Identification of Anti-inflammatory Metabolites from Trigonella foenum-greacum using Computational Approaches

Erum Dilshad, Muhammad Maaz, Suliman, N. Ashraf
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引用次数: 1

Abstract

Human disease prevalence has increased as a result of modern lifestyles, stress, and toxic waste. Worldwide, researchers aim to discover therapeutic compounds which may cure and prevent the onset of diseases. So, this study was planned to discover potential anti-inflammatory metabolites from Trigonella foenum-graecum. It is an annual plant within the family Fabaceae. This plant is used as a spice throughout the world and has many beneficial medicinal effects. It is commonly grown in Pakistan, India, and some Middle Eastern countries. Ten bioactive compounds representative of all classes, namely alkaloid, flavonoid, phytic acid, 4-hydroxy isoleucine, sapogenin, quercetin, trigonelline, tricin, naringenin, and flavonol were selected. Molecular docking of these ligands was carried out against drug targets namely cyclooxygenase-2, Human Neutrophil Elastase (HNE), microsomal PGES-2, and tyrosinase by using CB Dock and AMDock software. Further refining by screening filters produced sapogenin as the lead compound. All the visualization analysis and interaction studies were performed using PyMol molecular visualization tool and Ligplot+. Celebrex was used as the standard for comparison. The comparison between sapogenin and Celebrex showed that the former is much more active than the standard drug. This is a novel finding. So, it might be explored further as a drug candidate to treat chronic inflammatory diseases in the future. 
利用计算方法鉴定三角三角霉抗炎代谢物
由于现代生活方式、压力和有毒废物,人类疾病患病率有所增加。在世界范围内,研究人员的目标是发现可以治愈和预防疾病发作的治疗性化合物。因此,本研究拟从葫芦巴中发现潜在的抗炎代谢物。它是豆科的一年生植物。这种植物在世界各地被用作香料,并具有许多有益的药用作用。它通常生长在巴基斯坦、印度和一些中东国家。选取生物碱、类黄酮、植酸、4-羟基异亮氨酸、皂苷元、槲皮素、葫芦巴碱、tricin、柚皮素、黄酮醇等10种具有代表性的生物活性化合物。利用CB Dock和AMDock软件对这些配体与药物靶点环氧化酶-2、人中性粒细胞弹性酶(HNE)、微粒体PGES-2和酪氨酸酶进行分子对接。通过筛选过滤器进一步提纯,产生皂甙元作为先导化合物。所有可视化分析和相互作用研究均使用PyMol分子可视化工具和Ligplot+进行。以西乐葆为比较标准。皂苷元与西乐葆的比较表明,前者比标准药物更有活性。这是一个新颖的发现。因此,作为一种治疗慢性炎症性疾病的候选药物,它可能会在未来得到进一步的探索。
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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