Integrated network pharmacology, mass cytometry and multi-omics analysis the effect of Jingfang granule on intestinal immune disorder in mice with cold-dampness syndrome.

IF 3.1 3区 医学 Q2 CHEMISTRY, ANALYTICAL Journal of pharmaceutical and biomedical analysis Pub Date : 2025-03-15 Epub Date: 2024-12-06 DOI:10.1016/j.jpba.2024.116624
Shirong Li, Mingfei Liu, Lihong Pan, Qun Feng, Xiaoyan Lu, Jingchun Yao, Xuefeng Xiao
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Abstract

The pathogenesis of cold-dampness syndrome (CDS) is closely related to intestinal inflammation and immune disorders induced by cold-dampness pathogen. CDS is the root cause of a variety of chronic inflammatory and immune diseases. Jingfang granule (JF) was widely used to treat a variety of diseases closely related to CDS. JF is well known for its clinical effect of dispelling cold and eliminating dampness, but the pharmacological effect and mechanism of JF on the improvement of CDS are still unclear. This study aimed to explore the efficacy and mechanism of JF in improving CDS from the perspective of intestinal immunity. In this study, mass spectrometry (CyTOF), metabolomics, network pharmacology, proteomics and molecular biology experiments were performed to investigate the therapeutic effects and underlying mechanisms of JF on intestinal inflammation and immune disorders in CDS mice. These results showed that JF could improve the clinical symptoms and increase the thymus index of CDS mice. Most strikingly, JF ameliorated intestinal inflammation and immune disorders in CDS mice, as indicated by increased frequency of TH1, CD8 + Tem, CD8 + TEFF, gdT and iNK cells and decreased frequency of Naive B cells, M1-macrophages, DCs and eosinophils. Metabolomics results showed that JF reversed the content of docosahexaenoic acid, arachidonic acid, linoleic acid, inosine and hypoxanthine in CDS mice. Correlation analysis showed that these metabolites were strongly correlated with a variety of intestinal immune cells, indicating that there was a certain regulatory effect between them. Then, 271 JF targets, 316 metabolite targets and 18374 disease targets were integrated to obtain 75 common targets and 138 pathways (such as PI3K/AKT and MAPK pathway, etc). Furthermore, molecular docking, proteomics and western blotting demonstrated that PI3K/AKT signaling pathway might be the key molecular mechanism by which JF regulated intestinal immune disorders in CDS mice. These results suggested that JF may act on the PI3K/AKT pathways to further regulate the levels of metabolites to exert intestinal immunomodulatory effects. In summary, we confirmed the beneficial effects of JF on intestinal immune disorders in CDS mice.

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综合网络药理学、细胞计数和多组学分析精方颗粒对寒湿证小鼠肠道免疫紊乱的影响。
寒湿证的发病机制与寒湿致病菌引起的肠道炎症和免疫功能紊乱密切相关。CDS是多种慢性炎症性和免疫性疾病的根本原因。精方颗粒被广泛用于治疗多种与CDS密切相关的疾病。JF以其祛寒祛湿的临床疗效而闻名,但JF改善CDS的药理作用及机制尚不清楚。本研究旨在从肠道免疫的角度探讨JF改善CDS的疗效及机制。本研究通过质谱(CyTOF)、代谢组学、网络药理学、蛋白质组学和分子生物学实验,探讨JF对CDS小鼠肠道炎症和免疫紊乱的治疗作用及其机制。上述结果表明,JF能改善CDS小鼠的临床症状,提高胸腺指数。最引人注目的是,JF改善了CDS小鼠的肠道炎症和免疫紊乱,TH1、CD8 + Tem、CD8 + TEFF、gdT和iNK细胞的频率增加,Naive B细胞、m1巨噬细胞、dc和嗜酸性粒细胞的频率降低。代谢组学结果显示,JF可逆转CDS小鼠体内二十二碳六烯酸、花生四烯酸、亚油酸、肌苷和次黄嘌呤的含量。相关分析表明,这些代谢物与多种肠道免疫细胞有很强的相关性,表明它们之间存在一定的调节作用。然后整合271个JF靶点、316个代谢物靶点和18374个疾病靶点,得到75个共同靶点和138条通路(如PI3K/AKT、MAPK通路等)。此外,分子对接、蛋白质组学和western blotting结果表明,PI3K/AKT信号通路可能是JF调控CDS小鼠肠道免疫紊乱的关键分子机制。这些结果提示JF可能通过PI3K/AKT通路进一步调节代谢产物水平,发挥肠道免疫调节作用。综上所述,我们证实了JF对CDS小鼠肠道免疫疾病的有益作用。
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来源期刊
CiteScore
6.70
自引率
5.90%
发文量
588
审稿时长
37 days
期刊介绍: This journal is an international medium directed towards the needs of academic, clinical, government and industrial analysis by publishing original research reports and critical reviews on pharmaceutical and biomedical analysis. It covers the interdisciplinary aspects of analysis in the pharmaceutical, biomedical and clinical sciences, including developments in analytical methodology, instrumentation, computation and interpretation. Submissions on novel applications focusing on drug purity and stability studies, pharmacokinetics, therapeutic monitoring, metabolic profiling; drug-related aspects of analytical biochemistry and forensic toxicology; quality assurance in the pharmaceutical industry are also welcome. Studies from areas of well established and poorly selective methods, such as UV-VIS spectrophotometry (including derivative and multi-wavelength measurements), basic electroanalytical (potentiometric, polarographic and voltammetric) methods, fluorimetry, flow-injection analysis, etc. are accepted for publication in exceptional cases only, if a unique and substantial advantage over presently known systems is demonstrated. The same applies to the assay of simple drug formulations by any kind of methods and the determination of drugs in biological samples based merely on spiked samples. Drug purity/stability studies should contain information on the structure elucidation of the impurities/degradants.
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