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首页> 外文期刊>Biophysical Journal >Stiff Substrates Increase Inflammation-Induced Endothelial Monolayer Tension and Permeability
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Stiff Substrates Increase Inflammation-Induced Endothelial Monolayer Tension and Permeability

机译:硬质基板增加炎症诱导的内皮单层张力和渗透性

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Arterial stiffness and inflammation are associated with atherosclerosis, and each have individually been shown to increase endothelial monolayer tension and permeability. The objective of this study was to determine if substrate stiffness enhanced endothelial monolayer tension and permeability in response to inflammatory cytokines. Porcine aortic endothelial cells were cultured at confluence on polyacrylamide gels of varying stiffness and treated with either tumor necrosis factor-alpha (TNF alpha) or thrombin. Monolayer tension was measured through vinculin localization at the cell membrane, traction force microscopy, and phosphorylated myosin light chain quantity and actin fiber colocalization. Cell permeability was measured by cell-cell junction confocal microscopy and a dextran permeability assay. When treated with TNF alpha or thrombin, endothelial monolayers on stiffer substrates showed increased traction forces, vinculin at the cell membrane, and vinculin phosphorylation, suggesting elevated monolayer tension. Interestingly, VE-cadherin shifted toward a smaller molecular weight in endothelial monolayers on softer substrates, which may relate to increased VE-cadherin endocytosis and degradation. Phosphorylated myosin light chain colocalization with actin stress fibers increased in endothelial monolayers treated with TNF alpha or thrombin on stiffer substrates, indicating elevated cell monolayer contractility. Endothelial monolayers also developed focal adherens intercellular junctions and became more permeable when cultured on stiffer substrates in the presence of the inflammatory cytokines. Whereas each of these effects was likely mitigated by Rho/ROCK, Rho/ROCK pathway inhibition via Y27632 disrupted cell-cell junction morphology, showing that cell contractility is required to maintain adherens junction integrity. These data suggest that stiff substrates change intercellular junction protein localization and degradation, which may counteract the inflammation-induced increase in endothelial monolayer tension and thereby moderate inflammation-induced junction loss and associated endothelial monolayer permeability on stiffer substrates.
机译:动脉僵硬和炎症与动脉粥样硬化有关,各自被证明可以增加内皮单层张力和渗透性。本研究的目的是确定衬底刚度是否增强了内皮单层张力和响应炎性细胞因子的渗透性。猪主动脉内皮细胞在不同刚度的聚丙烯酰胺凝胶上培养,并用肿瘤坏死因子-α或凝血酶处理。通过在细胞膜,牵引力显微镜和磷酸化的肌蛋白轻链量和肌动蛋白纤维分层化的vinculin定位测量单层张力。通过细胞 - 细胞结共聚焦显微镜和葡聚糖渗透测定测量细胞渗透性。当用TNFα或凝血酶处理时,静导体底物上的内皮单层显示出增加的牵引力,在细胞膜处的vinculin,以及vinculin磷酸化,表明单层张力升高。有趣的是,ve-cadherin朝向较软的底物上的内皮单层中的较小分子量转移,这可能涉及增加的Ve-cadherin内吞作用和降解。磷酸化的肌动蛋白轻链与肌动蛋白应激纤维的分层化在用TNFα或凝血酶上处理的内皮单层升高,表明细胞单层收缩性升高。内皮单层还开发了焦粘痕细胞间隙,在炎性细胞因子存在下培养时变得更加渗透。然而,当rho /岩石中可能减轻了这些效果中的每一个,rho /岩石途径抑制通过y27632破坏细胞 - 细胞结形态,表明需要细胞收缩性以维持粘附的结完整性。这些数据表明,硬质底物改变细胞间结蛋白定位和降解,这可能抵消内皮单层张力的炎症诱导的升高,从而适度炎症诱导的结料上的结源诱导的结损和相关的内皮单层渗透性。

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