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Data mining and systematic pharmacology to reveal the mechanisms of traditional Chinese medicine in Mycoplasma pneumoniae pneumonia treatment

机译:数据挖掘和系统药理学,揭示中药中药在支原体肺炎肺炎治疗中的机制

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摘要

Traditional Chinese Medicine (TCM) is widely used in the treatment of Mycoplasma pneumoniae Pneumonia (MPP) in East Asia. However, our current understanding of the underlying molecular mechanism remains dispersive and promiscuous. In this study, a systematic pharmacological approach combined with literature data mining was applied for drug similarity evaluation, drug half-life evaluation, oral bioavailability prediction, drug target exploration, Gene Ontology (GO) analysis, KEGG pathway enrichment and network construction, thus providing the rationale for its clinical performance. Five mostly studied herbs, including Ephedra Herba, Amygdalus communis Vas, Platycodon grandiforus, Licorice and Scutellariae Radix, were selected from the literature. Total ninety-three active ingredients, which are expected to be the effective components for MPP treatment, were screened out. Interrelationship between active compounds, drug targets and signaling pathways were analyzed to reveal the therapeutic effect of TCM in detail. Of importance, we found that TNF, beta 2AR and PTGS2 play pivotal role in TCM mediated MPP inhibition. And mechanistically, epithelial apoptosis (defensive barrier function), GPCR signaling (symptom amelioration) and immune pathways (innate signaling and adaptive Th17 response) are critically involved. Our work, achieved through systematic pharmacology and data mining, enlarges the knowledge of TCM in MPP therapy, and could provide valuable insights for further drug discovery studies.
机译:中药(TCM)广泛用于东亚肺炎肺炎肺炎肺炎(MPP)。然而,我们目前对潜在的分子机制的理解仍然是分散和混杂的。在本研究中,系统药理方法与文献数据采矿联合用于药物相似性评估,药物半衰期评价,口服生物利用度预测,药物目标探索,基因本体学(GO)分析,Kegg途径富集和网络建设,从而提供其临床表现的理由。从文献中选择了五个主要研究过的草药,包括Ephedra Herba,Amygdalus Communis Vas,Platycodon Grandiforus,甘草和Scutellariae Radix。筛选出来的总九十三种活性成分,预计将是MPP处理的有效组分。分析活性化合物,药物靶标和信号通路之间的相互关系,以揭示中医的治疗效果。重要性,我们发现TNF,β2AR和PTGS2在中医介导的MPP抑制中发挥枢轴作用。并且机械地,上皮细胞凋亡(防御障碍功能),GPCR信号(症状改善)和免疫途径(先天信号传导和自适应TH17响应)是批判性的。我们的工作,通过系统药理学和数据挖掘实现,扩大了TCM在MPP疗法中的知识,并可为进一步的药物发现研究提供有价值的见解。

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