Molecular Docking Studies of Some Natural Products Against SARS-CoV-2 Main Protease: Potential Therapeutic Agents for COVID-19

Gnanavel Sadhasivam
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Abstract

The severe form of respiratory disease (COVID-19), caused by SARS-COV-2 virus, has evolved into a pandemic is the defining global health crisis of our time and greatest challenge we have faced since second World War. Hence, the current situation demands an immediate need to explore all the possible therapeutic strategies that can be control spread of the diseases. We identified potent COVID-19 Mpro inhibitors based on molecular docking studies on 24 known antiviral natural compounds, which are from medicinal plants and marine sponges. The results revealed that 15 potential COVID-19 main protease inhibitors have been identified among the 24 natural compounds of plants and marine origin. The result further revealed that the selected natural products that has lower free binding energy is Halituline (-8.41 Kcal/mol). As these active compounds were extensively validated by molecular docking, the chance that at least few of these compounds could be bioactive is excellent.
部分抗sars - cov -2主蛋白酶天然产物与新冠病毒潜在治疗剂的分子对接研究
由SARS-COV-2病毒引起的严重呼吸道疾病(COVID-19)已演变成一场大流行,是我们这个时代决定性的全球卫生危机,也是我们自第二次世界大战以来面临的最大挑战。因此,目前的情况迫切需要探索所有可能的治疗策略,以控制疾病的传播。通过对来自药用植物和海洋海绵的24种已知抗病毒天然化合物的分子对接研究,我们发现了有效的COVID-19 Mproinhibitors。结果显示,从24种植物和海洋来源的天然化合物中鉴定出15种潜在的COVID-19主要蛋白酶抑制剂。结果进一步表明,选择的天然产物为Halituline(-8.41 Kcal/mol),其自由结合能较低。由于这些活性化合物通过分子对接得到了广泛的验证,因此这些化合物中至少有少数具有生物活性的可能性很大。
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