Discovery and Optimization of Potent GPR40 Full Agonists Containing Tricyclic Spirocycles

Yingcai Wang(Amgen (United States)), Jiwen Liu(Amgen (United States)), Paul J. Dransfield(Amgen (United States)), Liusheng Zhu(Amgen (United States)), Zhongyu Wang(Amgen (United States)), Xiaohui Du(Amgen (United States)), Xian‐Yun Jiao(Amgen (United States)), Yongli Su(Amgen (United States)), An‐Rong Li(Amgen (United States)), Sean P. Brown(Amgen (United States)), Annie Kasparian(Amgen (United States)), Marc Vimolratana(Amgen (United States)), Ming Yu(Amgen (United States)), Vatee Pattaropong(Amgen (United States)), Jonathan B. Houze(Amgen (United States)), Gayathri Swaminath(Amgen (United States)), Thanhvien Tran(Amgen (United States)), Khanh Q. Nguyen(Amgen (United States)), Qi Guo(Amgen (United States)), Jane Zhang(Amgen (United States)), Run Zhuang(Amgen (United States)), Frank Li(Amgen (United States)), Lynn Miao(Amgen (United States)), Michael D. Bartberger(Amgen (United States)), Tiffany L. Correll(Amgen (United States)), David Chow(Amgen (United States)), Simon Wong(Amgen (United States)), Jian Luo(Amgen (United States)), Daniel C.-H. Lin(Amgen (United States)), Julio C. Medina(Amgen (United States))
ACS Medicinal Chemistry Letters
May 7, 2013
Cited by 81Open Access
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Abstract

GPR40 (FFAR1 or FFA1) is a target of high interest being pursued to treat type II diabetes due to its unique mechanism leading to little risk of hypoglycemia. We recently reported the discovery of AM-1638 (2), a potent full agonist of GPR40. In this report, we present the discovery of GPR40 full agonists containing conformationally constrained tricyclic spirocycles and their structure-activity relationships leading to more potent agonists such as AM-5262 (26) with improved rat PK profile and general selectivity profile. AM-5262 enhanced glucose stimulated insulin secretion (mouse and human islets) and improved glucose homeostasis in vivo (OGTT in HF/STZ mice) when compared to AM-1638.


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