反激动剂
生长素
兴奋剂
化学
渗透剂(生化)
部分激动剂
药理学
受体
内源性激动剂
生物化学
生物
有机化学
多巴胺受体D1
作者
William McCoull,Peter Barton,Alastair Brown,Suzanne S. Bowker,Jennifer Cameron,David S. Clarke,Robert D. M. Davies,Alexander G. Dossetter,Anne Ertan,Mark L. Fenwick,Clive Green,J. L. Holmes,Nathaniel G. Martin,David J. Masters,Jane E. Moore,Nicholas J. Newcombe,Claire Newton,Helen Pointon,Graeme R. Robb,Christopher Sheldon
摘要
Ghrelin plays a major physiological role in the control of food intake, and inverse agonists of the ghrelin receptor (GHS-R1a) are widely considered to offer utility as antiobesity agents by lowering the set-point for hunger between meals. We identified an acylurea series of ghrelin modulators from high throughput screening and optimized binding affinity through structure-activity relationship studies. Furthermore, we identified specific substructural changes, which switched partial agonist activity to inverse agonist activity, and optimized physicochemical and DMPK properties to afford the non-CNS penetrant inverse agonist 22 (AZ-GHS-22) and the CNS penetrant inverse agonist 38 (AZ-GHS-38). Free feeding efficacy experiments showed that CNS exposure was necessary to obtain reduced food intake in mice, and it was demonstrated using GHS-R1a null and wild-type mice that this effect operates through a mechanism involving GHS-R1a.
科研通智能强力驱动
Strongly Powered by AbleSci AI