Integrating In Silico and In vitro Approaches to Screen the Antidiabetic Properties from Trachyspermum ammi leaves

M. Raju, G. S. Priya, N. V. L. Suvarchala Reddy V., M. S. Reddy
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Abstract

AIM: The purpose of this study was to explore the possible mechanisms through which Trachyspermum ammi may be beneficial in managing diabetes by in vitro methods and to predict the potential bioactive constituent/s responsible for its anti-diabetic activity through in silico docking study. Study Design: This study engaged in vitro and in silico studies to investigate the enzyme inhibition assay and molecular docking studies of phytochemical constituents when compare with standard treatment. Place and Duration of Study: Gokaraju Rangaraju college of pharmacy, Bachupally, Hyderabad, India. December 2021-2022. Methodology: Methanolic leaf extract of Trachyspermum ammi was prepared using maceration extraction. Plant extract was evaluated for its in vitro anti-diabetic activity. Further, docking screening was performed using Mcule software to predict potential moiety which may be responsible for its anti-diabetic activity. Results: Maceration extraction resulted in extractive yield of 16.15%. The presence of phenolic and flavonoid components in extract (135.59 ± 8.87 GAE/gm and 62.1 ± 4.17 quercetin/gm) dried extract respectively. In vitro anti-diabetic assays revealed that anti-hyperglycaemic activity of this plant can be attributed to its high efficiency to inhibit α-amylase (69.7%) and glucosidase (62.23%) enzymatic activity and protein glycation assay (95.23%), which are well established targets for the management of diabetes. Further, through docking studies we predicted that Apigenin, luteolin, Germacrene D and γ-Tocopherol present in this plant might be responsible for the anti-diabetic properties exhibited by this plant. These results provide a scientific justification for the traditional anti-diabetic use of this plant Conclusion: It may control diabetes through lowering dietary glucose uptake. Predicted anti-diabetic molecules need to be screened further for the management of hyperglycemia. It may conclude that Trachyspermum ammi is an important vegetable with a potent source of natural antioxidants and antidiabetic activity justifying its traditional use in green therapeutics.
整合硅学和体外方法,筛选茵陈叶的抗糖尿病特性
研究目的:本研究的目的是通过体外实验方法,探索茵陈对控制糖尿病有益的可能机制,并通过硅学对接研究,预测茵陈具有抗糖尿病活性的潜在生物活性成分。研究设计:本研究通过体外和硅学研究,对植物化学成分与标准疗法进行酶抑制实验和分子对接研究。研究地点和时间:印度海得拉巴巴丘帕里戈卡拉朱-兰卡拉朱药学院。2021 年 12 月至 2022 年 12 月。研究方法:采用浸渍萃取法制备了Trachyspermum ammi的甲醇叶提取物。对植物提取物的体外抗糖尿病活性进行了评估。此外,还使用 Mcule 软件进行了对接筛选,以预测可能具有抗糖尿病活性的潜在分子。结果浸渍萃取的提取率为 16.15%。提取物中含有酚类和黄酮类成分(分别为 135.59 ± 8.87 GAE/gm 和 62.1 ± 4.17 quercetin/gm)。体外抗糖尿病试验表明,这种植物的抗高血糖活性可归因于它能高效抑制α-淀粉酶(69.7%)和葡萄糖苷酶(62.23%)酶活性以及蛋白质糖化试验(95.23%),而蛋白质糖化试验是公认的糖尿病治疗目标。此外,通过对接研究,我们预测该植物中的芹菜素、叶黄素、胚芽酚 D 和 γ-生育酚可能是该植物表现出抗糖尿病特性的原因。这些结果为这种植物的传统抗糖尿病用途提供了科学依据:它可以通过降低膳食葡萄糖摄入量来控制糖尿病。预测的抗糖尿病分子需要进一步筛选,以用于控制高血糖。结论:Trachyspermum ammi 是一种重要的蔬菜,具有强大的天然抗氧化剂来源和抗糖尿病活性,证明其在绿色疗法中的传统用途是正确的。
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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