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基于代谢组学和网络药理学的整合方法揭示玉屏风颗粒的免疫调节机制。

Integrated metabolomics and network pharmacology approach to reveal immunomodulatory mechanisms of Yupingfeng granules.

机构信息

School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, PR China; State Key Lab. of New Drug and Pharmaceutical Process, Shanghai Institute of Pharmaceutical Industry, China State Institute of Pharmaceutical Industry, Shanghai 201203, PR China.

Sinopharm Group Guangdong Medi-World Pharmaceutical CO., LTD., Foshan 528306, Guangdong, PR China.

出版信息

J Pharm Biomed Anal. 2021 Feb 5;194:113660. doi: 10.1016/j.jpba.2020.113660. Epub 2020 Nov 22.

Abstract

Systems biology is an approach that employs modern biological techniques and methods to combine the overall regulation of the body by Chinese herbal formulas with systems analysis at the molecular level. In this study, the underlying immunomodulatory mechanisms of yupingfeng granules (YPFG) were investigated based on the integration of metabolomics and network pharmacology methods. Selected routine peripheral blood indicators, body weight, and organ indices related to immunity were firstly measured in order to evaluate the effects of YPFG in cyclophosphamide-induced immunocompromised rats. Plasma metabolomics analyses were carried out by UPLC-Q-TOF-MS combined with a multivariate data analysis. Our study indicates that the potential regulatory mechanism was related to bile acid and glycerophospholipid metabolism, involving the regulation of 11 metabolites, including 8 bile acids, 1 phosphatidylserine, and 2 phosphatidylethanolamines. By means of network pharmacology, the compound-target network between potential active components of YPFG and immune dysregulation was constructed, which releated to estrogen receptor, PPAR, MAPK, PI3K-Akt, JNK signaling pathways, and ubiquitin-mediated protein degradation. The immunomodulatory effect of YPFG may be exerted through regulating lipid metabolism, then bile acid metabolism and inflammation were affected. Biological verification was also performed on cyclophosphamide-induced immunocompromised BALB/c mice. Flavonoid and saponin, two types of compounds in YPFG, were found to be the major active ingredients in the immunomodulatory effects of YPFG, and these components may regulate the abnormal metabolism of bile acids by enhancing the expression of FXR and LXRα. This work elucidated active ingredients, potential biomarkers, and mechanisms of action in the immunoregulatory effects of YPFG from the perspective of systems biology, which provides a scientific basis for its precise clinical medication.

摘要

系统生物学是一种方法,它采用现代生物技术和方法将中草药配方对机体的整体调节与分子水平的系统分析相结合。本研究基于代谢组学和网络药理学方法的整合,研究了玉屏风颗粒(YPFG)的潜在免疫调节机制。首先测量了常规外周血指标、体重和与免疫相关的器官指数,以评估 YPFG 在环磷酰胺诱导免疫抑制大鼠中的作用。采用 UPLC-Q-TOF-MS 结合多变量数据分析进行血浆代谢组学分析。我们的研究表明,潜在的调节机制与胆汁酸和甘油磷脂代谢有关,涉及 11 种代谢物的调节,包括 8 种胆汁酸、1 种磷脂酰丝氨酸和 2 种磷脂酰乙醇胺。通过网络药理学构建了 YPFG 潜在活性成分与免疫失调的化合物-靶标网络,涉及雌激素受体、PPAR、MAPK、PI3K-Akt、JNK 信号通路和泛素介导的蛋白质降解。YPFG 的免疫调节作用可能通过调节脂质代谢来发挥作用,然后影响胆汁酸代谢和炎症。还在环磷酰胺诱导的免疫抑制 BALB/c 小鼠中进行了生物学验证。YPFG 中的两种化合物-黄酮类和皂苷被发现是 YPFG 免疫调节作用的主要活性成分,这些成分可能通过增强 FXR 和 LXRα 的表达来调节胆汁酸的异常代谢。这项工作从系统生物学的角度阐明了 YPFG 免疫调节作用的活性成分、潜在生物标志物和作用机制,为其精确临床用药提供了科学依据。

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