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高腔内压力通过窖蛋白-1促进血管炎症。

High intraluminal pressure promotes vascular inflammation via caveolin-1.

机构信息

Baker Heart and Diabetes Institute, Melbourne, VIC, Australia.

Department of Medicine, Monash University, Clayton, VIC, Australia.

出版信息

Sci Rep. 2021 Mar 15;11(1):5894. doi: 10.1038/s41598-021-85476-z.

Abstract

The aetiology and progression of hypertension involves various endogenous systems, such as the renin angiotensin system, the sympathetic nervous system, and endothelial dysfunction. Recent data suggest that vascular inflammation may also play a key role in the pathogenesis of hypertension. This study sought to determine whether high intraluminal pressure results in vascular inflammation. Leukocyte adhesion was assessed in rat carotid arteries exposed to 1 h of high intraluminal pressure. The effect of intraluminal pressure on signaling mechanisms including reactive oxygen species production (ROS), arginase expression, and NFĸB translocation was monitored. 1 h exposure to high intraluminal pressure (120 mmHg) resulted in increased leukocyte adhesion and inflammatory gene expression in rat carotid arteries. High intraluminal pressure also resulted in a downstream signaling cascade of ROS production, arginase expression, and NFĸB translocation. This process was found to be angiotensin II-independent and mediated by the mechanosensor caveolae, as caveolin-1 (Cav1)-deficient endothelial cells and mice were protected from pressure-induced vascular inflammatory signaling and leukocyte adhesion. Cav1 deficiency also resulted in a reduction in pressure-induced glomerular macrophage infiltration in vivo. These findings demonstrate Cav1 is an important mechanosensor in pressure-induced vascular and renal inflammation.

摘要

高血压的病因和进展涉及各种内源性系统,如肾素-血管紧张素系统、交感神经系统和内皮功能障碍。最近的数据表明,血管炎症也可能在高血压的发病机制中起关键作用。本研究旨在确定腔内高压是否会导致血管炎症。在暴露于高腔内压力 1 小时的大鼠颈动脉硬化中评估白细胞黏附。监测腔内压力对信号机制的影响,包括活性氧(ROS)的产生、精氨酸酶表达和 NFĸB 易位。1 小时暴露于高腔内压力(120mmHg)导致大鼠颈动脉硬化中的白细胞黏附和炎症基因表达增加。腔内高压还导致 ROS 产生、精氨酸酶表达和 NFĸB 易位的下游信号级联反应。该过程被发现与血管紧张素 II 无关,并且由机械感受器 caveolae 介导,因为 caveolin-1(Cav1)缺陷型内皮细胞和小鼠免受压力诱导的血管炎症信号和白细胞黏附的影响。Cav1 缺乏也导致体内压力诱导的肾小球巨噬细胞浸润减少。这些发现表明 Cav1 是压力诱导的血管和肾脏炎症中的重要机械感受器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8ce/7960707/7082fe9d61b7/41598_2021_85476_Fig1_HTML.jpg

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