[EN] QUINOLINES AS INHIBITORS OF FARNESYL PYROPHOSPHATE SYNTHASE<br/>[FR] QUINOLÉINES EN TANT QU'INHIBITEURS DE LA FARNÉSYL PYROPHOSPHATE SYNTHASE
申请人:NOVARTIS AG
公开号:WO2009106586A1
公开(公告)日:2009-09-03
The invention relates to a compound of formula (I) wherein the substituents are as described in the specification, which are useful as farnesyl pyrophosphate synthase modulators, e.g. in the treatment of proliferative diseases, to methods of manufacturing such compounds and to intermediates thereof.
QUINOLINES AS INHIBITORS OF FARNESYL PYROPHOSPHATE SYNTHASE
申请人:Amstutz Rene
公开号:US20120094958A1
公开(公告)日:2012-04-19
The invention relates to a compound of formula (I) wherein the substituents are as described in the specification, which are useful as farnesyl pyrophosphate synthase modulators, e.g. in the treatment of proliferative diseases, to methods of manufacturing such compounds and to intermediates thereof.
Discovery of Novel Allosteric Non-Bisphosphonate Inhibitors of Farnesyl Pyrophosphate Synthase by Integrated Lead Finding
作者:Andreas L. Marzinzik、René Amstutz、Guido Bold、Emmanuelle Bourgier、Simona Cotesta、J. Fraser Glickman、Marjo Götte、Christelle Henry、Sylvie Lehmann、J. Constanze D. Hartwieg、Silvio Ofner、Xavier Pellé、Thomas P. Roddy、Jean-Michel Rondeau、Frédéric Stauffer、Steven J. Stout、Armin Widmer、Johann Zimmermann、Thomas Zoller、Wolfgang Jahnke
DOI:10.1002/cmdc.201500338
日期:2015.11
allosteric binding site has paved the way toward the development of novel non‐bisphosphonate FPPS inhibitors with broader therapeutic potential, notably as immunomodulators in oncology. Herein we report the discovery, by an integratedleadfinding approach, of two new chemical classes of allosteric FPPS inhibitors that belong to the salicylic acid and quinoline chemotypes. We present their synthesis,