吲哚试验
化学
立体化学
吡咯
差向异构体
体内
戒指(化学)
脚手架
结构-活动关系
组合化学
体外
生物化学
有机化学
生物技术
生物医学工程
生物
医学
作者
Andreas Gollner,Dorothea Rudolph,Heribert Arnhof,Markus Bauer,Sophia M. Blake,Guido Boehmelt,Xiao-Ling Cockroft,Georg Dahmann,Peter Ettmayer,Thomas Gerstberger,Jale Karolyi‐Oezguer,Dirk Kessler,Christiane Kofink,Jürgen Ramharter,Jörg Rinnenthal,Alexander Savchenko,Renate Schnitzer,Harald Weinstabl,Ulrike Weyer-Czernilofsky,Tobias Wunberg
标识
DOI:10.1021/acs.jmedchem.6b00900
摘要
Scaffold modification based on Wang's pioneering MDM2–p53 inhibitors led to novel, chemically stable spiro-oxindole compounds bearing a spiro[3H-indole-3,2′-pyrrolidin]-2(1H)-one scaffold that are not prone to epimerization as observed for the initial spiro[3H-indole-3,3′-pyrrolidin]-2(1H)-one scaffold. Further structure-based optimization inspired by natural product architectures led to a complex fused ring system ideally suited to bind to the MDM2 protein and to interrupt its protein–protein interaction (PPI) with TP53. The compounds are highly selective and show in vivo efficacy in a SJSA-1 xenograft model even when given as a single dose as demonstrated for 4-[(3S,3′S,3′aS,5′R,6′aS)-6-chloro-3′-(3-chloro-2-fluorophenyl)-1′-(cyclopropylmethyl)-2-oxo-1,2,3′,3′a,4′,5′,6′,6′a-octahydro-1′H-spiro[indole-3,2′-pyrrolo[3,2-b]pyrrole]-5′-yl]benzoic acid (BI-0252).
科研通智能强力驱动
Strongly Powered by AbleSci AI