To Explore the Mechanism of Hawthorn in the Intervention of Hyperlipidemia Based on the Gene Expression Omnibus and Network Pharmacology

被引:0
作者
Song, Xuejing [1 ]
Li, Hong [1 ]
Liang, Y. [1 ]
Chen, J. [2 ]
Zhao, L. Z. [3 ]
Tang, C. [3 ]
机构
[1] Southwest Med Univ, Dept Pharmacol, Luzhou 646099, Sichuan, Peoples R China
[2] Luzhou Hosp Tradit Chinese Med, Dept Pharmacol, Luzhou, Peoples R China
[3] Southwest Med Univ, Dept Cardiol, Affiliated Tradit Chinese Med Hosp, Luzhou 646000, Sichuan, Peoples R China
关键词
Network pharmacology; hawthorn; hyperlipidemia; gene expression omnibus database; UPDATE; IDENTIFICATION; INFLAMMATION; CYTOSCAPE;
D O I
10.36468/pharmaceutical-sciences.spl.655
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
A common clinical treatment for hyperlipidemia in China is hawthorn, a traditional Chinese herb. However, few researches have been done on its active ingredients and their possible mechanisms for treating hyperlipidemia. The active chemical constituents of hawthorn were obtained from the encyclopedia of traditional Chinese medicine, the bioavailability and druglikeness properties of each active ingredient of hawthorn were analyzed using SwissADME and their possible targets of action were predicted using SwissTargetPrediction and PharmMapper. Then, we used the Gene Expression Omnibus-related gene microarray data to mine the differentially expressed genes for hyperlipidemia. Meanwhile, we collected relevant targets of hyperlipidemia through the DrugBank, Online Mendelian Inheritance in Man, GeneCards, DisGeNET and Therapeutic Target Database. Based on this data, a component-target-disease pathway and a protein-protein interaction networks were constructed using search tool for the retrieval of interacting genes/proteins. Finally, Metascape was systematically used to analyze the targets of hawthorn intervention in hyperlipidemia. A total of 8 active components and 312 hawthorn targets were gathered and 343 prospective targets associated with hyperlipidemia were predicted, 25 of which shared targets with hawthorn-related targets. Gene ontology enrichment analysis revealed that the mechanism of action of hawthorn in intervention of hyperlipidemia lies in the regulation of lipid metabolism, nutrition level, hormone level and cholesterol transport process. The Kyoto encyclopedia of genes and genomes enrichment analysis revealed that the peroxisome proliferator activated receptor signaling pathway contained the majority of the core targets. Molecular docking verified that hawthorn could bind closely to the core targets. According to the findings of network pharmacology and enrichment analysis, we predicted that the main active components of hawthorn to intervene in hyperlipidemia are epicatechin, officinalic acid and quercetin, which mainly intervene in hyperlipidemia through the peroxisome proliferator activated receptor signaling pathway.
引用
收藏
页码:146 / 158
页数:13
相关论文
共 50 条
  • [1] Network pharmacology analysis and experimental validation to explore the mechanism of sea buckthorn flavonoids on hyperlipidemia
    Xiao, Ping-ting
    Liu, Shi-yu
    Kuang, Yu-jia
    Jiang, Zheng-meng
    Lin, Yang
    Xie, Zhi-shen
    Liu, E-Hu
    JOURNAL OF ETHNOPHARMACOLOGY, 2021, 264
  • [2] Curcumin in the Treatment of Periodontitis based on Gene Expression Omnibus Data Mining and Network Pharmacology
    Long, Hailun
    Chen, Xiaotao
    Nan, Xiaomei
    Zheng, Hongyan
    INDIAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2023, 85 : 253 - 261
  • [3] Study based on metabolomics and network pharmacology to explore the mechanism of Ginseng-Douch compound fermentation products in the treatment of hyperlipidemia
    Sun, Jianfeng
    Dong, Wenting
    Zhao, Yuanyuan
    Sun, Guodong
    Chen, Liyan
    Huo, Jinhai
    Wang, Weiming
    JOURNAL OF THE SCIENCE OF FOOD AND AGRICULTURE, 2025, 105 (01) : 611 - 625
  • [4] Using Network Pharmacology and Molecular Docking to Explore the Mechanism by Which Dracocephalum rupestre Hance Tea Intervenes in Hyperlipidemia
    Wang T.
    Duan R.
    Yang J.
    Huo M.
    Shipin Kexue/Food Science, 2023, 44 (09): : 7 - 14
  • [5] Network pharmacology analysis and experimental validation to explore the mechanism of Bushao Tiaozhi capsule (BSTZC) on hyperlipidemia
    Xiao, Guanlin
    Zeng, Zhihao
    Jiang, Jieyi
    Xu, Aili
    Li, Sumei
    Li, Yangxue
    Chen, Zhao
    Chen, Weitao
    Zhang, Jingnian
    Bi, Xiaoli
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [6] Study on the Mechanism of Guizhi Fuling Decoction in Treating Hyperlipidemia Based on Network Pharmacology and Experimental Methods
    Zhang, Mi
    Zhang, Yuntian
    Wang, Hongyun
    Fan, Chunlei
    PHARMACOGNOSY MAGAZINE, 2025, 21 (01) : 152 - 160
  • [7] Molecular Mechanism of the Role of Apigenin in the Treatment of Hyperlipidemia: A Network Pharmacology Approach
    Li, Shuhan
    Wang, Zizhao
    Zhou, Zhengnan
    Gao, Zhiyuan
    Liu, Yuai
    Li, Jie
    Gao, Xingbang
    Liu, Jing
    Liu, Hanbing
    Xu, Qian
    CHEMISTRY & BIODIVERSITY, 2023, 20 (02)
  • [8] Mechanism of Epigallocatechin-3-gallate in the prevention and treatment of irritable bowel syndrome: A network pharmacology and gene expression omnibus chip data-based study
    Ye, Fangchen
    Li, Laifu
    Wang, Lianli
    Ran, Yan
    Mei, Lin
    Sun, Yating
    Zhang, Xinping
    Dai, Fei
    PHARMANUTRITION, 2025, 31
  • [9] Network pharmacology-based analysis to explore the therapeutic mechanism of Cortex Dictamni on atopic dermatitis
    Yang, Niuniu
    Shao, Haifeng
    Deng, Jialin
    Liu, Yanqing
    JOURNAL OF ETHNOPHARMACOLOGY, 2023, 304
  • [10] Utilizing network pharmacology to explore the underlying mechanism of Qiangzhi decoction in treating Tourette's syndrome
    Dong, Cheng-Da
    Shi, Hong-Shuo
    Chu, Qian
    Li, Yu-Kun
    Shi, Hui-Shan
    Song, An-Ran
    Yan, Zhao-Jun
    ANNALS OF PALLIATIVE MEDICINE, 2020, 9 (06) : 4194 - 4210