Zhou You, Hu Yanyu, Lu Xin, Yang Hongyu, Li Qihang, Du Chenxi, Chen Yao, Hong Kwon Ho, Sun Haopeng
College of Biotechnology, Southwest University, Chongqing, China.
School of Pharmacy, China Pharmaceutical University, Nanjing, China.
Dose Response. 2020 Jun 29;18(2):1559325820938526. doi: 10.1177/1559325820938526. eCollection 2020 Apr-Jun.
Alzheimer disease (AD) is the most common form of dementia characterized by the loss of cognitive abilities through the death of central neuronal cells. In this study, structure-based virtual screens of 2 central nervous system-targeted libraries followed by molecular mechanics/generalized born surface area rescoring were performed to discover novel, selective butyrylcholinesterase (BChE) inhibitors, which are one of the most effective therapeutic strategies for the treatments in late-stage AD. Satisfyingly, compound 5 was identified as a highly selective low micromolar inhibitor of BChE (BChE IC = 1.4 μM). The binding mode prediction and kinetic analysis were performed to obtain detailed information about compound 5. Besides, a preliminary structure-activity relationship investigation of compound 5 was carried out for further development of the series. The present results provided a valuable chemical template with a novel scaffold for the development of selective BChE inhibitors.
阿尔茨海默病(AD)是最常见的痴呆形式,其特征是通过中枢神经元细胞死亡导致认知能力丧失。在本研究中,对两个中枢神经系统靶向文库进行了基于结构的虚拟筛选,随后进行分子力学/广义玻恩表面积重评分,以发现新型、选择性丁酰胆碱酯酶(BChE)抑制剂,这是晚期AD治疗中最有效的治疗策略之一。令人满意的是,化合物5被鉴定为BChE的高选择性低微摩尔抑制剂(BChE IC = 1.4 μM)。进行了结合模式预测和动力学分析,以获得有关化合物5的详细信息。此外,对化合物5进行了初步的构效关系研究,以进一步开发该系列。目前的结果为开发选择性BChE抑制剂提供了一个具有新型支架的有价值的化学模板。