Analysis of gut microbiota-derived metabolites regulating pituitary neuroendocrine tumors through network pharmacology

被引:0
|
作者
Cao, Min [1 ]
Huang, Ping [1 ]
Xu, Lun-shan [1 ]
Zhang, Yi-hua [1 ]
机构
[1] Army Med Univ, Daping Hosp, Dept Neurosurg, Chongqing, Peoples R China
关键词
pituitary neuroendocrine tumors; gut microbiota; metabolites; tryptophan metabolism; CXCL8; ACTIVATION; INFLAMMATION; ADENOMAS; PATHWAYS; REVEALS; PROMOTE; CANCER; GENES;
D O I
10.3389/fphar.2024.1403864
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Pituitary neuroendocrine tumors (PitNETs) are a special class of tumors of the central nervous system that are closely related to metabolism, endocrine functions, and immunity. In this study, network pharmacology was used to explore the metabolites and pharmacological mechanisms of PitNET regulation by gut microbiota. The metabolites of the gut microbiota were obtained from the gutMGene database, and the targets related to the metabolites and PitNETs were determined using public databases. A total of 208 metabolites were mined from the gutMGene database; 1,192 metabolite targets were screened from the similarity ensemble approach database; and 2,303 PitNET-related targets were screened from the GeneCards database. From these, 392 overlapping targets were screened between the metabolite and PitNET-related targets, and the intersection between these overlapping and gutMGene database targets (223 targets) were obtained as the core targets (43 targets). Using the protein-protein interaction (PPI) network analysis, Kyoto encyclopedia of genes and genomes (KEGG) signaling pathway and metabolic pathway analysis, CXCL8 was obtained as a hub target, tryptophan metabolism was found to be a key metabolic pathway, and IL-17 signaling was screened as the key KEGG signaling pathway. In addition, molecular docking analysis of the active metabolites and target were performed, and the results showed that baicalin, baicalein, and compound K had good binding activities with CXCL8. We also describe the potential mechanisms for treating PitNETs using the information on the microbiota (Bifidobacterium adolescentis), signaling pathway (IL-17), target (CXCL8), and metabolites (baicalin, baicalein, and compound K); we expect that these will provide a scientific basis for further study.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Gut Microbiota-Derived Metabolites and Cardiovascular Disease Risk: A Systematic Review of Prospective Cohort Studies
    Sanchez-Gimenez, Raul
    Ahmed-Khodja, Wahiba
    Molina, Yesica
    Peiro, Oscar M.
    Bonet, Gil
    Carrasquer, Anna
    Fragkiadakis, George A.
    Bullo, Monica
    Bardaji, Alfredo
    Papandreou, Christopher
    NUTRIENTS, 2022, 14 (13)
  • [42] Gut microbiota-derived metabolites as key actors in type 2 diabetes mellitus
    Du, Leilei
    Li, Qi
    Yi, Huan
    Kuang, Tingting
    Tang, Yi
    Fan, Gang
    BIOMEDICINE & PHARMACOTHERAPY, 2022, 149
  • [43] Gut Microbiota-Derived Resveratrol Metabolites, Dihydroresveratrol and Lunularin, Significantly Contribute to the Biological Activities of Resveratrol
    Li, Fang
    Han, Yanhui
    Wu, Xian
    Cao, Xiaoqiong
    Gao, Zili
    Sun, Yue
    Wang, Minqi
    Xiao, Hang
    FRONTIERS IN NUTRITION, 2022, 9
  • [44] Skeletal muscles and gut microbiota-derived metabolites: novel modulators of adipocyte thermogenesis
    Tang, Yi
    Wang, Ya-Di
    Wang, Yuan-Yuan
    Liao, Zhe-Zhen
    Xiao, Xin-Hua
    FRONTIERS IN ENDOCRINOLOGY, 2023, 14
  • [45] Gut microbiota-derived fatty acid and sterol metabolites: biotransformation and immunomodulatory functions
    Zhang, Haohao
    Xie, Yadong
    Cao, Fei
    Song, Xinyang
    GUT MICROBES, 2024, 16 (01)
  • [46] Gut microbiota-derived tryptophan metabolites improve total parenteral nutrition-associated infections by regulating Group 3 innate lymphoid cells
    Huang, Longchang
    Wang, Peng
    Liu, Shuai
    Deng, Guifang
    Qi, Xin
    Sun, Guangming
    Gao, Xuejin
    Zhang, Li
    Zhang, Yupeng
    Xiao, Yaqin
    Gao, Tingting
    Maitiabula, Gulisudumu
    Wang, Xinying
    IMETA, 2025,
  • [47] Causal associations between gut microbiota, gut microbiota-derived metabolites, and cerebrovascular diseases: a multivariable Mendelian randomization study
    Lin, Dihui
    Zhu, Yingjie
    Tian, Zhi
    Tian, Yong
    Liang, Chengcai
    Peng, Xiaowei
    Li, Jinping
    Wu, Xinrui
    FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2023, 13
  • [48] Gut microbiota-derived tryptophan metabolites regulated by Wuji Wan to attenuate colitis through AhR signaling activation
    Jing, Wanghui
    Dong, Sijing
    Xu, Yinyue
    Liu, Jingjing
    Ren, Jiawei
    Liu, Xue
    Zhu, Min
    Zhang, Menggai
    Shi, Hehe
    Li, Na
    Xia, Peng
    Lu, Haitao
    Wang, Sicen
    ACTA PHARMACEUTICA SINICA B, 2025, 15 (01) : 205 - 223
  • [49] Gut Microbiota-Derived Inflammation-Related Serum Metabolites as Potential Biomarkers for Major Depressive Disorder
    Bai, Shunjie
    Xie, Jing
    Bai, Huili
    Tian, Tian
    Zou, Tao
    Chen, Jian-Jun
    JOURNAL OF INFLAMMATION RESEARCH, 2021, 14 : 3755 - 3766
  • [50] Gut microbiota-derived metabolites in the regulation of host immune responses and immune-related inflammatory diseases
    Wenjing Yang
    Yingzi Cong
    Cellular & Molecular Immunology, 2021, 18 : 866 - 877