Physicochemical and structural evaluation of natural products as a potential source for viral disease treatment

Fatemeh Mollaamin
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Abstract

This research article aims to investigate six selected medicinal plants of Achillea millefolium (Yarrow), Alkanet, Rumex patientia (Patience dock), Dill, Tarragon, and Sweet fennel including some principal chemical compounds of achillin, alkannin, cuminaldehyde, dillapiole, estragole and fenchone. The definitive roles of these medicinal plants in Omicron treatment have been investigated through quantum mechanics and molecular mechanic methods. However, given the unprecedented challenges faced should be given a fair amount of consideration for contribution during this pandemic. In this work, it has been investigated the compounds of achillin, alkannin, cuminaldehyde, dillapiole, estragole and fenchone as a probable anti pandemic Omicron receptor derived from medicinal plants. Anti-Omicron drugs through the hydrogen bonding through physico-chemical properties of medicinal ingredients bound to the database amino acids fragment of Tyr-Met-His as the selective zone of the Omicron have been estimated with infrared (IR) and nuclear magnetic resonance (NMR) methods. A comparison of these structures has provided new insights for the design of substrate-based anti-targeting Omicron. Finally, five medicinal ingredients of achillin, alkannin, cuminaldehyde, dillapiole, and estragole bound to TMH have conducted to a Monte Carlo (MC) simulation for evaluating the absorbance of these inhibitor-active site complexes. Here, we used the network pharmacology, metabolite analysis, and molecular simulation to figure out the biochemical basis of the health-raising influence of medicinal plants. This research article peruses the drug ability, metabolites and potential interaction of some medicinal plants with Coronavirus-induced pathogenesis.
作为病毒性疾病治疗潜在来源的天然产品的理化和结构评估
本文旨在研究六种精选的药用植物:欧蓍草(Achillea millefolium)、阿尔卡内特(Alkanet)、忍冬藤(Rumex patientia)、莳萝(Dill)、龙蒿(Tarragon)和甜茴香(Sweet fennel),包括一些主要的化学成分:苦味素(achillin)、丹宁(alkannin)、积雪草醛(cuminaldehyde)、莳萝酚(dillapiole)、雌甾醇(estragole)和茴香酮(fenchone)。已通过量子力学和分子力学方法研究了这些药用植物在奥米克龙治疗中的明确作用。然而,考虑到所面临的前所未有的挑战,在这次大流行病期间,应公平地考虑这些药用植物的贡献。在这项工作中,研究人员对从药用植物中提取的可能作为抗大流行病 Omicron 受体的 achillin、alkannin、cuminaldehyde、dillapiole、estragole 和 fenchone 等化合物进行了研究。通过红外(IR)和核磁共振(NMR)方法,估算了抗奥米克龙药物与作为奥米克龙选择区的 Tyr-Met-His 数据库氨基酸片段结合的药用成分的物理化学特性,以及这些药用成分与奥米克龙结合的氢键。这些结构的比较为设计基于底物的抗靶向奥米克龙提供了新的见解。最后,我们对与 TMH 结合的五种药用成分(阿奇霉素、鞣花素、积雪草醛、莳萝酚和雌甾醇)进行了蒙特卡罗(Monte Carlo,MC)模拟,以评估这些抑制剂-活性位点复合物的吸光度。在此,我们利用网络药理学、代谢物分析和分子模拟等方法,找出了药用植物保健作用的生化基础。本文探讨了一些药用植物的药效、代谢产物以及与冠状病毒诱导的致病机制的潜在相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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