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主动脉内皮细胞的核机械感知:在健康和疾病中的作用。

Nuclear mechanosensing of the aortic endothelium in health and disease.

机构信息

Department of Oncology-Pathology, Karolinska Institute, Stockholm 171 64, Sweden.

出版信息

Dis Model Mech. 2023 Oct 1;16(10). doi: 10.1242/dmm.050361. Epub 2023 Nov 1.

Abstract

The endothelium, the monolayer of endothelial cells that line blood vessels, is exposed to a number of mechanical forces, including frictional shear flow, pulsatile stretching and changes in stiffness influenced by extracellular matrix composition. These forces are sensed by mechanosensors that facilitate their transduction to drive appropriate adaptation of the endothelium to maintain vascular homeostasis. In the aorta, the unique architecture of the vessel gives rise to changes in the fluid dynamics, which, in turn, shape cellular morphology, nuclear architecture, chromatin dynamics and gene regulation. In this Review, we discuss recent work focusing on how differential mechanical forces exerted on endothelial cells are sensed and transduced to influence their form and function in giving rise to spatial variation to the endothelium of the aorta. We will also discuss recent developments in understanding how nuclear mechanosensing is implicated in diseases of the aorta.

摘要

内皮细胞是排列在血管内的单层细胞,它们会受到多种机械力的作用,包括摩擦剪切流、脉动拉伸以及细胞外基质组成影响的刚度变化。这些力由机械感受器感知,有助于将其转化为驱动力,以促使内皮细胞进行适当的适应,从而维持血管的稳态。在主动脉中,血管的独特结构会引起流体动力学的变化,进而影响细胞形态、核结构、染色质动力学和基因调控。在这篇综述中,我们讨论了最近的研究工作,重点关注作用于内皮细胞的不同机械力是如何被感知和转化的,从而影响它们的形态和功能,导致主动脉内皮的空间变化。我们还将讨论最近在理解核机械感知如何参与主动脉疾病方面的进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f793/10629673/7ae1c10f3531/dmm-16-050361-g1.jpg

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