In silico investigation of bioactive compounds from Ginkgo biloba as alternatives to non-steroidal anti-inflammatory drugs

Jyotsna Jai, Stephanie Angela Yosiano, Tifara Elaine Trisna, Agnes Maria Rosaceae, Laurentius Hardy Kurniawan, Rizky Nurdiansyah
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引用次数: 1

Abstract

Non-steroidal Anti-inflammatory Drugs (NSAIDs) are common over-the-counter drugs that are used for numerous inflammation-associated ailments. Despite their widespread consumption, these synthetic drugs are not without side effects. Adversities caused by NSAIDs range from simple nausea and vomiting to fatal conditions such as hypertension, gastrointestinal bleeding and diminished renal function. There is thus a need to develop novel alternatives to these drugs which possess comparable efficacies. Phytocompounds are attractive alternatives for a plethora of medicines used for various disorders and diseases as they are readily available in nature and have negligible side effects. In an attempt to identify safe alternatives to NSAIDs, we tested six bioactive compounds from Ginkgo biloba (Ginkgolide A, Amentoflavone, Bilobetin, Ginkgetin, Quercetin, and Bilobalide) for their abilities to inhibit Cyclooxygenase-1, Cyclooxygenase-2 and 5-Lipoxygenase which are inflammation-causing enzymes. Molecular docking experiments using Autodock Vina resulted in binding energy values between -6.6 and -11.9 kcal/mol, comparable to that of control drugs, which indicated that the tested phytocompounds were able to bind strongly to the active sites of the three proteins. Analyses of receptor-ligand interactions using Discovery Studio Visualizer revealed that all the tested compounds formed numerous non-covalent interactions with the surrounding amino acid residues, which confirmed their binding stabilities. Finally, evaluation of their drug likeness based on Lipinski’s rule of five showed that the tested G. biloba compounds possess the potential to be taken as oral drugs to replace conventional NSAIDs.
银杏生物活性化合物作为非甾体抗炎药替代品的计算机研究
非甾体抗炎药(NSAIDs)是一种常见的非处方药,用于治疗许多与炎症相关的疾病。尽管这些合成药物被广泛使用,但它们并非没有副作用。非甾体抗炎药引起的不良反应从简单的恶心和呕吐到致命的情况,如高血压、胃肠道出血和肾功能减退。因此,有必要开发具有相当疗效的这些药物的新替代品。植物化合物是治疗各种失调和疾病的大量药物的有吸引力的替代品,因为它们在自然界中很容易获得,副作用可以忽略不计。为了寻找非甾体抗炎药的安全替代品,我们测试了银杏叶中的六种生物活性化合物(银杏内酯A、阿门托黄酮、银杏黄酮、银杏黄酮、槲皮素和银杏叶内酯)抑制炎症酶环氧化酶-1、环氧化酶-2和5-脂氧化酶的能力。利用Autodock Vina进行分子对接实验,得到的结合能在-6.6 ~ -11.9 kcal/mol之间,与对照药物的结合能相当,表明所测植物化合物能够与3种蛋白的活性位点结合较强。使用Discovery Studio Visualizer对受体-配体相互作用的分析显示,所有被测试的化合物都与周围的氨基酸残基形成了许多非共价相互作用,这证实了它们的结合稳定性。最后,基于Lipinski 's rule of five对它们的药物相似性进行了评价,结果表明,所测试的两种化合物具有替代传统非甾体抗炎药作为口服药物的潜力。
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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