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首页> 外文期刊>American Journal of Physiology >Fluidization, resolidification, and reorientation of the endothelial cell in response to slow tidal stretches
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Fluidization, resolidification, and reorientation of the endothelial cell in response to slow tidal stretches

机译:响应缓慢的潮气拉伸,内皮细胞流化,重新凝固和重新定向

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Mechanical stretch plays an important role in regulating shape and orientation of the vascular endothelial cell. This morphological response to stretch is basic to angiogenesis, neovascularization, and vascular homeostasis, but mechanism remains unclear. To elucidate mechanisms, we used cell mapping rheometry to measure traction forces in primary human umbilical vein endothelial cells subjected to periodic uniaxial stretches. Onset of periodic stretch of 10% strain amplitude caused a fluidization response typified by attenuation of traction forces almost to zero. As periodic stretch continued, the prompt fiuidization response was followed by a slow resolidification response typified by recovery of the traction forces, but now aligned along the axis perpendicular to the imposed stretch. Reorientation of the cell body lagged reorientation of the traction forces, however. Together, these observations demonstrate that cellular reorientation in response to periodic stretch is preceded by traction attenuation by means of cytoskeletal fluidization and subsequent traction recovery transverse to the stretch direction by means of cytoskeletal resolidification.
机译:机械拉伸在调节血管内皮细胞的形状和方向中起重要作用。这种对伸展的形态反应是血管生成,新血管形成和血管动态平衡的基础,但机制尚不清楚。为了阐明机理,我们使用细胞作图流变仪来测量在经受周期性单轴拉伸的人脐静脉内皮细胞中的牵引力。 10%应变幅度的周期性拉伸的开始导致流态化响应,其表现为牵引力几乎降至零。随着周期性拉伸的继续,迅速的流体化响应之后是缓慢的再固化响应,其表现为牵引力的恢复,但现在沿垂直于所施加拉伸的轴对齐。然而,细胞体的重新定向滞后于牵引力的重新定向。总之,这些观察结果表明,响应于周期性拉伸的细胞重新定向之前,借助于细胞骨架流化作用的牵引力减弱,以及随后借助于细胞骨架的再凝固而横向于拉伸方向的牵引力恢复。

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