Naturally Occurring Green Tea Polyphenols as Anti-Mycobacterial Agents

Suraj N. Mali, Anima Pandey
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Abstract

Tuberculosis (TB) is a global health burden especially in tropical countries. Extensive increments in MDR (Multidrug resistance (MDR): Resistance to at least both isoniazid and rifampicin.) and XDR (Extensive drug resistance (XDR): Resistance to any fluoroquinolone, and at least one of three second-line injectable drugs (capreomycin, kanamycin, and amikacin), in addition to multidrug resistance) tuberculosis highlights the ineffectiveness of established anti-TB agents. There is an urgent necessity to identify potent anti-TB agents with unique mechanisms. Green tea and Black tea polyphenols have great potential to inhibit viruses including SARS-COV-2, bacterial strains, etc. In this context, we have screened and identified 65 Green tea bioactive compounds against four mycobacterial pantothenate synthetase and enoyl acyl carrier enzymes. Our molecular docking results revealed that Theaflavin-3-gallate had a higher binding affinity against 2X22 and 3IVX targets with docking scores of −134.13 and −135.592 Kcal/mol, respectively. Furthermore, our molecular dynamics simulations for 10 ns resulted better stabilities of these complexes. We also evaluated in silico drug-likeness and toxicity profiles for the studied polyphenols. Our in silico toxicity analysis suggested that these polyphenols would exhibit lesser toxicity such as eye corrosion, skin irritations, etc. Thus, our present study would provide better insights on studying naturally occurring polyphenols as potential anti-TB agents.
天然绿茶多酚作为抗分枝杆菌剂
结核病是一种全球卫生负担,特别是在热带国家。MDR(多药耐药(MDR):至少对异烟肼和利福平都耐药)和XDR(广泛耐药(XDR):除了多药耐药外,对任何氟喹诺酮类药物以及三种二线注射药物(自旋霉素、卡那霉素和阿米卡星)中的至少一种耐药)结核病的广泛增加突出了现有抗结核药物的无效。迫切需要确定具有独特机制的强效抗结核药物。绿茶和红茶多酚对SARS-COV-2、细菌菌株等病毒有很大的抑制潜力。在此背景下,我们筛选并鉴定了65种绿茶生物活性化合物,抗4种分枝杆菌泛酸合成酶和烯酰酰基载体酶。我们的分子对接结果显示,茶黄素-3-没食子酸酯对2X22和3IVX靶点具有更高的结合亲和力,对接分数分别为−134.13和−135.592 Kcal/mol。此外,我们在10 ns的分子动力学模拟中发现这些配合物具有更好的稳定性。我们还对所研究的多酚进行了药物相似性和毒性评估。我们的硅毒性分析表明,这些多酚会表现出较小的毒性,如眼睛腐蚀,皮肤刺激等。因此,我们目前的研究将为研究天然存在的多酚作为潜在的抗结核药物提供更好的见解。
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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