Patent classifications
C07C311/21
Heat shock protein 90 inhibitors
This disclosure is related to aromatic compounds of formula (I), and methods of their use in treating medical conditions associated with Heat Shock Protein-90 (HSP90), e.g., cancer. Compounds of formula (I) have the following structure: ##STR00001##
Also disclosed are pharmaceutical compositions comprising compounds of formula (I).
Heat shock protein 90 inhibitors
This disclosure is related to aromatic compounds of formula (I), and methods of their use in treating medical conditions associated with Heat Shock Protein-90 (HSP90), e.g., cancer. Compounds of formula (I) have the following structure: ##STR00001##
Also disclosed are pharmaceutical compositions comprising compounds of formula (I).
C7-FLUORO SUBSTITUTED TETRACYCLINE COMPOUNDS
The present invention is directed to a compound represented by Structural Formula (A):
##STR00001##
or a pharmaceutically acceptable salt thereof. The variables for Structural Formula (A) are defined herein. Also described is a pharmaceutical composition comprising the compound of Structural Formula (A) and its therapeutic use.
C7-FLUORO SUBSTITUTED TETRACYCLINE COMPOUNDS
The present invention is directed to a compound represented by Structural Formula (A):
##STR00001##
or a pharmaceutically acceptable salt thereof. The variables for Structural Formula (A) are defined herein. Also described is a pharmaceutical composition comprising the compound of Structural Formula (A) and its therapeutic use.
SMALL MOLECULE AGONISTS OF MUCOLIPIN 1 AND USES THEREOF
This invention is in the field of medicinal chemistry. In particular, the invention relates to a new class of small-molecules having a phenyl-sulfonic amide (or similar) structure which function as agonists of mucolipin 1 (ML1), and their use as therapeutics for the treatment of Duchenne muscular dystrophy (DMD) and related disorders.
SMALL MOLECULE AGONISTS OF MUCOLIPIN 1 AND USES THEREOF
This invention is in the field of medicinal chemistry. In particular, the invention relates to a new class of small-molecules having a phenyl-sulfonic amide (or similar) structure which function as agonists of mucolipin 1 (ML1), and their use as therapeutics for the treatment of Duchenne muscular dystrophy (DMD) and related disorders.
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.
Modulators of mas-related G-protein receptor X4 and related products and methods
Methods are provided for modulating MRGPR X4 generally, or for treating a MRGPR X4 dependent condition more specifically, by contacting the MRGPR X4 or administering to a subject in need thereof, respectively, an effective amount of a compound having the structure of Formula (I): ##STR00001##
or a pharmaceutically acceptable isomer, racemate, hydrate, solvate, isotope, or salt thereof, wherein n, x, A, Q.sub.1, Q.sub.2, Z, R, R.sup.1, R.sup.2, R.sup.3, R.sup.4 and R.sup.5 are as defined herein. Pharmaceutical compositions containing such compounds, as well as to compounds themselves, are also provided.
Inhibitors of alpha 2 beta 1 integrin and methods of use thereof
Disclosed herein, inter alia, are inhibitors of alpha 2 beta 1 integrin and methods of using the same.
METHOD FOR PREPARING HIGH-PURITY SULFONAMIDE COMPOUND, AND INTERMEDIATE OF SULFONAMIDE COMPOUND
The present invention discloses a method for preparing a high-purity sulfonamide compound and an intermediate of the sulfonamide compound. The method comprises the following steps: a, taking a crude product of a sulfonamide compound (I) as an initial raw material, and enabling the raw material to react with a compound of a formula (II) in presence of alkali and a catalyst so as to synthesize an intermediate of a formula (III); and b, enabling the compound represented by the formula (III) to react with alkali or acid, thereby obtaining the high-purity sulfonamide compound (I).