网络药理学和体内实验验证揭示了竹芍颗粒抗溃疡性结肠炎的作用机制。

IF 3.7 3区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Benjiao Gong, Chenglin Zhang, Shaofei Hu, Xueying Zhang, Hui Zou, Jiayao Li, Jiahui Wang, Yanlei Kao, Fujun Liu
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引用次数: 0

摘要

背景:竹节颗粒是治疗溃疡性结肠炎的有效中药方剂。然而,ZSG的潜在抗炎机制尚不清楚。本研究旨在结合网络药理学和动物实验,揭示ZSG抗UC的作用机制。方法:采用网络药理学方法,鉴定ZSG抗UC的有效成分和治疗靶点。使用STRING数据库构建治疗靶点之间的蛋白-蛋白相互作用(PPI)网络,使用DAVID进行GO和通路分析。然后,建立基于治疗靶点的“草药-成分-靶点-通路”网络,并计算拓扑参数,通过Cytoscape识别中枢活性成分、靶点和通路。最后,利用tnbs诱导的BABL/c小鼠UC模型,验证了ZSG对UC的治疗作用和特殊途径。结果:从《中国中医药大百科全书》和《中医药系统药理学数据库与分析平台》中获得ZSG的94个有效成分和460个潜在靶点,从OMIM和HINT中获得UC的884个潜在靶点。确定了62个重叠的潜在靶点作为ZSG治疗UC的靶点。PPI网络共筛选出61个治疗靶点。GO和通路分析分别提取了48、25和98个与生物过程、分子功能和Reactome通路相关的术语。富集分析提示其治疗靶点主要参与免疫调节,尤其是rip介导的NF-κB活化。对“草药-成分-靶点-通路”网络进行拓扑分析,识别出9个枢纽成分、20个枢纽靶点和18个枢纽通路。动物实验显示,ZSG通过显著抑制ZBP1/RIP/NF-κB通路改善tnbs诱导结肠炎的症状和组织学改变。结论:ZSG可能通过靶向ZBP1/RIP/NF-κB通路减轻粘膜损伤,改善结肠炎,为ZSG的临床应用和进一步研究奠定了理论基础,为UC的治疗提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Network pharmacology and experimental verification in vivo reveal the mechanism of Zhushao Granules against ulcerative colitis.

Background: Zhushao Granules (ZSG) had exhibited beneficial effects in the treatment of ulcerative colitis (UC) as an effective herbal prescription in Traditional Chinese Medicine. However, the underlying anti-inflammatory mechanism of ZSG remains unclear. This study aimed to decipher the mechanism of ZSG against UC combining network pharmacology and animal-based experiments.

Methods: Network pharmacology was employed to identify active components and therapeutic targets of ZSG against UC. The protein-protein interaction (PPI) network was constructed among the therapeutic targets using the STRING database, and GO and pathway analyses were carried out using DAVID. Then, the "herb-component-target-pathway" network based on therapeutic targets was established and the topological parameters were subsequently calculated to identify hub active components, targets and pathways by Cytoscape. Finally, the therapeutic function and the special pathway of ZSG against UC were validated using a TNBS-induced UC model in BABL/c mice.

Results: Ninety-four active components of ZSG and 460 potential targets were acquired from the Encyclopedia of Traditional Chinese Medicine and Tradition Chinese Medicine Systems Pharmacology Database and Analysis Platform. 884 potential targets of UC were obtained from OMIM and HINT. Sixty-two overlapping potential targets were identified as therapeutic targets of ZSG against UC. PPI network filtered out 61 therapeutic targets. GO and pathway analyses extracted 48, 25, and 98 terms corresponding to biological processes, molecular functions and Reactome pathways, respectively. Enrichment analysis suggested that the therapeutic targets were mainly involved in immune regulation, especially RIP-mediated NF-κB activation via ZBP1. Topological analysis of the "herb-component-target-pathway" network recognized 9 hub components, 20 hub targets and 18 hub pathways. The animal-based experiments revealed that ZSG ameliorated symptoms and histological changes in TNBS-induced colitis by significantly inhibiting the ZBP1/RIP/NF-κB pathway.

Conclusions: ZSG might alleviate the mucosal damage and ameliorate colitis via targeting ZBP1/RIP/NF-κB pathway, which laid the theoretical foundation for the clinical application and further study of ZSG and provided new insights into UC treatment.

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来源期刊
Biological Procedures Online
Biological Procedures Online 生物-生化研究方法
CiteScore
10.50
自引率
0.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: iological Procedures Online publishes articles that improve access to techniques and methods in the medical and biological sciences. We are also interested in short but important research discoveries, such as new animal disease models. Topics of interest include, but are not limited to: Reports of new research techniques and applications of existing techniques Technical analyses of research techniques and published reports Validity analyses of research methods and approaches to judging the validity of research reports Application of common research methods Reviews of existing techniques Novel/important product information Biological Procedures Online places emphasis on multidisciplinary approaches that integrate methodologies from medicine, biology, chemistry, imaging, engineering, bioinformatics, computer science, and systems analysis.
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