ACTA NEUROPHARMACOLOGICA ›› 2020, Vol. 10 ›› Issue (6): 1-12.DOI: 10.3969/j.issn.2095-1396.2020.06.001

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Study on the Mechanism of Radix Paeoniae Rubra on Hepatocellular Carcinoma Based on Network Pharmacology

YOU Si-han,BAI Jing-ru,WANG Zhi-bao,TAN Xiao-hong,GUO Chun-yan   

  1. Department of Pharmacy,Hebei North University,Zhangjiakou,075000,China
  • Online:2020-12-26 Published:2020-12-26
  • Contact: 郭春燕,女,教授,硕士生导师;研究方向:体内药物分析和靶向药物分析;E-mail:guochy0311@ 谭晓虹,女,副教授;E-mail 936692381@qq.com
  • About author:尤斯涵,女;研究方向:网络药理学;E-mail:478032008@qq.com
  • Supported by:
    2020 年河北省大学生创新创业训练计划项目(No.202010092003)

Abstract:

Objective:To predict the mechanism of Radix Paeoniae Rubra in the treatment of hepatocellular carcinoma(HCC)by network pharmacology. Methods:Through TCMSP database(https://tcmspw.com/tcmspsearch.php),the chemical constituents of Radix Paeoniae Rubra were searchedand the targets of Radix Paeoniae Rubra were predicted by STD database and SEA database. Through OMIM database(http://www.omim.org),drugbank database(https:// www.drugbank.ca/)and TTD database(http://db.idrblab.net/ttd/),the corresponding targets of HCC were collected. Then, the common targets from both active ingredient targets and HCC disease targets were obtained. The String platform was used to collect liver cancer disease-related target proteins, and GO analysis was performed with David database. Protein-protein interaction (PPI) network was constructed by Cytoscape 3.2.1 software, and the core targets were obtained by topological analysis. The mechanism of Radix Paeoniae Rubra on HCC was further analyzed.  Results:A total of 28 compounds and 442 targets from Radix Paeoniae Rubra were obtained from TCMSP database. A total of 148 HCC-related disease targets were retrieved from OMIM, DrugBank and TTD databases. Twenty-three common targets from both active ingredient targets and HCC disease targets were obtained. There were 193 nodes and 722 edges in the protein- protein interaction networkand 95 nodes439 edges and 21 core targets were obtained by topological index screening. A total of 561 biological processes85 cellular components and 130 molecular functions were obtained by GO annotation. Conclusion:Network pharmacology intuitively shows that Radix Paeoniae Rubra has multiple componentsmultiple targets and multiple pathways in the treatment of HCC. This study provides a theoretical basis for the follow-up development of medicines for the treatment of HCC.


Key words: hepatocellular carcinoma, network pharmacology, Radix Paeoniae Rubra, Paeoniflorin

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