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Endothelial Monolayers and Transendothelial Migration Depend on Mechanical Properties of the Substrate

机译:内皮细胞单层和跨内皮迁移取决于基质的机械性能

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摘要

Endothelial cells (ECs) line the microvasculature and constitute a barrier between the vessel lumen and surrounding tissues. ECs inform circulating immune cells of the health and integrity of surrounding tissues, recruiting them in response to pathogens and tissue damage. ECs play an active role in the transmigration of immune cells across the vessel wall. We have discovered important differences in the properties of ECs on soft hydrogel substrates of varying stiffness, in comparison to glass. Primary ECs from several human sources were tested; all formed monolayers normally on soft substrates. EC monolayers formed more mature cell-cell junctions on soft substrates, relative to glass, based on increased recruitment of vinculin and F-actin. EC monolayers supported transendothelial migration (TEM) on soft substrates. Immune cells, including peripheral blood lymphocytes (PBLs) and natural killer cells, showed decreasing numbers of paracellular (between-cell) transmigration events with decreasing substrate stiffness, while the number of transcellular (through-cell) events increased for PBLs. Melanoma cancer cells showed increased transmigration with decreased stiffness. Our findings demonstrate that endothelial monolayers respond to the mechanical properties of their surroundings, which can regulate the integrity and function of the monolayer independently from inflammatory signals. Soft hydrogel substrates are a more appropriate and physiological model for tissue environments than hard substrates, with important implications for the experimental analysis of
机译:内皮细胞(EC)排列在微脉管系统中,并在血管腔和周围组织之间形成屏障。 EC将循环免疫细胞告知周围组织的健康和完整性,以响应病原体和组织损伤而募集它们。 EC在免疫细胞跨血管壁的迁移中发挥积极作用。我们发现与玻璃相比,在具有不同刚度的软水凝胶基质上EC的性能存在重要差异。对来自多个人类来源的主要EC进行了测试;通常在柔软的基材上形成所有单层。相对于玻璃,EC的单层膜在软质基底上形成了更成熟的细胞-细胞连接,这是基于增加的纽蛋白和F-肌动蛋白的。 EC单层在柔软的基质上支持跨内皮迁移(TEM)。免疫细胞,包括外周血淋巴细胞(PBLs)和自然杀伤细胞,显示副细胞(细胞间)迁移事件数量减少,底物刚度降低,而PBLs的跨细胞(贯通细胞)事件数量增加。黑色素瘤癌细胞显示出增加的迁移,但僵硬度降低。我们的发现表明,内皮单层对周围环境的机械特性有反应,可以独立于炎症信号调节单层的完整性和功能。与硬质基质相比,软质水凝胶基质是一种更适合组织环境的生理模型,对硬脂酸酯的实验分析具有重要意义。

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