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Extracellular matrix production and regulation in micropatterned endothelial cells

机译:微模式内皮细胞的细胞外基质产生和调控

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摘要

Production and maintenance of extracellular matrix (ECM) is an essential aspect of endothelial cell (EC) function. ECM surfaces composed of collagen type IV and laminin support an atheroprotective endothelium, while fibronectin may encourage an atheroprone endothelium through inflammation or wound repair signaling. ECs maintain this underlying structure through regulation of protein production and degradation, yet the role of cytoskeletal alignment on this regulation is unknown. To examine the regulation and production of ECM by ECs with an atheroprotective phenotype, ECs were micropatterned onto lanes, which created an elongated EC morphology similar to that seen with unidirectional fluid shear stress application. Collagen IV and fibronectin protein production were measured as were gene expression of collagen IV, fibronectin, laminin, MMP2, MMP9, TIMP1, TIMP2, and TGF-β1. ECs were also treated with TNF to simulate an injury model. Micropattern-induced elongation led to significant increases in collagen IV and fibronectin protein production, and collagen IV, laminin, and TGF-β1 gene expression, but no significant changes in the MMP or TIMP genes. TNF treatment significantly increased collagen IV gene and protein production. These results suggest that the increase in ECM synthesis in micropattern-elongated ECs is likely regulated with TGF-β1, and this increase in ECM could be relevant to the atheroprotection needed for maintenance of a healthy endothelium in vivo.
机译:细胞外基质(ECM)的产生和维持是内皮细胞(EC)功能的重要方面。由IV型胶原蛋白和层粘连蛋白组成的ECM表面支持动脉粥样硬化保护性内皮,而纤连蛋白可能通过炎症或伤口修复信号来促进动脉粥样硬化内皮。 EC通过调节蛋白质的产生和降解来维持这种基础结构,但是细胞骨架排列在这种调节中的作用尚不清楚。为了检查具有抗动脉粥样硬化表型的EC对ECM的调节和产生,将EC微图案化到泳道上,从而形成了与单向流体剪切应力作用类似的细长EC形态。测量胶原蛋白IV和纤连蛋白的蛋白产生,以及胶原蛋白IV,纤连蛋白,层粘连蛋白,MMP2,MMP9,TIMP1,TIMP2和TGF-β1的基因表达。还用TNF治疗EC以模拟损伤模型。微图案诱导的伸长导致胶原蛋白IV和纤连蛋白蛋白产量以及胶原蛋白IV,层粘连蛋白和TGF-β1基因表达显着增加,但MMP或TIMP基因没有明显变化。 TNF治疗显着增加了胶原IV基因和蛋白质的产生。这些结果表明,微模式延长的ECs中ECM合成的增加可能受TGF-β1调节,并且ECM的这种增加可能与体内维持健康内皮所需的动脉粥样硬化防护有关。

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