C07D231/42

N-myristoyl transferase inhibitors

The present invention relates to N-heterocyclic sulphonamide compounds, in particular pyrazole sulphonamide compounds, and their use as N-myristoyl transferase inhibitors.

N-myristoyl transferase inhibitors

The present invention relates to N-heterocyclic sulphonamide compounds, in particular pyrazole sulphonamide compounds, and their use as N-myristoyl transferase inhibitors.

AZA-ARYL 1H-PYRAZOL-1-YL BENZENE SULFONAMIDES

Compounds are provided that act as potent antagonists of the CCR(9) receptor. Animal testing demonstrates that these compounds are useful for treating inflammation, a hallmark disease for CCR(9). The compounds are generally aryl sulfonamide derivatives and are useful in pharmaceutical compositions, methods for the treatment of CCR(9)-mediated diseases, and as controls in assays for the identification of CCR(9) antagonists.

AZA-ARYL 1H-PYRAZOL-1-YL BENZENE SULFONAMIDES

Compounds are provided that act as potent antagonists of the CCR(9) receptor. Animal testing demonstrates that these compounds are useful for treating inflammation, a hallmark disease for CCR(9). The compounds are generally aryl sulfonamide derivatives and are useful in pharmaceutical compositions, methods for the treatment of CCR(9)-mediated diseases, and as controls in assays for the identification of CCR(9) antagonists.

COMPOUNDS WITH COPPER- OR ZINC-ACTIVATED TOXICITY AGAINST MICROBIAL INFECTION

Heterocyclic compounds with a novel pyrazole thioamide-based NNSN structural motif, having highly effective zinc- or copper-activated toxicity against microbial infections at micromolar or nanomolar minimum inhibitory concentrations (MIC), and methods of making and using same.

COMPOUNDS WITH COPPER- OR ZINC-ACTIVATED TOXICITY AGAINST MICROBIAL INFECTION

Heterocyclic compounds with a novel pyrazole thioamide-based NNSN structural motif, having highly effective zinc- or copper-activated toxicity against microbial infections at micromolar or nanomolar minimum inhibitory concentrations (MIC), and methods of making and using same.

COMPOUNDS WITH ANTIMICROBIAL ACTIVITY
20210317076 · 2021-10-14 ·

This invention relates to compounds of formula 1, 2 or 3

##STR00001##

a pharmaceutically acceptable salt, or solvate thereof, wherein X.sub.1, Y, R.sub.1, R.sub.2, R.sub.3, R.sub.4, and R.sub.5 are as defined herein. The compounds are antimicrobial agents that may be used to treat various bacterial and protozoal infections and disorders related to such infections. The invention also relates to pharmaceutical compositions containing the compounds and to methods of treating bacterial and protozoal infections by administering the compounds of formula 1, 2 or 3.

COMPOUNDS WITH ANTIMICROBIAL ACTIVITY
20210317076 · 2021-10-14 ·

This invention relates to compounds of formula 1, 2 or 3

##STR00001##

a pharmaceutically acceptable salt, or solvate thereof, wherein X.sub.1, Y, R.sub.1, R.sub.2, R.sub.3, R.sub.4, and R.sub.5 are as defined herein. The compounds are antimicrobial agents that may be used to treat various bacterial and protozoal infections and disorders related to such infections. The invention also relates to pharmaceutical compositions containing the compounds and to methods of treating bacterial and protozoal infections by administering the compounds of formula 1, 2 or 3.