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基于网络药理学和生物信息学的黄柏与知母药对治疗肝癌的作用机制

Mechanism of Phellodendron and Anemarrhena Drug Pair on the Treatment of Liver Cancer Based on Network Pharmacology and Bioinformatics.

作者信息

Ruan Xiaofeng, Li Wenyuan, Du Peng, Wang Yao

机构信息

College of Traditional Chinese Medicine, Hubei University of Traditional Chinese Medicine, Wuhan, China.

Department of Rehabilitation Medicine, Xiangyang Central Hospital, Affiliated Hospital of Hubei University of Arts and Science, Xiangyang, China.

出版信息

Front Oncol. 2022 Apr 7;12:838152. doi: 10.3389/fonc.2022.838152. eCollection 2022.

Abstract

BACKGROUND

This study aims to explore the key targets and signaling pathways of the traditional Chinese medicine Phellodendron and Anemarrhena drug pair (PADP) for the treatment of liver cancer.

METHODS

Firstly, bioinformatics technology was used to analyze GSE62232 gene chip to obtain the differential genes of liver cancer. A network pharmacology technology was used to find the active components of PADP and their targets. Secondly, the differential genes were imported into STRING database to draw a PPI network, and network topology structure map combined with Cytoscape software. And the R language was used to identify differential gene targets and pathways through GO and KEGG pathway enrichment analysis. In addition, AutoDock Vina was used for molecular docking of core targets and core compounds. Moreover, GEPIA online analysis tool was used to perform survival analysis of the core target genes. Finally, RT-PCR was used to verify the changes of key target genes. CCK-8 assay was performed to detect cell proliferation. Flow cytometry was performed to detect the cell cycle and apoptotic. Transwell invasion assay was performed to detect cell invasion.

RESULTS

Firstly, a total of 21,654 genes were obtained. After screening, 1019 differential genes were obtained, including 614 down-regulated genes and 405 up-regulated genes. Furthermore, after screening by ADME standards, 52 active ingredients were obtained, of which 37 were Phellodendron and 15 were Anemarrhena. And a total of 36 differential genes have been identified, including 13 up-regulated genes and 23 down-regulated genes. Moreover, through enrichment analysis, we found that PADP may treat liver cancer through multiple channels and multiple pathways including the p53 signaling pathway, IL-17 signaling pathway, TNF signaling pathway, Toll-like receptor signaling pathway and so on. Secondly, the molecular docking results showed that there was certain affinity between the core compounds and core target genes. In addition, GEPIA online analysis showed that ESR1, AR, CCNB1, CDK1, AKR1C3 and CCNA2 might become potential target genes for the survival and prognosis of PADP for the treatment of liver cancer. Finally, it was found that PADP could up regulate genes ESR1 and AR, down regulate genes CCNB1, CDK1, AKR1C3, and CCNA2. PADP could promote the apoptosis of liver cancer cells, shorten the cell cycle, and inhibit the proliferation and invasion of liver cancer cells.

CONCLUSION

PADP may treat liver cancer through multiple targets, multiple channels, and multiple pathways, thereby suppressing cancer cells and improving the living quality of patients.

摘要

背景

本研究旨在探讨中药黄柏与知母药对(PADP)治疗肝癌的关键靶点及信号通路。

方法

首先,运用生物信息学技术分析GSE62232基因芯片以获取肝癌差异基因。采用网络药理学技术查找PADP的活性成分及其靶点。其次,将差异基因导入STRING数据库绘制PPI网络,并结合Cytoscape软件绘制网络拓扑结构图。运用R语言通过GO和KEGG通路富集分析鉴定差异基因靶点及通路。此外,使用AutoDock Vina对核心靶点与核心化合物进行分子对接。而且,利用GEPIA在线分析工具对核心靶基因进行生存分析。最后,采用RT-PCR验证关键靶基因的变化。进行CCK-8法检测细胞增殖。采用流式细胞术检测细胞周期及凋亡情况。进行Transwell侵袭实验检测细胞侵袭能力。

结果

首先,共获得21654个基因。筛选后得到1019个差异基因,其中下调基因614个,上调基因405个。此外,经ADME标准筛选后,得到52种活性成分,其中黄柏37种,知母15种。共鉴定出36个差异基因,其中上调基因13个,下调基因23个。而且,通过富集分析发现,PADP可能通过p53信号通路、IL-17信号通路、TNF信号通路、Toll样受体信号通路等多条途径、多个渠道治疗肝癌。其次,分子对接结果显示核心化合物与核心靶基因之间存在一定亲和力。此外,GEPIA在线分析表明,ESR1、AR、CCNB1、CDK1、AKR1C3和CCNA2可能成为PADP治疗肝癌生存及预后的潜在靶基因。最后发现,PADP可上调ESR1和AR基因,下调CCNB1、CDK1、AKR1C3和CCNA2基因。PADP可促进肝癌细胞凋亡,缩短细胞周期,抑制肝癌细胞增殖和侵袭。

结论

PADP可能通过多个靶点、多条途径、多个渠道治疗肝癌,从而抑制癌细胞,提高患者生活质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd0/9021729/3711e54c91fb/fonc-12-838152-g001.jpg

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