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An Analysis of the Anti-Neuropathic Effects of Qi She Pill Based on Network Pharmacology

机译:基于网络药理学的齐她药丸抗神经病作用分析

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Background. Qi She Pill (QSP) is a traditional prescription for the treatment of neuropathic pain (NP) that is widely used in China. However, no network pharmacology studies of QSP in the treatment of NP have been conducted to date. Objective. To verify the potential pharmacological effects of QSP on NP, its components were analyzed via target docking and network analysis, and network pharmacology methods were used to study the interactions of its components. Materials and Methods. Information on pharmaceutically active compounds in QSP and gene information related to NP were obtained from public databases, and a compound-target network and protein-protein interaction network were constructed to study the mechanism of action of QSP in the treatment of NP. The mechanism of action of QSP in the treatment of NP was analyzed via Gene Ontology (GO) biological process annotation and Kyoto Gene and Genomics Encyclopedia (KEGG) pathway enrichment, and the drug-like component-target-pathway network was constructed. Results. The compound-target network contained 60 compounds and 444 corresponding targets. The key active compounds included quercetin and beta-sitosterol. Key targets included PTGS2 and PTGS1. The protein-protein interaction network of the active ingredients of QSP in the treatment of NP featured 48 proteins, including DRD2, CHRM, β2-adrenergic receptor, HTR2A, and calcitonin gene-related peptide. In total, 53 GO entries, including 35 biological process items, 7 molecular function items, and 11 cell related items, were identified. In addition, eight relevant (KEGG) pathways were identified, including calcium, neuroactive ligand-receptor interaction, and cAMP signaling pathways. Conclusion. Network pharmacology can help clarify the role and mechanism of QSP in the treatment of NP and provide a foundation for further research.
机译:背景。 QI She She Pill(QSP)是一种传统的处方,用于治疗中国广泛应用的神经病疼痛(NP)。然而,目前迄今为止,没有在治疗NP治疗中QSP的网络药理学研究。客观的。为了验证QSP对NP的潜在药理作用,通过目标对接和网络分析分析其组分,并且使用网络药理学方法研究其组分的相互作用。材料和方法。从公共数据库获得QSP和基因信息中的药物活性化合物的信息,构建复合靶网络和蛋白质 - 蛋白质相互作用网络以研究QSP治疗NP的作用机制。通过基因本体学(GO)生物学方法注释和京都基因和基因组学致碱基(Kegg)途径(Kegg)富集,分析了QSP治疗NP治疗方法的作用机制。结果。复合靶网络含有60种化合物和444个相应的靶标。关键的活性化合物包括槲皮素和β-谷甾醇。关键目标包括PTGS2和PTGS1。 QSP的活性成分的蛋白质 - 蛋白质相互作用网络治疗NP精选的48蛋白,包括DRD2,CHRM,β2-肾上腺素能受体,HTR2a和降钙素基因相关肽。共有53个GO条目,包括35个生物学过程项,7个分子功能项目和11个细胞相关项目。此外,鉴定了八种相关(Kegg)途径,包括钙,神经活性配体 - 受体相互作用和阵营信号通路。结论。网络药理学有助于澄清QSP在NP治疗中的作用和机制,为进一步研究提供基础。

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