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机械应激肺微血管内皮细胞中内皮通透性的力控制

Force control of endothelium permeability in mechanically stressed pulmonary micro-vascular endothelial cells.

作者信息

Wang Bin, Caluch Adam, Fodil Redouane, Féréol Sophie, Zadigue Patricia, Pelle Gabriel, Louis Bruno, Isabey Daniel

机构信息

Inserm, U955, E13, Biomécanique Cellulaire et Respiratoire, Créteil, France.

出版信息

Biomed Mater Eng. 2012;22(1-3):163-70. doi: 10.3233/BME-2012-0703.

Abstract

Mechanical factors play a key role in the pathogenesis of Acute Respiratory Distress Syndrome (ARDS) and Ventilator-Induced Lung Injury (VILI) as contributing to alveolo-capillary barrier dysfunction. This study aims at elucidating the role of the cytoskeleton (CSK) and cell-matrix adhesion system in the stressed endothelium and more precisely in the loss of integrity of the endothelial barrier. We purposely develop a cellular model made of a monolayer of confluent Human Pulmonary Microvascular Endothelial Cells (HPMVECs) whose cytoskeleton (CSK) is directly exposed to sustained cyclic mechanical stress for 1 and 2 h. We used RGD-coated ferromagnetic beads and measured permeability before and after stress application. We find that endothelial permeability increases in the stressed endothelium, hence reflecting a loss of integrity. Structural and mechanical results suggest that this endothelial barrier alteration would be due to physically-founded discrepancies in latero-basal reinforcement of adhesion sites in response to the global increase in CSK stiffness or centripetal intracellular forces. Basal reinforcement of adhesion is presently evidenced by the marked redistribution of αvβ3 integrin with cluster formation in the stressed endothelium.

摘要

机械因素在急性呼吸窘迫综合征(ARDS)和呼吸机诱导性肺损伤(VILI)的发病机制中起着关键作用,可导致肺泡-毛细血管屏障功能障碍。本研究旨在阐明细胞骨架(CSK)和细胞-基质粘附系统在应激内皮细胞中的作用,更确切地说是在内皮屏障完整性丧失中的作用。我们特意构建了一个由汇合的人肺微血管内皮细胞(HPMVECs)单层组成的细胞模型,其细胞骨架(CSK)直接暴露于持续的周期性机械应力下1小时和2小时。我们使用了RGD包被的铁磁珠,并在施加应力前后测量了通透性。我们发现应激内皮细胞的内皮通透性增加,从而反映出完整性的丧失。结构和力学结果表明,这种内皮屏障改变可能是由于在CSK刚度或向心细胞内力整体增加的情况下,粘附位点侧向-基底强化存在基于物理的差异。目前,αvβ3整合素在应激内皮细胞中的明显重新分布和簇集形成证明了粘附的基底强化。

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