化学
吡咯烷
药代动力学
体内
亲脂性
药理学
生物化学
立体化学
医学
生物
生物技术
作者
Elizabeth A. Jurica,Ximao Wu,Kristin N. Williams,Lauren Haque,Richard Rampulla,Arvind Mathur,Min Zhou,Gary Cao,Hong Cai,Tao Wang,Heng Liu,Carrie Xu,Lori Kunselman,Thomas M. Antrilli,Michael B. Hicks,Qin Sun,Elizabeth A. Dierks,Atsu Apedo,Douglas B. Moore,Kimberly A. Foster
标识
DOI:10.1016/j.bmc.2023.117273
摘要
GPR40 AgoPAMs are highly effective antidiabetic agents that have a dual mechanism of action, stimulating both glucose-dependent insulin and GLP-1 secretion. The early lipophilic, aromatic pyrrolidine and dihydropyrazole GPR40 AgoPAMs from our laboratory were highly efficacious in lowering plasma glucose levels in rodents but possessed off-target activities and triggered rebound hyperglycemia in rats at high doses. A focus on increasing molecular complexity through saturation and chirality in combination with reducing polarity for the pyrrolidine AgoPAM chemotype resulted in the discovery of compound 46, which shows significantly reduced off-target activities as well as improved aqueous solubility, rapid absorption, and linear PK. In vivo, compound 46 significantly lowers plasma glucose levels in rats during an oral glucose challenge yet does not demonstrate the reactive hyperglycemia effect at high doses that was observed with earlier GPR40 AgoPAMs.
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