芍药苷抑制胆碱酯酶活性:分子动力学模拟及体外机制研究。

IF 3.4 Q2 BIOCHEMICAL RESEARCH METHODS
Biochemistry Research International Pub Date : 2024-12-19 eCollection Date: 2024-01-01 DOI:10.1155/bri/9192496
Mohnad Abdalla, Asaad Khalid, Jasmine Hedayati, Muhammad Nabeel Ghayur
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引用次数: 0

摘要

阿尔茨海默病(AD)是一种神经系统疾病,是世界上导致记忆丧失的主要原因之一。阿尔茨海默病的特点是由脑细胞变性引起的认知和功能下降的后遗症。芍药苷是在芍药科植物中发现的一种单萜类糖苷,以其包括痴呆症在内的药用特性而闻名。本项目报道了芍药苷对乙酰胆碱酯酶(AChE)和丁基胆碱酯酶(BuChE)两种相关胆碱酯酶(ChE)的作用。芍药苷对AChE (0.06-1 mg/mL)和BuChE (0.007-1 mg/mL)酶的抑制均呈剂量依赖性(最大抑制量为1 mg/mL), AChE酶的最大抑制量为90.3±1.4%,BuChE酶的最大抑制量为99.4±0.3%。化合物对AChE的EC50值为0.52 mg/mL(0.18 ~ 1.52),对BuChE的EC50值为0.13 mg/mL(0.08 ~ 0.21)。所观察到的抗ChE作用类似于已知的ChE阻滞剂毒豆碱介导的作用。此外,通过100 ns的分子对接和分子动力学模拟,研究了芍药苷与AChE和BuChE酶的分子相互作用,结果表明芍药苷通过氢键和水桥接与AChE和BuChE酶的许多氨基酸相互作用。本研究揭示了芍药苷对AChE和BuChE酶的抑酶潜力。由于这种抑制活性,该化学物质可能会增加乙酰胆碱水平,并可能用于治疗阿尔茨海默氏症痴呆。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cholinesterase Inhibitory Activity of Paeoniflorin: Molecular Dynamics Simulation, and In Vitro Mechanistic Investigation.

Alzheimer's disease (AD), a neurological disorder, is one of the major reasons for memory loss in the world. AD is characterized by a sequela of cognitive and functional decline caused by brain cell degeneration. Paeoniflorin is a monoterpenoid glycoside found in plants of the Paeoniaceae family, which are known for their medicinal properties including dementia. In this project, we report actions of paeoniflorin on the two related cholinesterases (ChE): acetylChE (AChE) and butyrylChE (BuChE). Paeoniflorin, in a dose-dependent (maximum inhibition at 1 mg/mL) manner, inhibited both AChE (0.06-1 mg/mL) and BuChE (0.007-1 mg/mL) enzymes with maximum inhibition of AChE enzyme at 90.3 ± 1.4%, while 99.4 ± 0.3% for BuChE enzyme. The EC50 value for the inhibitory effect of the compound against AChE was 0.52 mg/mL (0.18-1.52), while against BuChE was 0.13 mg/mL (0.08-0.21). The observed ani-ChE action was like an effect also mediated by the known ChE blocker physostigmine. Molecular interactions between paeoniflorin and both ChE enzymes were additionally sought via molecular docking and molecular dynamics simulations for 100 ns, that showed paeoniflorin interacted with the active-site gorge of AChE and BuChE via hydrogen bonds and water bridging with the many amino acids of the AChE and BuChE enzymes. This study presents the ChE inhibitory potential of paeoniflorin against both AChE and BuChE enzymes. With this kind of inhibitory activity, the chemical can potentially increase ACh levels and may have use in the treatment of dementia of AD.

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来源期刊
Biochemistry Research International
Biochemistry Research International BIOCHEMICAL RESEARCH METHODS-
CiteScore
6.30
自引率
0.00%
发文量
27
审稿时长
14 weeks
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