Exploring the potential mechanism of Radix Bupleuri in the treatment of sepsis: a study based on network pharmacology and molecular docking

被引:0
|
作者
Wang, Hao [1 ]
Xiong, Wei [2 ]
Laram, Yongchu [1 ]
Hu, Li [2 ]
Zhong, Wu [2 ]
Hu, Yingchun [2 ]
机构
[1] Southwest Med Univ, Clin Med Coll, Luzhou, Peoples R China
[2] Southwest Med Univ, Affiliated Hosp, Dept Emergency Med, Luzhou, Peoples R China
关键词
Radix Bupleuri; Network pharmacology; RNA-seq; Molecular docking; Sepsis;
D O I
10.1186/s12906-024-04637-5
中图分类号
R [医药、卫生];
学科分类号
10 ;
摘要
Aim To explore, using network pharmacology and RNA-seq technologies, potential active targets and mechanisms underpinning Radix Bupleuri's effectiveness during sepsis treatment. Methods Following the Sepsis-3.0 criteria, the research cohort, comprising 23 sepsis patients and 10 healthy participants, was obtained from public databases. Peripheral blood samples were collected and subjected to RNA-seq analysis. Active ingredients and potential targets of Radix Bupleuri were identified using the Bioinformatics Analysis Tool for Molecular mechANism of Traditional Chinese Medicine 2.0 (BATMAN-TCM 2.0) database and TCMSP database. Subsequently, protein-protein interaction (PPI) network construction, Gene Ontology (GO) analysis, and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis were conducted to explore cross-targets between disease and drugs. Survival analysis of key targets was performed using the GSE65682 dataset, and single-cell RNA-seq was employed for cellular localization analysis of key genes. Finally, molecular docking and Molecular dynamics simulation of the core target was conducted. Results Differential expression analysis revealed 4253 genes associated with sepsis. Seventy-six active components and 1030 potential targets of Radix Bupleuri were identified. PPI, GO, and pathway enrichment analyses indicated involvement in the regulation of transmembrane transport, monatomic ion transport, and MAPK signaling. Survival curve analysis identified PIK3CD, ARRB2, SUCLG1, and SPI1 as key targets associated with lower mortality in the high expression group, while higher mortality was observed in the high PNP and FURIN expression groups. Single-cell RNA sequencing unveiled the cellular localization of PIK3CD, PNP, SPI1, and FURIN within macrophages, while ARRB2 and SUCLG1 exhibited localization in both macrophages and T-cells. Subsequent molecular docking and Molecular dynamics simulation indicated a potential binding interaction for Carvone-PIK3CD, Encecalin-ARRB2, Lauric Acid-SUCLG1, Pulegone-FURIN, Nootkatone-SPI1, and Saikogenin F-PNP. Conclusion Radix Bupleuri could modulate immune function by affecting PIK3CD, ARRB2, SUCLG1, FURIN, SPI1, and PNP, thereby potentially improving the prognosis of sepsis.
引用
收藏
页数:19
相关论文
共 50 条
  • [41] Exploring the Mechanism of Hepatotoxicity Induced by Dictamnus dasycarpus Based on Network Pharmacology, Molecular Docking and Experimental Pharmacology
    Gao, Peng
    Chang, Kun
    Yuan, Shuo
    Wang, Yanhang
    Zeng, Kewu
    Jiang, Yong
    Tu, Pengfei
    Lu, Yingyuan
    Guo, Xiaoyu
    MOLECULES, 2023, 28 (13):
  • [42] Exploring the potential mechanism of Simiao Yongan decoction in the treatment of diabetic peripheral vascular disease based on network pharmacology and molecular docking technology
    Cao, Fang
    Zhang, Yongkang
    Zong, Yuan
    Feng, Xia
    Deng, Junlin
    Wang, Yuzhen
    Cao, Yemin
    MEDICINE, 2023, 102 (52) : E36762
  • [43] Exploring the anxiolytic mechanism of Fructus gardeniae based on metabolomics, network pharmacology, and molecular docking
    Tian, Yue
    Yuan, Fuli
    Kong, Jiao
    Yuan, Zhenshuang
    Jia, Chunxue
    Kui, Hongqian
    Yin, Ziqiang
    Liu, Chuanxin
    Huang, Jianmei
    JOURNAL OF PHARMACY AND PHARMACOLOGY, 2024, 76 (10) : 1310 - 1327
  • [44] The Potential Mechanism of Liujunzi Decoction in the Treatment of Breast Cancer based on Network Pharmacology and Molecular Docking Technology
    Sun, Mei
    Lv, Feng
    Qin, Chunmeng
    Du, Dan
    Li, Wenjun
    Liu, Songqing
    CURRENT PHARMACEUTICAL DESIGN, 2024, 30 (09) : 702 - 726
  • [45] Prediction of the molecular mechanism of eucommiae Cortex-Achyranthis bidentatae radix in the treatment of osteoarthritis: network pharmacology and molecular docking
    Jie Yang
    Liu, Juntong
    Jiao, Dijin
    Zhang, Guoguang
    Chao Qu
    Chen, Hongxu
    Chen, Chongmin
    Sun Yu
    Leng Xiangyanga
    DRUG DEVELOPMENT AND INDUSTRIAL PHARMACY, 2021, 47 (08) : 1235 - 1247
  • [46] Exploring Mechanism of Pelargonidin in Treatment of Pediatric Pneumonia Based on Network Pharmacology Combined with Molecular Docking
    Wu, Yanli
    Ling, Yinfei
    Hong, Huijuan
    Chen, Yun
    INTERNATIONAL JOURNAL OF PHARMACOLOGY, 2024, 20 (07)
  • [47] Molecular mechanism of vitiligo treatment by bailing tablet based on network pharmacology and molecular docking
    Li, Jinming
    Yang, Meng
    Song, Yeqiang
    MEDICINE, 2022, 101 (26) : E29661
  • [48] Molecular mechanism of Epicedium treatment for depression based on network pharmacology and molecular docking technology
    Yankai Dong
    Bo Tao
    Xing Xue
    Caixia Feng
    Yating Ren
    Hengyu Ma
    Junli Zhang
    Yufang Si
    Sisi Zhang
    Si Liu
    Hui Li
    Jiahao Zhou
    Ge Li
    Zhifei Wang
    Juanping Xie
    Zhongliang Zhu
    BMC Complementary Medicine and Therapies, 21
  • [49] Molecular mechanism of Epicedium treatment for depression based on network pharmacology and molecular docking technology
    Dong, Yankai
    Tao, Bo
    Xue, Xing
    Feng, Caixia
    Ren, Yating
    Ma, Hengyu
    Zhang, Junli
    Si, Yufang
    Zhang, Sisi
    Liu, Si
    Li, Hui
    Zhou, Jiahao
    Li, Ge
    Wang, Zhifei
    Xie, Juanping
    Zhu, Zhongliang
    BMC COMPLEMENTARY MEDICINE AND THERAPIES, 2021, 21 (01)
  • [50] Molecular mechanism of Epimedium in the treatment of vascular dementia based on network pharmacology and molecular docking
    Xie, Chenchen
    Tang, Hao
    Liu, Gang
    Li, Changqing
    FRONTIERS IN AGING NEUROSCIENCE, 2022, 14