化学
抗惊厥药
药理学
效力
抗癫痫药
连接器
癫痫
体内
药品
立体化学
体外
神经科学
生物化学
医学
心理学
生物技术
计算机科学
生物
操作系统
作者
Yangming Zhang,Haiyan Xu,Haining Hu,Fuyun Tian,Fei Chen,Huanan Liu,Zhan Li,Xiaoping Pi,Jie Liu,Zhaobing Gao,Fajun Nan
标识
DOI:10.1021/acs.jmedchem.0c02252
摘要
We previously reported that P-retigabine (P-RTG), a retigabine (RTG) analogue bearing a propargyl group at the nitrogen atom in the linker of RTG, displayed moderate anticonvulsant efficacy. Recently, our further efforts led to the discovery of HN37 (pynegabine), which demonstrated satisfactory chemical stability upon deleting the ortho liable -NH2 group and installing two adjacent methyl groups to the carbamate motif. HN37 exhibited enhanced activation potency toward neuronal Kv7 channels and high in vivo efficacy in a range of pre-clinical seizure models, including the maximal electroshock test and a 6 Hz model of pharmacoresistant limbic seizures. With its improved chemical stability, strong efficacy, and better safety margin, HN37 has progressed to clinical trial in China for epilepsy treatment.
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