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Laminar shear stress promotes endothelial cell migration and inhibits cell apoptosis in the presence of hydroxyurea.

机译:在存在羟基脲的情况下,层流剪切应力促进内皮细胞迁移并抑制细胞凋亡。

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摘要

Cell migration plays important roles in both physiological and pathological processes. Recent studies have shown that hydroxyurea, which is an anti-proliferative inhibitor, can affect cell morphology and specific gene expression of endothelial cells (ECs). In vivo, the functions of ECs are modulated by shear stress. It is well known that shear stress can have effects on EC migration by affecting cell morphology, cytoskeletal arrangement and cell-cell junction, and activating mechanosensors, inducing the changes of signaling pathways, and then increasing or decreasing the expression of gene and protein. However, the influences of hydroxyurea on EC function under shear stress are still unclear. In present study, we investigated the effects of hydroxyurea on EC proliferation, apoptosis and migration under laminar shear stress. The results showed that hydroxyurea prevented growth of ECs in a dose-dependent manner. Hydroxyurea at 2 mM completely inhibited the proliferation of ECs. The results also demonstrated that hydroxyurea induced EC apoptosis, but it was inhibited by 15.27 dyn/cm2 laminar shear stress. Furthermore, shear stress induced cell migration in the presence of hydroxyurea. Therefore, 2 mM hydroxyurea, which completely inhibited the proliferation of HUVECs, could be used to eliminate any confounding effect of shear stress on proliferation in shear stress-induced cell migration. These results also do confirm that shear stress plays important roles in achieving and maintaining the stabilization of ECs.
机译:细胞迁移在生理和病理过程中均起重要作用。最近的研究表明,羟基脲是一种抗增殖抑制剂,可以影响内皮细胞(EC)的细胞形态和特定基因表达。在体内,EC的功能受剪切应力调节。众所周知,剪切应力可通过影响细胞形态,细胞骨架排列和细胞间连接,激活机械传感器,诱导信号传导途径的变化,然后增加或减少基因和蛋白质的表达,从而影响EC迁移。然而,在剪切应力下羟基脲对EC功能的影响仍不清楚。在本研究中,我们调查了层状剪切应力下羟基脲对EC增殖,凋亡和迁移的影响。结果表明,羟基脲以剂量依赖性方式阻止了EC的生长。 2 mM的羟基脲完全抑制EC的增殖。结果还表明,羟基脲可诱导EC凋亡,但被15.27 dyn / cm2层流剪切应力抑制。此外,剪切应力在羟基脲存在下诱导细胞迁移。因此,完全抑制HUVECs增殖的2 mM羟基脲可用于消除剪切应力引起的细胞迁移中剪切应力对增殖的任何混杂影响。这些结果也确实证实了剪切应力在实现和维持EC的稳定性方面起着重要作用。

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