseases associated with an adrenergic receptor.
FEM1B PROTEIN BINDING AGENTS AND USES THEREOF
Disclosed herein, inter alia, are compounds for binding FEMIB protein and uses thereof. In an aspect, provided input pulldown herein is a pharmaceutical composition including a compound as described herein and a pharmaceutically acceptable excipient.
PROTEIN-PROTEIN INTERACTION STABILIZERS
- Michelle R. Arkin ,
- Lucas Brunsveld ,
- Christian Ottmann ,
- Adam R. Renslo ,
- R. Jeffrey Neitz ,
- Mengqi Zhong ,
- Kenneth K. Hallenbeck ,
- Priyadarshini Jaishankar ,
- Shubhankar Dutta ,
- John K. Morrow ,
- Eline Sijbesma ,
- Bente Aminhan Somsen ,
- Galen Patrick Miley ,
- Emira Josien Visser ,
- Peter James Cossar ,
- Madita Wolter ,
- Thorsten Genski ,
- Laura Mariana Levy ,
- Torsten Hoffmann ,
- Dimitrios Tzalis ,
- Dario Valenti ,
- Markella Konstantinidou
Provided herein, inter alia, are stabilizers of protein-protein interactions and methods of identifying and using the same.
PROTEIN-PROTEIN INTERACTION STABILIZERS
- Michelle R. Arkin ,
- Lucas Brunsveld ,
- Christian Ottmann ,
- Adam R. Renslo ,
- R. Jeffrey Neitz ,
- Mengqi Zhong ,
- Kenneth K. Hallenbeck ,
- Priyadarshini Jaishankar ,
- Shubhankar Dutta ,
- John K. Morrow ,
- Eline Sijbesma ,
- Bente Aminhan Somsen ,
- Galen Patrick Miley ,
- Emira Josien Visser ,
- Peter James Cossar ,
- Madita Wolter ,
- Thorsten Genski ,
- Laura Mariana Levy ,
- Torsten Hoffmann ,
- Dimitrios Tzalis ,
- Dario Valenti ,
- Markella Konstantinidou
Provided herein, inter alia, are stabilizers of protein-protein interactions and methods of identifying and using the same.
17-BETA-HYDROXYSTEROID DEHYDROGENASE TYPE 13 INHIBITORS AND METHODS OF USE THEREOF
The present invention provides compounds of Formula (I),
##STR00001##
pharmaceutical compositions comprising these compounds and methods of using these compounds to provides a method of modulating a HSD17B13 protein for treatment of metabolic disease or liver condition, The present invention relates generally to compounds and pharmaceutical compositions useful as 17β-HSD13 inhibitors. Specifically, the present invention relates to compounds useful as inhibitors of 17β-HSD13 and methods for their preparation and use.
17-BETA-HYDROXYSTEROID DEHYDROGENASE TYPE 13 INHIBITORS AND METHODS OF USE THEREOF
The present invention provides compounds of Formula (I),
##STR00001##
pharmaceutical compositions comprising these compounds and methods of using these compounds to provides a method of modulating a HSD17B13 protein for treatment of metabolic disease or liver condition, The present invention relates generally to compounds and pharmaceutical compositions useful as 17β-HSD13 inhibitors. Specifically, the present invention relates to compounds useful as inhibitors of 17β-HSD13 and methods for their preparation and use.
MYC-MAX INHIBITOR COMPOUND THERAPEUTICS FOR CANCER TREATMENT, METHODS AND USES ASSOCIATED THEREWITH
Provided herein are Myc-Max inhibitory compounds having the structure of Formula (I) and compositions thereof for use in the treatment of cancer. In particular, the Myc-Max inhibitory compounds may be useful for the treatment of cancers selected from one or more of: prostate cancer, breast cancer, colon cancer, cervical cancer, small-cell lung carcinomas, neuroblastomas, osteosarcomas, glioblastomas, melanoma and myeloid leukaemia.
##STR00001##
MYC-MAX INHIBITOR COMPOUND THERAPEUTICS FOR CANCER TREATMENT, METHODS AND USES ASSOCIATED THEREWITH
Provided herein are Myc-Max inhibitory compounds having the structure of Formula (I) and compositions thereof for use in the treatment of cancer. In particular, the Myc-Max inhibitory compounds may be useful for the treatment of cancers selected from one or more of: prostate cancer, breast cancer, colon cancer, cervical cancer, small-cell lung carcinomas, neuroblastomas, osteosarcomas, glioblastomas, melanoma and myeloid leukaemia.
##STR00001##
Bicyclic PKM2 Activators
Compounds and compositions comprising compounds that activate pyruvate kinase M2 (PKM2) are described herein. Also described herein are methods of using the compounds that activate PKM2 in the treatment of cancer.