Network pharmacology-based strategy to investigate the mechanisms of artemisinin in treating primary Sjögren's syndrome.

IF 2.9 4区 医学 Q3 IMMUNOLOGY BMC Immunology Pub Date : 2024-02-12 DOI:10.1186/s12865-024-00605-3
Jia-He Liao, Qian He, Zi-Wei Huang, Xin-Bo Yu, Jian-Ying Yang, Yan Zhang, Wei-Jiang Song, Jing Luo, Qing-Wen Tao
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Abstract

Objective: The study aimed to explore the mechanism of artemisinin in treating primary Sjögren's syndrome (pSS) based on network pharmacology and experimental validation.

Methods: Relevant targets of the artemisinin and pSS-related targets were integrated by public databases online. An artemisinin-pSS network was constructed by Cytoscape. The genes of artemisinin regulating pSS were imported into STRING database to construct a protein-protein interaction (PPI) network in order to predict the key targets. The enrichment analyses were performed to predict the crucial mechanism and pathway of artemisinin against pSS. The active component of artemisinin underwent molecular docking with the key proteins. Artemisinin was administered intragastrically to SS-like NOD/Ltj mice to validate the efficacy and critical mechanisms.

Results: Network Pharmacology analysis revealed that artemisinin corresponded to 412 targets, and pSS related to 1495 genes. There were 40 intersection genes between artemisinin and pSS. KEGG indicated that therapeutic effects of artemisinin on pSS involves IL-17 signaling pathway, HIF-1 signaling pathway, apoptosis signaling pathway, Th17 cell differentiation, PI3K-Akt signaling pathway, and MAPK signaling pathway. Molecular docking results further showed that the artemisinin molecule had higher binding energy by combining with the key nodes in IL-17 signaling pathway. In vivo experiments suggested artemisinin can restored salivary gland secretory function and improve the level of glandular damage of NOD/Ltj mice. It contributed to the increase of regulatory T cells (Tregs) and the downregulated secretion of IL-17 in NOD/Ltj model.

Conclusion: The treatment of pSS with artemisinin is closely related to modulating the balance of Tregs and Th17 cells via T cell differentiation.

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基于网络药理学的策略,研究青蒿素治疗原发性 Sjögren's 综合征的机制。
研究目的该研究旨在基于网络药理学和实验验证,探讨青蒿素治疗原发性斯约格伦综合征(pSS)的机制:方法:通过在线公共数据库整合青蒿素的相关靶点和pSS相关靶点。方法:通过网上公共数据库整合青蒿素相关靶点和 pSS 相关靶点,利用 Cytoscape 构建青蒿素-pSS 网络。将青蒿素调控 pSS 的基因导入 STRING 数据库,构建蛋白-蛋白相互作用(PPI)网络,以预测关键靶标。通过富集分析,预测了青蒿素调控 pSS 的关键机制和途径。青蒿素的活性成分与关键蛋白进行了分子对接。将青蒿素灌胃给类SS NOD/Ltj小鼠,以验证其疗效和关键机制:结果:网络药理学分析表明,青蒿素与 412 个靶点相对应,而 pSS 与 1495 个基因相关。青蒿素和 pSS 之间有 40 个交叉基因。KEGG表明,青蒿素对pSS的治疗作用涉及IL-17信号通路、HIF-1信号通路、细胞凋亡信号通路、Th17细胞分化、PI3K-Akt信号通路和MAPK信号通路。分子对接结果进一步表明,青蒿素分子与 IL-17 信号通路的关键节点结合后具有更高的结合能。体内实验表明,青蒿素能恢复 NOD/Ltj 小鼠唾液腺分泌功能,改善腺体损伤程度。结论:青蒿素治疗唾液腺增生症具有显著的疗效:结论:青蒿素治疗 pSS 与通过 T 细胞分化调节 Tregs 和 Th17 细胞的平衡密切相关。
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来源期刊
BMC Immunology
BMC Immunology 医学-免疫学
CiteScore
5.50
自引率
0.00%
发文量
54
审稿时长
1 months
期刊介绍: BMC Immunology is an open access journal publishing original peer-reviewed research articles in molecular, cellular, tissue-level, organismal, functional, and developmental aspects of the immune system as well as clinical studies and animal models of human diseases.
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