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In Vitro In Silico and In Vivo Studies of Ursolic Acid as an Anti-Filarial Agent

机译:熊果酸作为抗丝虫剂的体外计算机和体内研究

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摘要

As part of our drug discovery program for anti-filarial agents from Indian medicinal plants, leaves of Eucalyptus tereticornis were chemically investigated, which resulted in the isolation and characterization of an anti-filarial agent, ursolic acid (UA) as a major constituent. Antifilarial activity of UA against the human lymphatic filarial parasite Brugia malayi using in vitro and in vivo assays, and in silico docking search on glutathione-s-transferase (GST) parasitic enzyme were carried out. The UA was lethal to microfilariae (mf; LC100: 50; IC50: 8.84 µM) and female adult worms (LC100: 100; IC50: 35.36 µM) as observed by motility assay; it exerted 86% inhibition in MTT reduction potential of the adult parasites. The selectivity index (SI) of UA for the parasites was found safe. This was supported by the molecular docking studies, which showed adequate docking (LibDock) scores for UA (−8.6) with respect to the standard antifilarial drugs, ivermectin (IVM −8.4) and diethylcarbamazine (DEC-C −4.6) on glutathione-s-transferase enzyme. Further, in silico pharmacokinetic and drug-likeness studies showed that UA possesses drug-like properties. Furthermore, UA was evaluated in vivo in B. malayi-M. coucha model (natural infection), which showed 54% macrofilaricidal activity, 56% female worm sterility and almost unchanged microfilaraemia maintained throughout observation period with no adverse effect on the host. Thus, in conclusion in vitro, in silico and in vivo results indicate that UA is a promising, inexpensive, widely available natural lead, which can be designed and developed into a macrofilaricidal drug. To the best of our knowledge this is the first ever report on the anti-filarial potential of UA from E. tereticornis, which is in full agreement with the Thomson Reuter's ‘Metadrug’ tool screening predictions.
机译:作为我们针对来自印度药用植物的抗丝虫剂的药物发现计划的一部分,对桉树的叶子进行了化学研究,从而分离并鉴定了抗丝虫剂乌索酸(UA)作为主要成分。使用体外和体内试验,以及对谷胱甘肽-s-转移酶(GST)寄生酶的计算机对接研究,UA对人淋巴丝状疟原虫的抗疟活性。通过运动性分析观察到,UA对微丝虫病(mf; LC100:50; IC50:8.84 µM)和成年雌性蠕虫(LC100:100; IC50:35.36 µM)具有致死性。它对成年寄生虫的MTT还原潜力产生了86%的抑制作用。发现UA对寄生虫的选择性指数(SI)是安全的。分子对接研究支持了这一点,该研究显示相对于标准抗丝虫药物,伊维菌素(IVM -8.4)和二乙基氨基甲嗪(DEC-C -4.6)在谷胱甘肽-s上,UA(-8.6)的对接(LibDock)得分足够-转移酶。此外,计算机模拟药物动力学和药物研究表明,UA具有药物性质。此外,在马来芽孢杆菌-M中体内评估了UA。长沙发模型(自然感染),在整个观察期内保持54%的大丝杀螨活性,56%的雌性蠕虫不育和几乎不变的微丝蛋白血症,对宿主无不良影响。因此,总的来说,体外,计算机和体内结果表明,UA是一种有前途的,廉价的,可广泛获得的天然铅,可以设计并开发成大杀线虫药。就我们所知,这是有史以来第一份关于大肠埃希氏菌的UA的抗丝虫潜力的报告,这完全与Thomson Reuter的“ Metadrug”工具筛选预测相符。

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