化学
伤害
类阿片
止痛药
痛苦
药理学
体内
吗啡
不利影响
痛觉过敏
更安全的
功能(生物学)
药品
慢性疼痛
平滑肌
胃肠功能
受体
麻醉
阿片受体
生物活性
μ-阿片受体
作者
Pengtao Li,Yaofeng Zhao,Tong Yang,Lechun Ma,Zhanyu Niu,Zhonghua Zhang,Huiming Bao,Zhengkun Liu,Mingmin Huang,Hongyang Man,Shouliang Dong
标识
DOI:10.1021/acs.jmedchem.6c02406
摘要
Abstract Long-term opioid analgesia is limited by severe adverse effects. We propose an auto-antagonistic multitarget strategy incorporating NPFFR2-mediated counter-regulation to limit excessive opioid effects while preserving analgesia. Structure-guided optimization of MCRT yielded analogs 1, 4, and 9, which function as MOR/DOR/NPFFR2 triple agonists. Analog 1 provided pharmacological proof-of-concept, exhibiting characteristic bell-shaped antinociceptive and gastrointestinal dose−response profiles sensitive to RF-9 blockade. Together with its NPFFR2 agonism and no detectable NPFFR1 agonism in vitro, these findings support a contribution of NPFFR2-mediated counter-regulation to its self-limiting profile. In contrast, analogs 4 and 9 displayed dose-dependent analgesia and distinct in vivo profiles. All three analogs produced robust antinociception in CFA-induced inflammatory pain and showed no detectable tolerance or persistent gastrointestinal inhibition during repeated treatment, while analogs 1 and 4 showed no detectable withdrawal, conditioned place preference, or motor impairment. These findings support the auto-antagonistic strategy as a framework for developing safer analgesics.
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