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Evaluation of bioactive compounds from Boswellia serrata against SARS-CoV-2

机译:齿叶乳香抗SARS-CoV-2的生物活性化合物的评价

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© 2021, The Author(s) under exclusive licence to Society for Plant Research.With the COVID-19 pandemic still wreaking havoc worldwide, new variants being discovered every month in some parts of the globe due to the mutating nature of the virus. There is no specific solution for this highly transmissible disease. In search of a lead molecule for the discovery and development of drug, extensive research is being conducted throughout the world. Many synthetic drugs are already in clinical trials and some are utilized for the treatment of this viral infection. Apart from synthetic drugs, phytocompounds from plants act as a potential drug candidate which can inhibit the growth of virus and thus able to prevent the viral infection. In this study, 26 ligands (bioactive compounds) from Boswellia serrata (an important medicinal plant) were tested against SARS-CoV-2 by using computational method. Selected ligands were shortlisted using Lipinski’s rule and then subjected to molecular docking against one of the main proteins of SARS-CoV-2, i.e., Mpro. Out of these compounds, Euphane, Ursane, α-Amyrin, Phytosterols, and 2,3-Dihydroxyurs-12-en-28-oic acid were potential to inhibit the Mpro activity with binding energies of − 10.47 kcal/mol, − 10.41 kcal/mol, − 9.99 kcal/mol, − 9.94 kcal/mol and − 9.72 kcal/mol respectively. A comparative study was performed using the best five ligands against four possible drug targets of SARS-CoV-2. It was found that Euphane showed highest negative binding energy against all the four crucial targets of SARS-CoV-2. Further, in-vitro experimentation is required to validate the use of Euphane as a potent drug against SARS-CoV-2.
机译:© 2021 年,作者获得植物研究学会的独家许可,由于 COVID-19 大流行仍在全球肆虐,由于病毒的变异性质,全球某些地区每个月都会发现新的变种。对于这种高度传染性的疾病,没有特定的解决方案。为了寻找用于药物发现和开发的先导分子,全世界都在进行广泛的研究。许多合成药物已经在临床试验中,其中一些用于治疗这种病毒感染。除合成药物外,植物中的植物化合物也是一种潜在的候选药物,可以抑制病毒的生长,从而能够预防病毒感染。本研究采用计算方法对齿叶乳香(一种重要的药用植物)的26个配体(生物活性化合物)进行了SARS-CoV-2检测。使用 Lipinski 规则筛选选定的配体,然后与 SARS-CoV-2 的主要蛋白质之一(即 Mpro)进行分子对接。在这些化合物中,Euphane、Ursane、α-Amyrin、植物甾醇和 2,3-二羟基熊-12-烯-28-酸具有抑制 Mpro 活性的潜力,结合能分别为 -10.47 kcal/mol、-10.41 kcal/mol、-9.99 kcal/mol、-9.94 kcal/mol 和 -9.72 kcal/mol。使用最好的五种配体针对 SARS-CoV-2 的四种可能的药物靶点进行了比较研究。结果发现,Euphane 对 SARS-CoV-2 的所有四个关键靶标表现出最高的负结合能。此外,需要进行体外实验来验证 Euphane 作为对抗 SARS-CoV-2 的强效药物的使用。

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