桑芪清旋液减轻高血压血管内皮损伤的机制研究重点在于β-Catenin。

IF 2.2 3区 医学 Q2 INTEGRATIVE & COMPLEMENTARY MEDICINE
Wei-Quan Ren, Xin Zeng, Jiang-Quan Liao, Li Huang, Lin Li
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引用次数: 0

摘要

目的:通过网络药理学方法探讨桑芪清玄液治疗高血压动脉血管内皮细胞损伤的主要成分及可能机制。方法:采用中药系统药理学分析平台(TCMSP)和中药综合数据库(TCMID)对桑芪清玄液(SQQX)中符合口服利用率和药物相似度标准的有效成分进行筛选。利用Cytoscape 3.6软件构建活性组分-目标网络。利用Search Tool for Retrieval of Interacting Genes/Proteins (STRING)数据库,构建与SQQX治疗高血压相关的蛋白-蛋白相互作用(PPI)靶点网络。利用metscape数据库对基因本体生物学功能进行富集分析,对PPI网络中蛋白质进行MSigDB通路富集分析。采用UPLC-MS对SQQX的主要成分进行进一步分析。基于网络药理学结果,通过慢病毒转染Wnt/ β -catenin信号通路,验证SQQX改善高血压avec损伤的机制。采用血管紧张素II (angii)诱导avec建立高血压患者内皮功能损伤模型。测定细胞活力、细胞内一氧化氮含量、丙二醛含量和超氧化物歧化酶活性,确定最佳诱导条件。根据细胞活力、细胞DNA活性和梯度法确定SQQX的最佳干预条件。将细胞进一步分为空白组、模型组、过表达慢病毒阴性对照组、过表达慢病毒组、过表达慢病毒+ SQQX干预组(2.47 mg/mL, 12 h)、抑制慢病毒组、抑制慢病毒组、抑制慢病毒组和抑制慢病毒+ SQQX干预组(2.47 mg/mL, 12 h)。最后,通过实时荧光定量PCR和Western blotting分析SQQX在Wnt/ β -catenin信号通路中的分子机制。结果:黄芩苷的主要成分依次为甜菜碱、车尾草苷、绿原酸。网络药理学分析筛选了高血压血管内皮相关的12条通路。结果表明,1µmol/L干预12 h是Ang II诱导AVECs损伤的最佳条件,2.47 mg/mL SQQX干预12 h是治疗AVECs损伤的最佳条件。在基于Wnt/β -catenin信号通路相互作用网络的实验验证中,SQQX可显著降低β -catenin过表达慢病毒引起的β -catenin、Smad2、过氧化物酶体增殖激活受体(PPARs)、内皮一氧化氮合酶(eNOS)和内皮素-1 (ET-1)的表达(结论:SQQX可能通过调节Wnt/β -catenin信号通路对avec损伤具有保护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanism of Sangqi Qingxuan Liquid in Alleviating Vascular Endothelial Injury in Hypertension Focuses on β-Catenin.

Objective: To explore the main components and potential mechanisms of Sangqi Qingxuan Liquid in the treatment of arterial vascular endothelial cells (AVECs) injury in hypertension through network pharmacology.

Methods: Traditional Chinese Medicine Systems Pharmacology and Analysis Platform (TCMSP) and Traditional Chinese Medicine Integrated Database (TCMID) were used to screen the active components of Sangqi Qingxuan Liquid (SQQX), which met the oral utilization rate and drug similarity criteria. An active component-target network was constructed using Cytoscape 3.6 software. A protein-protein interaction (PPI) network of targets associated with SQQX treatment for hypertension was constructed using the Search Tool for the Retrieval of Interacting Genes/Proteins (STRING) database. The Metascape database was used to perform enrichment analysis of gene ontology biological functions and MSigDB pathway enrichment analysis of proteins in the PPI network. Further analysis of the main components of SQQX was performed using UPLC-MS. Based on the results of network pharmacology, the mechanism of SQQX to improve the injury of AVECs in hypertension was verified through lentiviral transfection by Wnt/ β -catenin signaling pathway. AVECs induced by angiotensin II (Ang II ) was used to establish a model of endothelial function injury in hypertension. Cell viability, intracellular nitric oxide content, malonaldehyde content, and superoxide dismutase activity were measured to determine the optimal induction conditions. The optimal intervention conditions for SQQX were determined based on cell viability, cellular DNA activity, and the gradient method. The cells were further divided into blank, model, overexpression lentivirus negative control, overexpression lentivirus, overexpression lentivirus + SQQX intervention (2.47 mg/mL, 12 h), inhibition lentivirus negative control, inhibition lentivirus, and inhibition lentivirus + SQQX intervention (2.47 mg/mL, 12 h) groups. Finally, quantitative real-time PCR and Western blotting were performed to analyze the molecular mechanisms of SQQX in the Wnt/ β -catenin signaling pathway.

Results: The main SQQX components were betaine, buddleoside, and chlorogenic acid, in descending order. Network pharmacology analysis screened 12 pathways associated with the hypertensive vascular endothelium. The results showed that 1 µ mol/L for 12 h was the optimal condition for Ang II to induce AVECs injury, and 2.47 mg/mL SQQX intervention for 12 h was the optimal condition for treating AVECs injury. In the experimental validation based on the interaction network of the Wnt/ β -catenin signaling pathway, SQQX significantly decreased the expressions of β -catenin, Smad2, peroxisome proliferator-activated receptors (PPARs), endothelial nitric oxide synthase (eNOS), and endothelin-1 (ET-1) caused by the β -catenin overexpression lentivirus (P<0.05 or P<0.01). The function of vascular endothelial cells can be improved by the β -catenin inhibition lentivirus, and no obvious changes were observed after further intervention with SQQX.

Conclusion: SQQX may protect against AVECs injury by regulating the Wnt/β -catenin signaling pathway.

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来源期刊
Chinese Journal of Integrative Medicine
Chinese Journal of Integrative Medicine 医学-全科医学与补充医学
CiteScore
5.90
自引率
3.40%
发文量
2413
审稿时长
3 months
期刊介绍: Chinese Journal of Integrative Medicine seeks to promote international communication and exchange on integrative medicine as well as complementary and alternative medicine (CAM) and provide a rapid forum for the dissemination of scientific articles focusing on the latest developments and trends as well as experiences and achievements on integrative medicine or CAM in clinical practice, scientific research, education and healthcare.
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