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Network pharmacology based research into the effect and mechanism of Yinchenhao Decoction against Cholangiocarcinoma

机译:基于网络药理学的云辰料汤对胆管癌效应及机制的研究

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Cholangiocarcinoma refers to an epithelial cell malignancy with poor prognosis. Yinchenhao decoction (YCHD) showed positive effects on cancers, and associations between YCHD and cholangiocarcinoma remain unclear. This study aimed to screen out the effective active components of Yinchenhao decoction (YCHD) using network pharmacology, estimate their potential targets, screen out the pathways, as well as delve into the potential mechanisms on treating cholangiocarcinoma. By the traditional Chinese medicine system pharmacology database and analysis platform (TCMSP) as well as literature review, the major active components and their corresponding targets were estimated and screened out. Using the software Cytoscape 3.6.0, a visual network was established using the active components of YCHD and the targets of cholangiocarcinoma. Based on STRING online database, the protein interaction network of vital targets was built and analyzed. With the Database for Annotation, Visualization, and Integrated Discovery (DAVID) server, the gene ontology (GO) biological processes and the Kyoto encyclopedia of genes and genomes (KEGG) signaling pathways of the targets enrichment were performed. The AutoDock Vina was used to perform molecular docking and calculate the binding affinity. The PyMOL software was utilized to visualize the docking results of active compounds and protein targets. In vivo experiment, the IC50 values and apoptosis rate in PI-A cells were detected using CCK-8 kit and Cell Cycle Detection Kit. The predicted targets were verified by the real-time PCR and western blot methods. 32 effective active components with anti-tumor effects of YCHD were sifted in total, covering 209 targets, 96 of which were associated with cancer. Quercetin, kaempferol, beta-sitosterol, isorhamnetin, and stigmasterol were identified as the vital active compounds, and AKT1, IL6, MAPK1, TP53 as well as VEGFA were considered as the major targets. The molecular docking revealed that these active compounds and targets showed good binding interactions. These 96 putative targets exerted therapeutic effects on cancer by regulating signaling pathways (e.g., hepatitis B, the MAPK signaling pathway, the PI3K-Akt signaling pathway, and MicroRNAs in cancer). Our in vivo experimental results confirmed that YCHD showed therapeutic effects on cholangiocarcinoma by decreasing IC50 values, down-regulating apoptosis rate of cholangiocarcinoma cells, and lowering protein expressions. As predicted by network pharmacology strategy and validated by the experimental results, YCHD exerts anti-tumor effectsthrough multiple components, targets, and pathways, thereby providing novel ideas and clues for the development of preparations and the treatment of cholangiocarcinoma.
机译:胆管癌是指具有差的上皮细胞恶性肿瘤,预后差。云辰浩汤(Ychd)对癌症表现出积极影响,YCHD和胆管癌之间的关联仍然不清楚。本研究旨在利用网络药理学筛选云辰发汤汤(YCHD)的有效活性成分,估计其潜在靶标,筛选途径,以及深入治疗胆管癌的潜在机制。通过中药系统药理学数据库和分析平台(TCMSP)以及文献综述,估计和筛选了主要的主动组成部分及其相应的目标。使用软件Cytoscape 3.6.0,使用YCHD的活性组分和胆管癌靶标的视觉网络。基于String在线数据库,建立和分析了重要目标的蛋白质相互作用网络。利用数据库进行注释,可视化和集成发现(David)服务器,进行基因本体(GO)生物过程和基因组的京都百科全书(Kegg)富集的基因组(Kegg)信号传导途径。 Autodock Vina用于进行分子对接并计算结合亲和力。 Pymol软件用于可视化活性化合物和蛋白质靶标的对接结果。在体内实验中,使用CCK-8试剂盒和细胞周期检测试剂盒检测PI-A细胞中的IC 50值和凋亡率。预测的靶通过实时PCR和Western印迹方法验证。 32含有抗肿瘤作用的有效活性组分总共筛选,覆盖209个靶标,其中96个与癌症有关。槲皮素,Kaempferol,β-谷甾醇,isorhamnetin和甾醇甾醇被鉴定为重要的活性化合物,并且Akt1,IL6,MapK1,TP53以及VEGFA被认为是主要靶标。分子对接显示这些活性化合物和靶标显示出良好的结合相互作用。通过调节信号通路(例如,乙型肝炎,MAPK信号通路,PI3K-AKT信号通路,癌症中的PI3K-AKT信号通路和Micrornas),这96个诱发靶向对癌症的治疗作用。我们的体内实验结果证实,Ychd通过降低IC 50值,降低胆管癌细胞的降低调节凋亡率和降低蛋白质表达,Ychd对胆管癌的治疗作用。如网络药理学策略预测并通过实验结果验证,Ychd施加抗肿瘤效应多重组分,靶向和途径,从而提供了新颖的思想和线索,用于开发制剂和胆管癌治疗。

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