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热毒宁通过PI3K-AKT信号通路减轻脂多糖诱导的人脐静脉内皮细胞(HUVECs)凋亡。

Reduning Attenuates LPS-Induced Human Unmilical Vein Endothelial Cells (HUVECs) Apoptosis Through PI3K-AKT Signaling Pathway.

作者信息

Wang Ziyi, Wang Xuesong, Guo Zhe, Liao Haiyan, Chai Yan, Wang Ziwen, Wang Zhong

机构信息

School of Clinical Medicine, Tsinghua University, Beijing, China.

Department of Liver Intensive Care Unit, Beijing Tsinghua Changgung Hospital, Beijing, China.

出版信息

Front Pharmacol. 2022 Jul 12;13:921337. doi: 10.3389/fphar.2022.921337. eCollection 2022.

Abstract

The molecular mechanism of Reduning (RDN) in the treatment of sepsis was analyzed based on network pharmacology. The system pharmacology method was administered to search the active ingredients and targets of RDN, identify the sepsis-related genes, and determine the targets of RDN in the treatment of sepsis. Cytoscape was used to build a "drug component-target" network to screen key compounds. A protein-protein interaction (PPI) network was constructed using STRING, and core targets were revealed through topological analysis. 404 shared targets of RDN and sepsis were introduced into DAVID Bioinformatics Resources 6.8 for GO and KEGG enrichment analysis to predict their possible signaling pathways and explore their molecular mechanisms. GO enrichment analysis highlighted that they were largely related to protein phosphorylation, inflammatory reaction, and positive regulation of mitogen-activated protein kinase (MAPK) cascade. KEGG enrichment analysis outlined that they were enriched in PI3K-AKT signaling pathway, calcium signaling pathway, rhoptry-associated protein 1 (Rap1) signaling pathway, and advanced glycation end products and receptors for advanced glycation end products (AGE-RAGE) signaling pathway. Molecular biological validation results exposed that RDN could significantly improve the protein expression of p-AKT and p-PI3K, alleviate apoptosis-related proteins expression level and decrease apoptosis rate in LPS-induced HUVECs. In conclusion, it was illustrated that RDN could considerably constrain LPS-induced apoptosis by activating the PI3K-AKT signaling pathway, which advocated a basis for fundamental mechanism research and clinical application of RDN in the treatment of sepsis.

摘要

基于网络药理学分析热毒宁(RDN)治疗脓毒症的分子机制。运用系统药理学方法检索RDN的活性成分和靶点,鉴定脓毒症相关基因,并确定RDN治疗脓毒症的靶点。使用Cytoscape构建“药物成分-靶点”网络以筛选关键化合物。利用STRING构建蛋白质-蛋白质相互作用(PPI)网络,并通过拓扑分析揭示核心靶点。将RDN和脓毒症的404个共同靶点导入DAVID生物信息学资源6.8进行基因本体论(GO)和京都基因与基因组百科全书(KEGG)富集分析,以预测其可能的信号通路并探索其分子机制。GO富集分析突出显示,它们主要与蛋白质磷酸化、炎症反应以及丝裂原活化蛋白激酶(MAPK)级联的正调控有关。KEGG富集分析表明,它们富集于磷脂酰肌醇-3激酶-蛋白激酶B(PI3K-AKT)信号通路、钙信号通路、Ras相关蛋白1(Rap1)信号通路以及晚期糖基化终产物及其受体(AGE-RAGE)信号通路。分子生物学验证结果表明,RDN可显著提高脂多糖(LPS)诱导的人脐静脉内皮细胞(HUVECs)中磷酸化蛋白激酶B(p-AKT)和磷酸化磷脂酰肌醇-3激酶(p-PI3K)的蛋白表达,减轻凋亡相关蛋白的表达水平并降低凋亡率。总之,结果表明RDN可通过激活PI3K-AKT信号通路显著抑制LPS诱导的细胞凋亡,这为RDN治疗脓毒症的基础机制研究和临床应用提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fa9/9315302/5b687b3a79ab/fphar-13-921337-g001.jpg

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