VanderBurgh Jacob A, Hotchkiss Halie, Potharazu Archit, Taufalele Paul V, Reinhart-King Cynthia A
Meinig School of Biomedical Engineering, Cornell University, Ithaca, NY, USA.
Integr Biol (Camb). 2018 Dec 19;10(12):734-746. doi: 10.1039/c8ib00124c.
Intimal stiffening has been linked with increased vascular permeability and leukocyte transmigration, hallmarks of atherosclerosis. However, recent evidence indicates age-related intimal stiffening is not uniform but rather characterized by increased point-to-point heterogeneity in subendothelial matrix stiffness, the impact of which is much less understood. To investigate the impact of spatially heterogeneous matrix rigidity on endothelial monolayer integrity, we develop a micropillar model to introduce closely-spaced, step-changes in substrate rigidity and compare endothelial monolayer phenotype to rigidity-matched, uniformly stiff and compliant substrates. We found equivalent disruption of adherens junctions within monolayers on step-rigidity and uniformly stiff substrates relative to uniformly compliant substrates. Similarly, monolayers cultured on step-rigidity substrates exhibited equivalent percentages of leukocyte transmigration to monolayers on rigidity-matched, uniformly stiff substrates. Adherens junction tension and focal adhesion density, but not size, increased within monolayers on step-rigidity and uniformly stiff substrates compared to more compliant substrates suggesting that elevated tension is disrupting adherens junction integrity. Leukocyte transmigration frequency and time, focal adhesion size, and focal adhesion density did not differ between stiff and compliant sub-regions of step-rigidity substrates. Overall, our results suggest that endothelial monolayers exposed to mechanically heterogeneous substrates adopt the phenotype associated with the stiffer matrix, indicating that spatial heterogeneities in intimal stiffness observed with age could disrupt endothelial barrier integrity and contribute to atherogenesis.
内膜硬化与血管通透性增加和白细胞迁移有关,这些都是动脉粥样硬化的特征。然而,最近的证据表明,与年龄相关的内膜硬化并非均匀一致,而是以内皮下基质硬度的点对点异质性增加为特征,其影响尚不太清楚。为了研究空间异质性基质硬度对内皮单层完整性的影响,我们开发了一种微柱模型,以引入底物硬度的紧密间隔的阶跃变化,并将内皮单层表型与硬度匹配的、均匀坚硬和柔顺的底物进行比较。我们发现,相对于均匀柔顺的底物,在阶跃硬度和均匀坚硬的底物上,单层内的黏附连接受到同等程度的破坏。同样,在阶跃硬度底物上培养的单层与在硬度匹配的、均匀坚硬的底物上培养的单层相比,白细胞迁移百分比相当。与更柔顺的底物相比,在阶跃硬度和均匀坚硬的底物上,单层内的黏附连接张力和粘着斑密度增加,但粘着斑大小未增加,这表明张力升高正在破坏黏附连接的完整性。在阶跃硬度底物的坚硬和柔顺子区域之间,白细胞迁移频率和时间、粘着斑大小和粘着斑密度没有差异。总体而言,我们的结果表明,暴露于机械异质性底物的内皮单层呈现出与更坚硬基质相关的表型,这表明随着年龄增长观察到的内膜硬度的空间异质性可能会破坏内皮屏障的完整性,并促进动脉粥样硬化的发生。
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