Mechanism Of American Ginseng Against Type 2 Diabetes Mellitus Based On Network Pharmacology & Molecular Docking

Junzhi Wang, Pengling Ge, Jiaxin Li, Siqi Chen, Bo-Yang Wang, Jiaming Xie, Xinyu Wu, Xinying Hu, Jing Liu, Yi Zhang
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Abstract

Ginseng is one of the top-selling natural products worldwide and has been shown to have significant effects. Nonetheless, there is limited research on American ginseng when compared to Asian ginseng. A small number of studies have demonstrated the therapeutic benefits of American ginseng, which include antioxidant, anti-inflammatory, and immune-stimulating activities. The objective of our research is to predict the molecular mechanism by which American ginseng combats Type 2 diabetes mellitus (T2DM) using Network Pharmacology and Molecular Docking techniques. By doing so, we aim to reveal one of the comprehensive mechanisms through which American ginseng exerts its therapeutic effects. We conducted a search for related compounds in American ginseng using the TCMSP database, which we then utilized to classify potential targets for the major ingredients. We obtained targets associated with Type 2 diabetes mellitus (T2DM) from various databases, including PharmGKB, OMIM, TTD, GeneCards, and DrugBank. Using STRING and Cytoscape software, we constructed PPI networks. We subsequently performed GO and KEGG analysis on the targets using the R programming language. Ligand and target structures were acquired from PubChem and PDB databases, respectively. Chem3D and AutoDock software was used to process the structures, while PyMoL was employed for molecular docking analysis. Several investigations have indicated that PTGS2, NFKBIA, PRKCA, IL1B, NCOA2, and LPL targets are significantly associated with American ginseng's effectiveness in treating T2DM. Molecular docking analysis further validated these findings. We discovered three active components with high-affinity, namely papaverine, ginsenoside-rh2, and beta-sitosterol. The outcomes of our predictions could contribute to the development of American ginseng or its active constituents as an alternative therapy for T2DM.
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基于网络药理学与分子对接的西洋参抗2型糖尿病机制研究
人参是世界上最畅销的天然产品之一,已被证明具有显著的效果。然而,与亚洲人参相比,对西洋参的研究有限。少数研究已经证明了西洋参的治疗作用,包括抗氧化、抗炎和免疫刺激活动。本研究旨在利用网络药理学和分子对接技术,探讨西洋参抗2型糖尿病的分子机制。通过这样做,我们的目的是揭示一个综合机制,通过西洋参发挥其治疗作用。我们利用TCMSP数据库对西洋参中的相关化合物进行了搜索,然后利用该数据库对主要成分的潜在靶标进行了分类。我们从不同的数据库中获得了与2型糖尿病(T2DM)相关的靶点,包括PharmGKB、OMIM、TTD、GeneCards和DrugBank。利用STRING和Cytoscape软件,我们构建了PPI网络。随后,我们使用R编程语言对目标进行GO和KEGG分析。配体和靶结构分别从PubChem和PDB数据库中获取。使用Chem3D和AutoDock软件对结构进行处理,使用PyMoL进行分子对接分析。多项研究表明,PTGS2、NFKBIA、PRKCA、IL1B、NCOA2和LPL靶点与西洋参治疗T2DM的有效性显著相关。分子对接分析进一步验证了这些发现。我们发现了三种高亲和力的活性成分,即罂粟碱、人参皂苷-rh2和β -谷甾醇。我们的预测结果可能有助于西洋参或其活性成分作为T2DM的替代疗法的发展。
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