[EN] SULFONYLPIPERAZINE DERIVATIVES THAT INTERACT WITH GLUCOKINASE REGULATORY PROTEIN FOR THE TREATMENT OF DIABETES<br/>[FR] DÉRIVÉS DE SULFONYLPIPÉRAZINE QUI INTERAGISSENT AVEC LA PROTÉINE RÉGULATRICE DE LA GLUCOKINASE POUR LE TRAITEMENT DU DIABÈTE
申请人:AMGEN INC
公开号:WO2012027261A1
公开(公告)日:2012-03-01
The present invention relates to compounds of Formula I, or pharmaceutically acceptable salts thereof, that interact with glucokinase regulatory protein. In addition, the present invention relates to methods of treating type 2 diabetes, and other diseases and/or conditions where glucokinase regulatory protein is involved using the compounds, or pharmaceutically acceptable salts thereof, and pharmaceutical compositions that contain the compounds, or pharmaceutically acceptable salts thereof.
COMPOUNDS THAT INTERACT WITH GLUCOKINASE REGULATORY PROTEIN FOR THE TREATMENT OF DIABETES
申请人:Ashton Kate
公开号:US20120225854A1
公开(公告)日:2012-09-06
The present invention relates to compounds of Formula I, or pharmaceutically acceptable salts thereof,
that interact with glucokinase regulatory protein. In addition, the present invention relates to methods of treating type 2 diabetes, and other diseases and/or conditions where glucokinase regulatory protein is involved using the compounds, or pharmaceutically acceptable salts thereof, and pharmaceutical compositions that contain the compounds, or pharmaceutically acceptable salts thereof.
SULFONYLPIPERAZINE DERIVATIVES THAT INTERACT WITH GLUCOKINASE REGULATORY PROTEIN FOR THE TREATMENT OF DIABETES
申请人:Amgen Inc.
公开号:EP2609081A1
公开(公告)日:2013-07-03
US8431563B2
申请人:——
公开号:US8431563B2
公开(公告)日:2013-04-30
Small Molecule Disruptors of the Glucokinase–Glucokinase Regulatory Protein Interaction: 2. Leveraging Structure-Based Drug Design to Identify Analogues with Improved Pharmacokinetic Profiles
作者:David J. St. Jean、Kate S. Ashton、Michael D. Bartberger、Jie Chen、Samer Chmait、Rod Cupples、Elizabeth Galbreath、Joan Helmering、Fang-Tsao Hong、Steven R. Jordan、Longbin Liu、Roxanne K. Kunz、Klaus Michelsen、Nobuko Nishimura、Lewis D. Pennington、Steve F. Poon、Darren Reid、Glenn Sivits、Markian M. Stec、Seifu Tadesse、Nuria Tamayo、Gwyneth Van、Kevin C. Yang、Jiandong Zhang、Mark H. Norman、Christopher Fotsch、David J. Lloyd、Clarence Hale
DOI:10.1021/jm4016747
日期:2014.1.23
In the previous report, we described the discovery and optimization of novelsmallmoleculedisruptors of the GK-GKRP interaction culminating in the identification of 1 (AMG-1694). Although this analogue possessed excellent in vitro potency and was a useful toolcompound in initial proof-of-concept experiments, high metabolic turnover limited its advancement. Guided by a combination of metabolite identification