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Endothelial directed collective migration depends on substrate stiffness via localized myosin contractility and cell-matrix interactions

机译:内皮细胞定向的集体迁移取决于局部肌球蛋白的收缩力和细胞-基质相互作用的底物刚度

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Macrovascular endothelial injury, which may be caused by percutaneous intervention, requires endothelial cell directed collective migration to restore an intact endothelial monolayer. While interventions are often performed in arteries stiffened by cardiovascular disease, the effect of substrate stiffness on endothelial cell collective migration has not been examined. We studied porcine aortic endothelial cell directed collective migration using a modified cage assay on 4, 14, and 50 kPa collagen-coated polyacrylamide gels. Total cell migration distance was measured over time, as were nuclear alignment and nuclear:total p-catenin as measures of cell directedness and cell cell junction integrity, respectively. In addition, fibronectin fibers were examined as a measure of extracellular matrix deposition and remodeling. We now show that endothelial cells collectively migrate farther on stiffer substrates by 24 h. Cells were more directed in the migration direction on intermediate stiffness substrates from 12 to 24 h, with an alignment peak 400-700 pm back from the migratory interface. However, cells on the softest substrates had the highest cell cell junction integrity. Cells on all substrates deposited fibronectin, however fibronectin fibers were most linear and aligned on the stiffer substrates. When Rho kinase (ROCK) was inhibited with Y27632, cells on soft substrates migrated farther and cells on both soft and stiff substrates were more directed. When as integrin was knocked down with siRNA, cells on stiffer substrates did not migrate as far and were less directed. These data suggest that ROCK-mediated myosin Wcontractility inhibits endothelial cell collective migration on soft substrates, while cell-matrix interactions are critical to endothelial cell collective migration on stiff substrates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:经皮介入可能引起大血管内皮损伤,需要内皮细胞定向集体迁移才能恢复完整的内皮单层。尽管通常在因心血管疾病而僵直的动脉中进行干预,但尚未检查基质刚度对内皮细胞集体迁移的影响。我们在4、14和50 kPa胶原蛋白包被的聚丙烯酰胺凝胶上使用改良的笼分析法研究了猪主动脉内皮细胞定向迁移。随时间测量总细胞迁移距离,分别测量核比对和核对:总p-catenin作为细胞定向性和细胞间细胞连接完整性的量度。另外,检查了纤连蛋白纤维作为细胞外基质沉积和重塑的量度。现在,我们显示内皮细胞在24 h内在更硬的基质上集体迁移得更远。在12到24小时之间,细胞在中间刚度基质上的迁移方向更直接,从迁移界面返回的比对峰为400-700 pm。但是,最柔软的基材上的细胞具有最高的细胞细胞连接完整性。所有底物上的细胞都沉积了纤连蛋白,但是纤连蛋白纤维最线性,并且在较硬的底物上排列。当Rho激酶(ROCK)被Y27632抑制时,软质底物上的细胞迁移得更远,而软质和硬质底物上的细胞都更具针对性。当用siRNA敲除整联蛋白时,在较坚硬的底物上的细胞不会迁移到很远,定向性也更差。这些数据表明,ROCK介导的肌球蛋白W收缩性抑制了软基质上的内皮细胞集体迁移,而细胞-基质相互作用对于坚硬基质上的内皮细胞集体迁移至关重要。 (C)2016 Elsevier Ltd.保留所有权利。

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