Patent classifications
C07D498/04
Viral replication inhibitors
The present invention relates to a series of novel compounds, methods to prevent or treat viral infections in animals by using the novel compounds and to said novel compounds for use as a medicine, more preferably for use as a medicine to treat or prevent viral infections, particularly infections with RNA viruses, more particularly infections with viruses belonging to the family of the Flaviviridae, and yet more particularly infections with the Dengue virus. The present invention furthermore relates to pharmaceutical compositions or combination preparations of the novel compounds, to the compositions or preparations for use as a medicine, more preferably for the prevention or treatment of viral infections. The invention also relates to processes for preparation of the compounds. ##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.
ETHANEDIAMINE-HETEROCYCLE DERIVATIVES AS INHIBITORS OF PROTEIN ARGININE METHYLTRANSFERASES
The present invention relates to ethanediamine-heterocycle compounds that are able to act as inhibitors of PRMTs (protein arginine methyltransferases) for treating cancer and other diseases mediated by PRMTs.
ETHANEDIAMINE-HETEROCYCLE DERIVATIVES AS INHIBITORS OF PROTEIN ARGININE METHYLTRANSFERASES
The present invention relates to ethanediamine-heterocycle compounds that are able to act as inhibitors of PRMTs (protein arginine methyltransferases) for treating cancer and other diseases mediated by PRMTs.
COMPOUNDS AND COMPOSITIONS FOR TREATING CONDITIONS ASSOCIATED WITH STING ACTIVITY
This disclosure features chemical entities (e.g., a compound or a pharmaceutically acceptable salt, and/or hydrate, and/or cocrystal, and/or drug combination of the compound) that inhibit (e.g., antagonize) Stimulator of Interferon Genes (STING). Said chemical entities are useful, e.g., for treating a condition, disease or disorder in which increased (e.g., excessive) STING activation (e.g., STING signaling) contributes to the pathology and/or symptoms and/or progression of the condition, disease or disorder (e.g., cancer) in a subject (e.g., a human). This disclosure also features compositions containing the same as well as methods of using and making the same.
COMPOUNDS AND COMPOSITIONS FOR TREATING CONDITIONS ASSOCIATED WITH STING ACTIVITY
This disclosure features chemical entities (e.g., a compound or a pharmaceutically acceptable salt, and/or hydrate, and/or cocrystal, and/or drug combination of the compound) that inhibit (e.g., antagonize) Stimulator of Interferon Genes (STING). Said chemical entities are useful, e.g., for treating a condition, disease or disorder in which increased (e.g., excessive) STING activation (e.g., STING signaling) contributes to the pathology and/or symptoms and/or progression of the condition, disease or disorder (e.g., cancer) in a subject (e.g., a human). This disclosure also features compositions containing the same as well as methods of using and making the same.
MrgprX2 Antagonists and Uses Thereof
The present disclosure is directed to use of MrgprX2 antagonists in the treatment of inflammatory disorders, e.g., inflammatory disorders of the skin. This invention is also directed to pharmaceutical compositions comprising a MrgprX2 antagonist and a pharmaceutically or orally acceptable carrier for administration.
MrgprX2 Antagonists and Uses Thereof
The present disclosure is directed to use of MrgprX2 antagonists in the treatment of inflammatory disorders, e.g., inflammatory disorders of the skin. This invention is also directed to pharmaceutical compositions comprising a MrgprX2 antagonist and a pharmaceutically or orally acceptable carrier for administration.
WDR5 INHIBITORS AND MODULATORS
Isoquinolmone compounds and derivatives inhibit WDR5 and associated protein-protein interactions, and the compounds and their pharmaceutical compositions are useful for treating disorders and conditions in a subject, such as cancer cell proliferation.