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首页> 外文期刊>Evidence-based complementary and alternative medicine: eCAM >Analysis of the Mechanism of Zhichuanling Oral Liquid in Treating Bronchial Asthma Based on Network Pharmacology
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Analysis of the Mechanism of Zhichuanling Oral Liquid in Treating Bronchial Asthma Based on Network Pharmacology

机译:基于网络药理学治疗支气管哮喘的Zhichuanling口腔液体机理分析

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Zhichuanling oral liquid (ZOL) as a preparation of traditional Chinese medicine is widely used for the treatment of asthma in China; therefore, it is necessary to systematically clarify bioactive chemical ingredients and the mechanism of action of ZOL. Information on ZOL ingredients and asthma-related targets was collected, and we used the latest systematic pharmacological methods to construct protein-protein interaction network and compound-target network and then visualized them. Finally, GO and KEGG pathway enrichment analysis was conducted through the clusterProfiler package in the R software. The results showed that 58 bioactive ingredients and 42 potential targets of ZOL related to asthma were identified, following six important components and nine hub genes screened. Further cluster and enrichment analysis suggested that NF-κB signaling pathway, PI3K/Akt signaling pathway, IL-17 signaling pathway, Toll-like receptor signaling pathway, and TNF signaling pathway might be core pathways of ZOL for asthma. Our work successfully predicted the active ingredients and potential targets of ZOL and provided the explanation for the mechanism of action of ZOL for asthma through the systematic analysis, which suggested that ZOL played a major role in many ways including reducing airway inflammation and inhibiting airway remodeling and mucus secretion. Moreover, ZOL combined with glucocorticoids may have some effects on severe asthma.
机译:Zhichuanling口腔液体(ZOL)作为中药的制备被广泛用于中国治疗哮喘;因此,有必要系统地阐明生物活性化学成分和ZOL的作用机制。收集了有关ZOL成分和哮喘相关靶标的信息,并使用最新的系统药理方法来构建蛋白质 - 蛋白质相互作用网络和复合目标网络,然后可视化它们。最后,通过R软件中的ClusterProfiler包进行Go和Kegg途径浓缩分析。结果表明,在筛选六种重要组分和九个枢纽基因筛选中,鉴定了58种生物活性成分和与哮喘相关的42个潜在毒素。进一步的聚类和富集分析表明NF-κB信号通路,PI3K / AKT信号通路,IL-17信号通路,TOL样受体信号通路和TNF信号通路可能是ZOL的核心途径。我们的工作成功地预测了ZOL的活性成分和潜在目标,并通过系统分析提供了ZOL用于哮喘的作用机制的解释,这表明ZOL在许多方面发挥了重要作用,包括减少气道炎症和抑制气道重塑和抑制气道重塑粘液分泌。此外,ZOL与糖皮质激素联合的ZOL对严重哮喘产生一些影响。

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