化学
部分
变构调节
抽搐的
立体化学
受体
变构调节剂
选择性
阿片受体
体内
效力
药理学
衍生工具(金融)
结构-活动关系
化学合成
体外
类阿片
组合化学
环丙烷
功能选择性
生物化学
双环分子
铅化合物
西格玛受体
生物活性
毛茛
作者
Mengchu Li,Sherrice Zhang,Allison B. Powell,H. C. Stewart,Lori N. Ourlian,Steve R. Vander Roest,Andrew Alt,Jason C. Rech,Andrew D. White,John R. Traynor
标识
DOI:10.1021/acs.jmedchem.6c00303
摘要
Positive allosteric modulators (PAMs) of the delta-opioid receptor (DOR) enhance endogenous opioid signaling while avoiding the convulsant liability of orthosteric agonists. However, the prototypical DOR-PAM, BMS-986187, also potentiates mu-opioid receptor (MOR) signaling, raising concerns regarding respiratory depression and abuse liability. Here, we report a structure-activity study of the benzyloxy moiety of BMS-986187 to improve selectivity for DOR over MOR, while retaining DOR-PAM potency. Fifty-two new analogues and 12 previously reported ones featuring mono- and disubstitution of the benzyl ring and phenyl-heterocycle replacements were synthesized and evaluated in β-arrestin2 recruitment assays. Ortho-substituted derivatives consistently enhanced DOR-PAM potency, although often increased MOR-PAM activity. One pyridyl derivative (compound 35) retained high DOR-PAM potency and efficacy (EC50 = 0.1 μM, Emax = 91%) with no detectable MOR activity. In mice, compound 35 enhanced DOR-mediated reversal of nitroglycerin-induced hyperalgesia, an effect absent in DOR-knockout mice, without enhancing MOR-mediated antinociception, demonstrating in vivo selectivity.
科研通智能强力驱动
Strongly Powered by AbleSci AI