[EN] ARYL-HYDROXYETHYLAMINO-PYRIMIDINES AND TRIAZINES AS MODULATORS OF FATTY ACID AMIDE HYDROLASE [FR] ARYL-HYDROXYÉTHYLAMINO-PYRIMIDINES ET TRIAZINES EN TANT QUE MODULATEURS D'AMIDE D'ACIDE GRAS HYDROLASE
[EN] ARYL-HYDROXYETHYLAMINO-PYRIMIDINES AND TRIAZINES AS MODULATORS OF FATTY ACID AMIDE HYDROLASE [FR] ARYL-HYDROXYÉTHYLAMINO-PYRIMIDINES ET TRIAZINES EN TANT QUE MODULATEURS D'AMIDE D'ACIDE GRAS HYDROLASE
Visible-Light-Promoted Metal-Free Aerobic Hydroxyazidation of Alkenes
作者:Bo Yang、Zhan Lu
DOI:10.1021/acscatal.7b02892
日期:2017.12.1
A highly efficient visible-light-promoted metal-free aerobic hydroxyazidation of alkenes has been developed. This protocol was operationally simple with broad substrate scope using relatively simple and readily available starting materials, such as alkenes and air, to construct valuable β-azido alcohols which are significant building blocks to build N-containing compounds. The distinct possible mechanisms
Aryl - Hydroxyethylamino - Pyrimidines and Triazines as Modulators of Fatty Acid amide Hydrolase
申请人:Apodaca Richard
公开号:US20090264429A1
公开(公告)日:2009-10-22
Certain aryl-hydroxyethylamino-pyrimidine and triazine compounds are described, which are useful as FAAH inhibitors. Such compounds may be used in pharmaceutical compositions and methods for the treatment of disease states, disorders, and conditions mediated by fatty acid amide hydrolase (FAAH) activity, such as anxiety, pain, inflammation, sleep disorders, eating disorders, energy metabolism disorders, and movement disorders (e.g., multiple sclerosis). Methods of synthesizing such compounds are also disclosed.
Aryl-hydroxyethylamino-pyrimidines and triazines as modulators of fatty acid amide hydrolase
申请人:Apodaca Richard
公开号:US08598202B2
公开(公告)日:2013-12-03
Certain aryl-hydroxyethylamino-pyrimidine and triazine compounds are described, which are useful as FAAH inhibitors. Such compounds may be used in pharmaceutical compositions and methods for the treatment of disease states, disorders, and conditions mediated by fatty acid amide hydrolase (FAAH) activity, such as anxiety, pain, inflammation, sleep disorders, eating disorders, energy metabolism disorders, and movement disorders (e.g., multiple sclerosis). Methods of synthesizing such compounds are also disclosed.