首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Study on the Potential Mechanism of Fructus Tribuli in the Treatment of Hypertensive Vascular Remodeling Based on Network Pharmacology and Molecular Docking
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Study on the Potential Mechanism of Fructus Tribuli in the Treatment of Hypertensive Vascular Remodeling Based on Network Pharmacology and Molecular Docking

机译:基于网络药理学和分子对接的基于网络药理学治疗高血压血管重塑的潜在机制研究

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Background . Hypertensive vascular remodeling (HVR) is the pathophysiological basis of hypertension, which is also an important cause of vascular disease and target organ damage. Treatment with Fructus Tribuli (FT), a traditional Chinese medicine, has a positive effect on HVR. However, the pharmacological mechanisms of FT are still unclear. Therefore, this study aimed to reveal the potential mechanisms involved in the effects of FT on HVR based on network pharmacology and molecular docking. Materials and Methods . We selected the active compounds and targets of FT according to the Traditional Chinese Medicine Systems Pharmacology Database and Analysis Platform (TCMSP) and the Swiss Target Prediction database, and the targets of HVR were collected from the Online Mendelian Inheritance in Man (OMIM), GeneCards, and DrugBank databases. The protein-protein interaction network (PPI) was established using the STRING database. Moreover, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analyses and network analysis were performed to further explore the potential mechanisms. Finally, molecular docking methods were used to evaluate the affinity between the active compounds and the main target. Results . Seventeen active compounds of FT? and 164 potential targets for the treatment of HVR were identified. Component-target and PPI networks were constructed, and 12 main active components and 33 main targets were identified by analyzing the topological parameters. Additionally, GO analysis indicated that the potential targets were enriched in 483 biological processes, 52 cellular components, and 110 molecular functions. KEGG analysis revealed that the potential targets were correlated with 122 pathways, such as the HIF-1 signaling pathway, ErbB signaling pathway, and VEGF signaling pathway. Finally, molecular docking showed that the 12 main active components had a good affinity for the top five main targets. Conclusion . This study demonstrated the multiple compounds, targets, and pathway characteristics of FT in the treatment of HVR. The network pharmacology method provided a novel research approach to analyze potential mechanisms.
机译:背景 。高血压血管重塑(HVR)是高血压的病理生理学基础,这也是血管疾病和靶器官损伤的重要原因。用枸杞子(FT)治疗中药治疗对HVR有阳性作用。然而,FT的药理学机制仍然不清楚。因此,本研究旨在揭示基于网络药理学和分子对接的FT对HVR影响的潜在机制。材料和方法 。我们根据中医系统药理学数据库和分析平台(TCMSP)和瑞士目标预测数据库的活性化合物和目标,以及HVR的目标从Man(OMIM),Genecards的在线孟德利亚遗产中收集,和药房银行数据库。使用字符串数据库建立蛋白质 - 蛋白质相互作用网络(PPI)。此外,进行基因本体(GO)和京都基因组(KEGG)途径分析和网络分析,以进一步探索潜在的机制。最后,使用分子对接方法来评估活性化合物和主要靶标之间的亲和力。结果 。 17个活性的ft化合物?鉴定了164种潜在的HVR潜在靶标。通过分析拓扑参数来构建组分 - 靶和PPI网络,并通过分析拓扑参数来识别12个主要活性组分和33个主要目标。另外,GO分析表明潜在的靶标在483个生物过程中富集,52个细胞组分和110个分子官能。 Kegg分析表明,潜在的靶标与122个途径相关,例如HIF-1信号通路,ERBB信号通路和VEGF信号通路。最后,分子对接表明,12个主要活性组分对前五个主要目标具有良好的亲和力。结论 。该研究证明了HVR治疗中FT的多种化合物,靶向和途径特征。网络药理学方法提供了一种分析潜在机制的新型研究方法。

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