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Structure-Based Scaffold Repurposing toward the Discovery of Novel Cholinesterase Inhibitors

机译:基于结构的脚手架重新探测了新型胆碱酯酶抑制剂的发现

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Cholinesterases (ChE) are well-known drug targets for the treatment of Alzheimer’s disease (AD). In continuation of work to develop novel cholinesterase inhibitors, we utilized a structure-based scaffold repurposing approach and discovered six novel ChE inhibitors from our recently developed DNA gyrase inhibitor library. Among the identified hits, two compounds (denoted 3 and 18 ) were found to be the most potent inhibitor of acetylcholinesterase (AChE, IC_(50) = 6.10 ± 1.01 μM) and butyrylcholinesterase (BuChE, IC_(50) = 5.50 ± 0.007 μM), respectively. Compound 3 was responsible for the formation of H-bond and π–π stacking interactions within the active site of AChE. In contrast, compound 18 was well fitted in the choline-binding pocket and catalytic site of BuChE. Results obtained from in vitro cytotoxicity assays and in silico derived physicochemical and absorption, distribution, metabolism, and excretion (ADME) properties indicate that repurposed scaffold 3 and 18 could be potential drug candidates for further development as novel ChE inhibitors.
机译:胆碱酯酶(CHE)是众所周知的药物靶标,用于治疗阿尔茨海默病(AD)。在开发新型胆碱酯酶抑制剂的工作中,我们利用了一种基于结构的支架修复方法,并发现了来自我们最近开发的DNA乙酶抑制剂库的六种新的Che抑制剂。在鉴定的命中中,发现两种化合物(表示 3和 18)是乙酰胆碱酯酶最有效的抑制剂(ache,IC_(50)= 6.10±1.01μm)和丁酰胆碱酯酶(Buche,IC_(50 )分别= 5.50±0.007μm)。化合物 3负责形成疼痛活性位点内的H键和π-π堆叠相互作用。相反,化合物 18在胆碱结合口袋和Buche的催化位点上均匀。从硅衍生的物理化学和吸收,分布,代谢和排泄(Adme)性质中,从体外细胞毒性测定和获得的结果表明,重新灌注的支架B和 18可以是潜在的药物候选者进一步发展为新型Che抑制剂。

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