mediator of energy homeostasis and plays a role in metabolic and CNS disorders. The modeling-supported design, synthesis and multi-parameter optimization (biological activity, solubility, metabolic stability, hERG) of novel quinazoline derivatives as MCHR1 antagonists are described. The in vivo proof of principle for weight loss with a lead compound from this series is exemplified. Clusters of refined hMCHR1
黑色素浓缩激素(
MCH)是能量稳态的重要介质,在代谢和中枢神经系统疾病中发挥作用。描述了作为
MCHR1
拮抗剂的新型
喹唑啉衍
生物的模型支持设计、合成和多参数优化(
生物活性、溶解度、代谢稳定性、hERG)。举例说明了该系列先导化合物减肥原理的体内证明。开发了源自 β2-
肾上腺素能受体 X 射线结构(包括细胞外环)的精制 h
MCHR1 同源模型簇,并用于指导设计。