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Notoginsenoside R1 decreases intraplaque neovascularization by governing pericyte‐endothelial cell communication via Ang1/Tie2 axis in atherosclerosis

周细胞 血管生成素受体 新生血管 血管生成 癌症研究 血管生成素 化学 体外 医学 细胞生物学 内皮干细胞 生物 血管内皮生长因子 血管内皮生长因子受体 生物化学
作者
Yuan Li,Lei Zhang,Wenqing Yang,Lin Lin,Jinyuan Pan,Mengkai Lu,Zhiyuan Zhang,Yunlun Li,Chao Li
出处
期刊:Phytotherapy Research [Wiley]
卷期号:38 (8): 4036-4052
标识
DOI:10.1002/ptr.8257
摘要

Abstract Atherosclerosis represents the major cause of mortality worldwide and triggers higher risk of acute cardiovascular events. Pericytes‐endothelial cells (ECs) communication is orchestrated by ligand‐receptor interaction generating a microenvironment which results in intraplaque neovascularization, that is closely associated with atherosclerotic plaque instability. Notoginsenoside R 1 ( R 1 ) exhibits anti‐atherosclerotic bioactivity, but its effect on angiogenesis in atherosclerotic plaque remains elusive. The aim of our study is to explore the therapeutic effect of R 1 on vulnerable plaque and investigate its potential mechanism against intraplaque neovascularization. The impacts of R 1 on plaque stability and intraplaque neovascularization were assessed in ApoE −/− mice induced by high‐fat diet. Pericytes‐ECs direct or non‐direct contact co‐cultured with VEGF‐A stimulation were used as the in vitro angiogenesis models. Overexpressing Ang1 in pericytes was performed to investigate the underlying mechanism. In vivo experiments, R 1 treatment reversed atherosclerotic plaque vulnerability and decreased the presence of neovessels in ApoE −/− mice. Additionally, R 1 reduced the expression of Ang1 in pericytes. In vitro experiments demonstrated that R 1 suppressed pro‐angiogenic behavior of ECs induced by pericytes cultured with VEGF‐A. Mechanistic studies revealed that the anti‐angiogenic effect of R 1 was dependent on the inhibition of Ang1 and Tie2 expression, as the effects were partially reversed after Ang1 overexpressing in pericytes. Our study demonstrated that R 1 treatment inhibited intraplaque neovascularization by governing pericyte‐EC association via suppressing Ang1‐Tie2/PI3K‐AKT paracrine signaling pathway. R 1 represents a novel therapeutic strategy for atherosclerotic vulnerable plaques in clinical application.
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