Patent classifications
C07D267/20
MCL-1 inhibitors
- Hang Chu ,
- Juan A. Guerrero ,
- Anna E. Hurtley ,
- Tae H. Hwang ,
- Lan Jiang ,
- Darryl Kato ,
- Tetsuya Kobayashi ,
- John E. Knox ,
- Scott E. Lazerwith ,
- Xiaofen LI ,
- David W. Lin ,
- Jonathan W. Medley ,
- Michael L. Mitchell ,
- Devan Naduthambi ,
- Zachary Newby ,
- Neil H. Squires ,
- Vickie H. Tsui ,
- Chandrasekar Venkataramani ,
- William J. Watkins ,
- Hong Yang
The present disclosure generally relates to compounds and pharmaceutical compositions that may be used in methods of treating cancer.
MODULATORS OF VASOPRESSIN RECEPTORS WITH THERAPEUTIC POTENTIAL
Compounds comprising piperazines, piperidines, spiro-furanopiperidines, and analogs thereof are provided that are modulators, such as positive allosteric modulators, of one or more subclasses of vasopressin receptors. The compounds can be selective modulators of one or more subclasses of vasopressin receptors. Compounds of the invention can be used in the treatment of a condition wherein modulating a vasopressin receptor is medically indicated for treatment of the condition.
MODULATORS OF VASOPRESSIN RECEPTORS WITH THERAPEUTIC POTENTIAL
Compounds comprising piperazines, piperidines, spiro-furanopiperidines, and analogs thereof are provided that are modulators, such as positive allosteric modulators, of one or more subclasses of vasopressin receptors. The compounds can be selective modulators of one or more subclasses of vasopressin receptors. Compounds of the invention can be used in the treatment of a condition wherein modulating a vasopressin receptor is medically indicated for treatment of the condition.
MCL-1 INHIBITORS
- Hang Chu ,
- Juan A. Guerrero ,
- Anna E. Hurtley ,
- Tae H. Hwang ,
- Lan Jiang ,
- Darryl Kato ,
- Tetsuya Kobayashi ,
- John E. Knox ,
- Scott E. Lazerwith ,
- Xiaofen LI ,
- David W. Lin ,
- Jonathan W. Medley ,
- Michael L. Mitchell ,
- Devan Naduthambi ,
- Zachary Newby ,
- Neil H. Squires ,
- Vickie H. Tsui ,
- Chandrasekar Venkataramani ,
- William J. Watkins ,
- Hong Yang
The present disclosure generally relates to compounds and pharmaceutical compositions that may be used in methods of treating cancer.
MCL-1 INHIBITORS
- Hang Chu ,
- Juan A. Guerrero ,
- Anna E. Hurtley ,
- Tae H. Hwang ,
- Lan Jiang ,
- Darryl Kato ,
- Tetsuya Kobayashi ,
- John E. Knox ,
- Scott E. Lazerwith ,
- Xiaofen LI ,
- David W. Lin ,
- Jonathan W. Medley ,
- Michael L. Mitchell ,
- Devan Naduthambi ,
- Zachary Newby ,
- Neil H. Squires ,
- Vickie H. Tsui ,
- Chandrasekar Venkataramani ,
- William J. Watkins ,
- Hong Yang
The present disclosure generally relates to compounds and pharmaceutical compositions that may be used in methods of treating cancer.
C-ABL TYROSINE KINASE INHIBITORY COMPOUND EMBODIMENTS AND METHODS OF MAKING AND USING THE SAME
Disclosed herein are embodiments of a compound that inhibits c-Abl tyrosine kinase (also referred to herein as “c-Abl”). The compound embodiments described herein are novel c-Abl inhibitors that can bind to c-Abl at an allosteric site and inhibit its activity in various pathways. The compound embodiments also are capable of crossing the blood brain barrier and therefore are useful in inhibiting c-Abl activity as it affects pathways and/or proteins in the brain. The compound embodiments described herein are effective therapeutic agents for treating diseases involving c-Abl, such as cancers, motor neuron diseases, and neurodegenerative diseases. Also disclosed herein are embodiments of methods for making and using the c-Abl inhibitory compound embodiments.
C-ABL TYROSINE KINASE INHIBITORY COMPOUND EMBODIMENTS AND METHODS OF MAKING AND USING THE SAME
Disclosed herein are embodiments of a compound that inhibits c-Abl tyrosine kinase (also referred to herein as “c-Abl”). The compound embodiments described herein are novel c-Abl inhibitors that can bind to c-Abl at an allosteric site and inhibit its activity in various pathways. The compound embodiments also are capable of crossing the blood brain barrier and therefore are useful in inhibiting c-Abl activity as it affects pathways and/or proteins in the brain. The compound embodiments described herein are effective therapeutic agents for treating diseases involving c-Abl, such as cancers, motor neuron diseases, and neurodegenerative diseases. Also disclosed herein are embodiments of methods for making and using the c-Abl inhibitory compound embodiments.
Hepatitis b core protein modulators
The present disclosure provides, in part, compounds having allosteric effector properties against Hepatitis B virus Cp. Also provided herein are methods of treating viral infections, such as hepatitis B, comprising administering to a patient in need thereof a disclosed compound.
Hepatitis b core protein modulators
The present disclosure provides, in part, compounds having allosteric effector properties against Hepatitis B virus Cp. Also provided herein are methods of treating viral infections, such as hepatitis B, comprising administering to a patient in need thereof a disclosed compound.
C-ABL TYROSINE KINASE INHIBITORY COMPOUND EMBODIMENTS AND METHODS OF MAKING AND USING THE SAME
Disclosed herein are embodiments of a compound that inhibits c-Abl tyrosine kinase (also referred to herein as “c-Abl”). The compound embodiments described herein are novel c-Abl inhibitors that can bind to c-Abl at an allosteric site and inhibit its activity in various pathways. The compound embodiments also are capable of crossing the blood brain barrier and therefore are useful in inhibiting c-Abl activity as it affects pathways and/or proteins in the brain. The compound embodiments described herein are effective therapeutic agents for treating diseases involving c-Abl, such as cancers, motor neuron diseases, and neurodegenerative diseases. Also disclosed herein are embodiments of methods for making and using the c-Abl inhibitory compound embodiments.