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Prediction and characterisation of the system effects of aristolochic acid: A novel joint network analysis towards therapeutic and toxicological mechanisms

机译:马兜铃酸的系统效应的预测和表征:一种针对治疗和毒理学机制的新型联合网络分析

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摘要

(AA) is the major active component of medicinal plants from the Aristolochiaceae family of flowering plants widely utilized for medicinal purposes. However, the molecular mechanisms of AA systems effects remain poorly understood. Here, we employed a joint network analysis that combines network pharmacology, a (PPI) database, biological processes analysis and functional annotation analysis to explore system effects. Firstly, we selected 15 protein targets (14 genes) in the PubChem database as the potential target genes and used PPI knowledge to incorporate these genes into an AA-specific gene network that contains 129 genes. Secondly, we performed biological processes analysis for these AA-related targets using ClueGO, some of new targeted genes were randomly selected and experimentally verified by employing the Quantitative Real-Time PCR assay for targeting the systems effects of AA in HK-2 cells with observed dependency of concentration. Thirdly, the pathway-based functional enrichment analysis was manipulated using WebGestalt to identify the mostly significant pathways associated with AA. At last, we built an AA target pathway network of significant pathways to predict the system effects. Taken together, this joint network analysis revealed that the systematic regulatory effects of AA on multidimensional pathways involving both therapeutic action and toxicity.
机译:(AA)是来自广泛用于药用目的的开花植物马兜铃科的药用植物的主要活性成分。然而,对AA系统作用的分子机制仍然知之甚少。在这里,我们采用了结合网络药理学,(PPI)数据库,生物过程分析和功能注释分析的联合网络分析,以探索系统效果。首先,我们在PubChem数据库中选择了15个蛋白质靶标(14个基因)作为潜在的靶标基因,并利用PPI知识将这些基因整合到包含129个基因的AA特异性基因网络中。其次,我们使用ClueGO对这些与AA相关的靶标进行了生物过程分析,随机选择了一些新的靶标基因,并通过实时荧光定量PCR检测AA在HK-2细胞中对AA的系统效应进行了实验验证。注意力的依赖。第三,使用WebGestalt对基于途径的功能富集分析进行操作,以识别与AA相关的最重要的途径。最后,我们建立了重要路径的AA目标路径网络,以预测系统效果。总而言之,这项联合网络分析表明,AA对涉及治疗作用和毒性的多维途径的系统调节作用。

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