A Combinatorial Scaffold Approach toward Kinase-Directed Heterocycle Libraries
作者:Sheng Ding、Nathanael S. Gray、Xu Wu、Qiang Ding、Peter G. Schultz
DOI:10.1021/ja0170302
日期:2002.2.1
A novel strategy for efficient synthesis of various substituted heterocycles as kinase-directed combinatorial libraries is described. The general scheme involves capture of various dichloroheterocycles onto solid support and further elaborations by aromatic substitution with amines at elevated temperature or by anilines, boronic acids, and phenols via palladium-catalyzed cross-coupling reactions, thus
Kinase inhibitor scaffolds and methods for their preparation
申请人:IRM LLC, a Delaware Limited Liability Company
公开号:US20030191312A1
公开(公告)日:2003-10-09
General methods for the solution phase as well as solid phase synthesis of various substituted heteroaryls has been demonstrated. These substituted heteroaryls can be further elaborated by aromatic substitution with amines at elevated temperature or by anilines, boronic acids and phenols via palladium catalyzed cross-coupling reactions.
KINASE INHIBITOR SCAFFOLDS AND METHODS FOR THEIR PREPARATION
申请人:Ding Sheng
公开号:US20070191380A1
公开(公告)日:2007-08-16
General methods for the solution phase as well as solid phase synthesis of various substituted heteroaryls has been demonstrated. These substituted heteroaryls can be further elaborated by aromatic substitution with amines at elevated temperature or by anilines, boronic acids and phenols via palladium catalyzed cross-coupling reactions.
[EN] KINASE INHIBITOR SCAFFOLDS AND METHODS FOR THEIR PREPARATION<br/>[FR] SQUELETTES D'INHIBITEURS DE KINASE ET LEURS METHODES DE PREPARATION
申请人:IRM LLC
公开号:WO2003031406A2
公开(公告)日:2003-04-17
General methods for the solution phase as well as solid phase synthesis of various substituted heteroaryls has been demonstrated. These substituted heteroaryls can be further elaborated by aromatic substitution with amines at elevated temperature or by anilines, boronic acids and phenols via palladium catalyzed cross-coupling reactions.