Patent classifications
C07D239/38
JNK INHIBITOR, AND PHARMACEUTICAL COMPOSITION AND USE THEREOF
A compound of formula (I), and racemates, stereoisomers, tautomers, isotopic markers, solvates, polymorphs and oxynitrides of the compound, or a pharmaceutically acceptable salt thereof can be used as JNK inhibitors. A method for preparing the compound of formula (I) and a pharmaceutical composition comprising the compound of formula (I) are provided. The compound of formula (I) can be used for preparing drugs. The resulting drugs are used for treating diseases that can be treated by inhibiting JNK activity.
##STR00001##
CANNABINOID DERIVATIVES
This disclosure relates to cannabinoid derivatives having the structure of formula (I), pharmaceutical compositions comprising them, and methods of using the cannabinoid derivatives in treating or preventing a diseases associated with a cannabinoid receptor in subject in need thereof, wherein the cannabinoid receptor is one or more of CB1, CB2, 5HT1A, 5HT2A, GPR18, GPR55, GPR119, TRPV1, TRPV2, PPARγ or a μ-opioid receptor.
CANNABINOID DERIVATIVES
This disclosure relates to cannabinoid derivatives having the structure of formula (I), pharmaceutical compositions comprising them, and methods of using the cannabinoid derivatives in treating or preventing a diseases associated with a cannabinoid receptor in subject in need thereof, wherein the cannabinoid receptor is one or more of CB1, CB2, 5HT1A, 5HT2A, GPR18, GPR55, GPR119, TRPV1, TRPV2, PPARγ or a μ-opioid receptor.
TRIAZINE AND PYRIMIDINE (THIO)AMIDES AS FUNGICIDAL COMPOUNDS
The present disclosure relates to triazine and pyrimidine (thio)amide compounds, processes and intermediates for their preparation as well as the uses thereof for controlling phytopathogenic microorganisms, such as phytopathogenic fungi.
Inhibitors of alpha-amino-beta-carboxymuconic acid semialdehyde decarboxylase
The present disclosure discloses compounds capable of modulating the activity of α-amino-β-carboxymuconic acid semialdehyde decarboxylase (ACMSD), which are useful for the prevention and/or the treatment of diseases and disorders associated with defects in NAD.sup.+ biosynthesis, e.g., metabolic disorders, neurodegenerative diseases, chronic inflammatory diseases, kidney diseases, and diseases associated with ageing. The present application also discloses pharmaceutical compositions comprising said compounds and the use of such compounds as a medicament.
Inhibitors of alpha-amino-beta-carboxymuconic acid semialdehyde decarboxylase
The present disclosure discloses compounds capable of modulating the activity of α-amino-β-carboxymuconic acid semialdehyde decarboxylase (ACMSD), which are useful for the prevention and/or the treatment of diseases and disorders associated with defects in NAD.sup.+ biosynthesis, e.g., metabolic disorders, neurodegenerative diseases, chronic inflammatory diseases, kidney diseases, and diseases associated with ageing. The present application also discloses pharmaceutical compositions comprising said compounds and the use of such compounds as a medicament.
Photocatalyst-free, light-induced carbon-sulfur cross-coupling methods
In one aspect, the invention provides a method of promoting a carbon-sulfur bond forming reaction. In certain embodiments, the reaction comprises cross-coupling of a(n) (hetero)aryl halide with a thiol to form the carbon-sulfur bond, wherein the method is promoted by light irradiation in the absence of a photocatalyst. In other embodiments, the cross-coupling reaction can be promoted through visible light irradiation, including sunlight.
Photocatalyst-free, light-induced carbon-sulfur cross-coupling methods
In one aspect, the invention provides a method of promoting a carbon-sulfur bond forming reaction. In certain embodiments, the reaction comprises cross-coupling of a(n) (hetero)aryl halide with a thiol to form the carbon-sulfur bond, wherein the method is promoted by light irradiation in the absence of a photocatalyst. In other embodiments, the cross-coupling reaction can be promoted through visible light irradiation, including sunlight.
Fluorinated benzenesulfonamides as inhibitors of carbonic anhydrase
Novel fluorinated benzenesulfonamides compounds of general formula (I) ##STR00001##
can be used in biomedicine as active ingredients in pharmaceutical formulations, because they inhibit enzymes which participate in disease progression.
Fluorinated benzenesulfonamides as inhibitors of carbonic anhydrase
Novel fluorinated benzenesulfonamides compounds of general formula (I) ##STR00001##
can be used in biomedicine as active ingredients in pharmaceutical formulations, because they inhibit enzymes which participate in disease progression.