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芝麻酚的抗焦虑作用,可能通过与GABAkine的相互作用途径实现。

Anxiolytic Effect of Sesamol, Possibly Through the GABAkine Interaction Pathway.

作者信息

Islam Md Tahajul, Malik Abdul, Alshememry Abdullah K, Chowdhury Raihan, Bhuia Md Shimul, Fatima Sabiha, Hossen Md Samim, Rakib Asraful Islam, Mollah Faysal, Akbor Md Showkoth, Bappi Mehedi Hasan, Saim Md Abu, Islam Muhammad Torequl

机构信息

Department of Pharmacy, Bangabandhu Sheikh Mujibur Rahman Science and Technology University, Gopalganj, Bangladesh.

Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia.

出版信息

Drug Dev Res. 2024 Dec;85(8):e70028. doi: 10.1002/ddr.70028.

Abstract

Plant-based components have helped generate novel lead molecules and scaffolds for anxiety research in psychopharmacology. The present study examined the anxiolytic properties of sesamol (SES), a phenolic lignan derived from Sesamum indicum, employing both in vivo and computational methods to understand its mechanisms of action. In this experiment, adult Swiss albino mice received various doses of SES (25 and 50 mg/kg, p.o.) orally. Afterward, a series of behavioral assessments, including open field, swing, hole cross, and light-dark testing, were conducted. The impact of the GABAergic agonist diazepam (DZP-1 mg/kg, i.p.) along with the antagonist flumazenil (FLU-0.1 mg/kg, i.p.) has been studied as provided concurrently with the SES-50 group. Computational studies were performed to comprehend the interaction between SES and GABA receptor subunits (α and α). The results of our investigation revealed that SES dose-dependently and significantly (p < 0.05) reduced the number of square crosses, hole crosses, swings, grooming, and rearing along with a reduction of light residence time in animals. When combined with DZP, SES-50 significantly reduced all these parameters, while altering with FLU-0.1. The molecular docking analysis showed that the SES has a relatively good binding score (-5.03 ± 0.15 and -5.25 ± 0.23 kcal/mol) with GABA receptor α and α subunits, respectively. The SES triggers anxiolytic effects via GABA receptor α and α subunit interactions. Furthermore, precise and comprehensive preclinical research must be considered to validate potential SES targets for anxiolytic impact, clinical trial efficacy, and safety.

摘要

植物性成分有助于为精神药理学中的焦虑症研究生成新的先导分子和骨架。本研究采用体内和计算方法研究了芝麻酚(SES)的抗焦虑特性,芝麻酚是一种从芝麻中提取的酚类木脂素,以了解其作用机制。在本实验中,成年瑞士白化小鼠口服不同剂量的SES(25和50mg/kg,口服)。随后,进行了一系列行为评估,包括旷场试验、摆动试验、穿洞试验和明暗箱试验。同时研究了GABA能激动剂地西泮(DZP-1mg/kg,腹腔注射)和拮抗剂氟马西尼(FLU-0.1mg/kg,腹腔注射)与SES-50组同时给药时的影响。进行了计算研究以了解SES与GABA受体亚基(α和α)之间的相互作用。我们的研究结果表明,SES剂量依赖性地且显著地(p<0.05)减少了动物的方格穿越次数、穿洞次数、摆动次数、梳理次数和直立次数,同时减少了在明处的停留时间。与DZP联合使用时,SES-50显著降低了所有这些参数,但与FLU-0.1联合使用时则有所改变。分子对接分析表明,SES与GABA受体α和α亚基的结合分数相对较好(分别为-5.03±0.15和-5.25±0.23kcal/mol)。SES通过与GABA受体α和α亚基相互作用触发抗焦虑作用。此外,必须考虑进行精确而全面的临床前研究,以验证SES在抗焦虑作用、临床试验疗效和安全性方面的潜在靶点。

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