(1R,2R)-N-(1-Cyanocyclopropyl)-2-(6-methoxy-1,3,4,5-tetrahydropyrido[4,3-b]indole-2-carbonyl)cyclohexanecarboxamide (AZD4996): A Potent and Highly Selective Cathepsin K Inhibitor for the Treatment of Osteoarthritis
摘要:
Directed screening of nitrile compounds revealed 3 as a highly potent cathepsin K inhibitor but with cathepsin S activity and very poor stability to microsomes. Synthesis of compounds with reduced molecular complexity, such as 7, revealed key SAR and demonstrated that baseline physical properties and in vitro stability were in fact excellent for this series. The tricycle carboline P3 unit was discovered by hypothesis-based design using existing structural information. Optimization using small substituents, knowledge from matched molecular pairs, and control of lipophilicity yielded compounds very close to the desired profile, of which 34 (AZD4996) was selected on the basis of pharmacokinetic profile.
The present invention relates to compounds and compositions for treating diseases associated with cysteine protease activity. The compounds are reversible inhibitors of cysteine proteases, including cathepsins B, K, C, F, H, L, O, S, W and X. Of particular interest are diseases associated with Cathepsin K.
1-CYANOCYCLOPROPYL-DERIVATIVES AS CATHEPSIN K INHIBITORS
申请人:AstraZeneca AB
公开号:EP2170879B1
公开(公告)日:2013-01-16
US8008279B2
申请人:——
公开号:US8008279B2
公开(公告)日:2011-08-30
(1<i>R</i>,2<i>R</i>)-<i>N</i>-(1-Cyanocyclopropyl)-2-(6-methoxy-1,3,4,5-tetrahydropyrido[4,3-<i>b</i>]indole-2-carbonyl)cyclohexanecarboxamide (AZD4996): A Potent and Highly Selective Cathepsin K Inhibitor for the Treatment of Osteoarthritis
作者:Alexander G. Dossetter、Howard Beeley、Jonathan Bowyer、Calum R. Cook、James J. Crawford、Jonathan E. Finlayson、Nicola M. Heron、Christine Heyes、Adrian J. Highton、Julian A. Hudson、Anja Jestel、Peter W. Kenny、Stephan Krapp、Scott Martin、Philip A. MacFaul、Thomas M. McGuire、Pablo Morentin Gutierrez、Andrew D. Morley、Jeffrey J. Morris、Ken M. Page、Lyn Rosenbrier Ribeiro、Helen Sawney、Stefan Steinbacher、Caroline Smith、Madeleine Vickers
DOI:10.1021/jm3007257
日期:2012.7.26
Directed screening of nitrile compounds revealed 3 as a highly potent cathepsin K inhibitor but with cathepsin S activity and very poor stability to microsomes. Synthesis of compounds with reduced molecular complexity, such as 7, revealed key SAR and demonstrated that baseline physical properties and in vitro stability were in fact excellent for this series. The tricycle carboline P3 unit was discovered by hypothesis-based design using existing structural information. Optimization using small substituents, knowledge from matched molecular pairs, and control of lipophilicity yielded compounds very close to the desired profile, of which 34 (AZD4996) was selected on the basis of pharmacokinetic profile.