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来自[具体来源未提及]的化学成分及其作为抗SARS-CoV-2潜在抗病毒剂的评价。

Chemical constituents from and their evaluation as potential antiviral agents against SARS-CoV-2.

作者信息

Hassan Ahmed R, Sanad Ibrahim M, Allam Ahmed E, Abouelela Mohamed E, Sayed Ahmed M, Emam Shalabia S, El-Kousy Salah M, Shimizu Kuniyoshi

机构信息

Medicinal and Aromatic Plants Department, Desert Research Center El-Matariya 11753 Cairo Egypt

Department of Pharmacognosy, Faculty of Pharmacy, Al-Azhar University Assiut 71524 Egypt

出版信息

RSC Adv. 2021 Sep 30;11(51):32346-32357. doi: 10.1039/d1ra05927k. eCollection 2021 Sep 27.

DOI:10.1039/d1ra05927k
PMID:35495487
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9042241/
Abstract

Wild plants growing in the Egyptian deserts are facing abiotic stress, which can lead to interesting & safe natural products possessing potential chemical profiles. Consequently, our study was designed to assess the phytochemical composition of the aerial parts of (family Plumbaginaceae) growing wild in Egypt for the first time. In addition, screening and molecular dynamic simulation of all isolated phytoconstituents were run against the main protease (M) and spike glycoprotein SARS-CoV-2 targets which displayed a crucial role in the replication of this virus. Our findings showed that the phytochemical investigation of 70% ethanol extract of aerial parts afforded six known flavonoids; myricetin 3--(2''-galloyl)-β-d-galactopyranoside (1), myricetin 3--(2''-galloyl)-α-l-rhamnopyranoside (2), myricetin 3--(3''-galloyl)-α-l-rhamnopyranoside (3), myricetin 3--β-d-galactopyranoside (5), apigenin (6), myricetin (7), along with two known phenolic acid derivatives; gallic acid (4) and ethyl gallate (8). Docking studies revealed that compounds (1) & (2) were the most effective compounds with binding energies of -17.9664 & -18.6652 kcal mol against main protease and -18.9244 & -18.9272 kcal mol towards spike glycoprotein receptors, respectively. The molecular dynamics simulation experiment agreed with the docking study and reported stability of compounds (1) and (2) against the selected targets which was proved by low RMSD for the tested components. Moreover, the structure-activity relationship revealed that the presence of the galloyl moiety is necessary for enhancement of the activity. Overall, the galloyl substructure of myricetin 3--glycoside derivatives (1 and 2) isolated from may be a possible lead for developing COVID-19 drugs. Further, and assays are recommended to support our studies.

摘要

生长在埃及沙漠中的野生植物正面临非生物胁迫,这可能会产生具有潜在化学特征的有趣且安全的天然产物。因此,我们的研究首次旨在评估在埃及野生生长的白花丹科植物地上部分的植物化学成分。此外,针对在该病毒复制中起关键作用的主要蛋白酶(M)和刺突糖蛋白SARS-CoV-2靶点,对所有分离出的植物成分进行了对接筛选和分子动力学模拟。我们的研究结果表明,对该植物地上部分70%乙醇提取物的植物化学研究得到了六种已知的黄酮类化合物:杨梅素3 - -(2'' - 没食子酰基)-β - d - 吡喃半乳糖苷(1)、杨梅素3 - -(2'' - 没食子酰基)-α - l - 吡喃鼠李糖苷(2)、杨梅素3 - -(3'' - 没食子酰基)-α - l - 吡喃鼠李糖苷(3)、杨梅素3 - -β - d - 吡喃半乳糖苷(5)、芹菜素(6)、杨梅素(7),以及两种已知的酚酸衍生物:没食子酸(4)和没食子酸乙酯(8)。对接研究表明,化合物(1)和(2)是最有效的化合物,它们对主要蛋白酶的结合能分别为 - 17.9664和 - 18.6652千卡/摩尔,对刺突糖蛋白受体的结合能分别为 - 18.9244和 - 18.9272千卡/摩尔。分子动力学模拟实验与对接研究结果一致,报告了化合物(1)和(2)对所选靶点的稳定性,这通过测试成分的低均方根偏差得到证明。此外,构效关系表明没食子酰基部分的存在对于增强活性是必要的。总体而言,从该植物中分离出的杨梅素3 - -糖苷衍生物(1和2)的没食子酰基亚结构可能是开发抗COVID - 19药物的一个潜在先导。此外,建议进行进一步的实验和分析来支持我们的研究。

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