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首页> 外文期刊>Journal of enzyme inhibition and medicinal chemistry. >Design, synthesis and biological evaluation of tricyclic pyrazolo[1,5- c ][1,3]benzoxazin-5(5 H )-one scaffolds as selective BuChE inhibitors
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Design, synthesis and biological evaluation of tricyclic pyrazolo[1,5- c ][1,3]benzoxazin-5(5 H )-one scaffolds as selective BuChE inhibitors

机译:选择性BuChE抑制剂三环吡唑并[1,5-c] [1,3]苯并嗪-5(5 H)-one支架的设计,合成及生物学评价

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Based on the structural analysis of tricyclic scaffolds as butyrylcholinesterase (BuChE) inhibitors, a series of pyrazolo[1,5-c][1,3]benzoxazin-5(5H)-one derivatives were designed, synthesized and evaluated for their acetylcholinesterase (AChE) and BuChE inhibitory activity. Compounds with 5-carbonyl and 7- or/and 9-halogen substitutions showed potential BuChE inhibitory activity, among which compounds 6a, 6c and 6g showed the best BuChE inhibition (IC50?=?1.06, 1.63 and 1.63?μM, respectively). The structure-activity relationship showed that the 5-carbonyl and halogen substituents significantly influenced BuChE activity. Compounds 6a and 6g were found nontoxic, lipophilic and exhibited remarkable neuroprotective activity and mixed-type inhibition against BuChE (Ki?=?7.46 and 3.09?μM, respectively). Docking studies revealed that compound 6a can be accommodated into BuChE via five hydrogen bonds, one Pi-Sigma interaction and three Pi-Alkyl interactions.
机译:基于三环支架作为丁酰胆碱酯酶(BuChE)抑制剂的结构分析,设计,合成了一系列吡唑并[1,5-c] [1,3]苯并恶嗪-5(5H)-one衍生物,并对其乙酰胆碱酯酶进行了评估( AChE)和BuChE抑制活性。具有5-羰基和7-或/和9-卤素取代基的化合物显示出潜在的BuChE抑制活性,其中化合物6a,6c和6g显示出最佳的BuChE抑制作用(IC 50分别为≤1.06、1.63和1.63μM。结构活性关系表明5-羰基和卤素取代基显着影响BuChE活性。发现化合物6a和6g无毒,亲脂并显示出显着的神经保护活性和对BuChE的混合型抑制作用(分别为Kiα=?7.46和3.09?μM)。对接研究表明,化合物6a可通过五个氢键,一个Pi-Sigma相互作用和三个Pi-烷基相互作用被容纳在BuChE中。

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