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Effect of flow-induced shear stress on migration of human trophoblast cells.

机译:流致剪切应力对人滋养层细胞迁移的影响。

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BACKGROUND: During the processes of placenta development, the migration of the trophoblast cells (TCs) is most likely affected by blood flow. This study was to examine the effect of flow-induced shear stress on the migration of the human TCs. METHODS: Using a flow chamber technique, steady-state flow shear stress was imposed on early gestation human TCs cultured on glass slides for up to 24h. The imposed shear stress levels in this study were 0, 7.5, 15, and 30dyn/cm(2), respectively. The motility of TCs under study was evaluated by quantitative analysis of the microscopy pictures captured. FINDINGS: The results showed that in the absence of flow, TCs were highly dynamic with constant non-directional positional shifts, but with no net cell migration. Exposure of the cells to shear stresses of 7.5, 15, 30dyn/cm(2) within 24h significantly increased the level of this activity and led to net cell migration in the direction of flow. INTERPRETATION: The results from the in vitro study demonstrated that shear stress regulated trophoblast motility, but did not induce the migration of TCs in the direction against flow stream like in the situation in vivo. Therefore the present study suggests that in vivo TC migration is most likely regulated not only by mechanical stimuli but by biochemical stimuli as well.
机译:背景:在胎盘发育过程中,滋养层细胞(TCs)的迁移最有可能受到血流的影响。这项研究旨在检查流动引起的剪切应力对人类TC迁移的影响。方法:使用流室技术,将稳定的流切应力施加于在玻片上培养长达24小时的早期妊娠人类TC。在这项研究中施加的剪切应力水平分别为0、7.5、15和30dyn / cm(2)。通过对捕获的显微镜图像进行定量分析,评估了所研究的TC的运动能力。结果:结果表明,在没有流动的情况下,TCs是高度动态的,具有恒定的非方向性位置偏移,但是没有净细胞迁移。在24小时内将细胞暴露于7.5、15、30dyn / cm(2)的剪切应力下会显着增加该活性的水平,并导致细胞在流动方向上迁移。解释:体外研究的结果表明,剪切应力调节了滋养层的运动性,但没有像体内情况那样诱导TCs向着逆流方向迁移。因此,本研究表明,体内TC的迁移很可能不仅受到机械刺激的调节,还受到生化刺激的调节。

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