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Paraherquamides——驱虫药的新希望和巨大期望:计算研究。

Paraherquamides - A new hope and great expectations of anthelmintic agents: Computational studies.

机构信息

Department of Pharmaceutical Chemistry, Faculty of Pharmacy, King Abdulaziz University, Jeddah, Saudi Arabia.

Department of Natural Products and Alternative Medicine, Faculty of Pharmacy, King Abdulaziz University, Jeddah, Saudi Arabia.

出版信息

PLoS One. 2024 Nov 7;19(11):e0312009. doi: 10.1371/journal.pone.0312009. eCollection 2024.

Abstract

Nematode infections impose a significant health and economic burden, particularly as parasites develop resistance to existing treatments and evade host defenses. This study explores the efficacy of 48 paraherquamide analogs, a class of polycyclic spiro-oxindole alkaloids with unique structural features, as potential anthelmintic agents. Employing advanced computational methods, including molecular docking, MM-GBSA, and molecular dynamics simulations, we assessed the interaction of these analogs with the Ls-AchBP receptor, a model for nematode neurotransmission. Among the analogs studied, Paraherquamide K, Mangrovamide A, and Chrysogenamide A showed comparable docking and MM-GBSA scores to the native antagonist. Notably, their binding interactions exhibited slight distinction attributed to structural differences, such as the absence of a di-oxygenated 7-membered ring. Additionally, these analogs demonstrated robust binding stability in the molecular dynamic simulation studies and favorable pharmacokinetic properties in our in-silico ADME assessment. The insights gained from the study highlight the potential of these analogs as a basis for developing new therapeutics for nematode infections. The promising results from this computational analysis set the stage for subsequent in-vivo validations and pre-clinical studies, contributing to the arsenal against parasitic resistance.

摘要

线虫感染对健康和经济造成了重大负担,尤其是寄生虫对现有治疗方法产生耐药性并逃避宿主防御时更为严重。本研究探索了 48 种拟海兔毒素类似物作为潜在驱虫剂的功效。这些类似物是一类具有独特结构特征的多环螺环-氧吲哚生物碱,采用先进的计算方法,包括分子对接、MM-GBSA 和分子动力学模拟,我们评估了这些类似物与 Ls-AchBP 受体(一种线虫神经传递模型)的相互作用。在所研究的类似物中,Paraherquamide K、Mangrovamide A 和 Chrysogenamide A 的对接和 MM-GBSA 评分与天然拮抗剂相当。值得注意的是,它们的结合相互作用略有不同,这归因于结构差异,例如缺少一个双氧化的 7 元环。此外,这些类似物在分子动力学模拟研究中表现出良好的结合稳定性和有利的体内 ADME 评估中的药代动力学特性。该研究的结果强调了这些类似物作为开发线虫感染新疗法的基础的潜力。这项计算分析的有希望的结果为随后的体内验证和临床前研究奠定了基础,有助于对抗寄生虫耐药性的武器库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2dc6/11542861/7b24543756b8/pone.0312009.g001.jpg

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