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首页> 外文期刊>Journal of biomechanical engineering. >Comparison of the effects of cyclic stretching and compression on endothelial cell morphological responses
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Comparison of the effects of cyclic stretching and compression on endothelial cell morphological responses

机译:循环拉伸和压缩对内皮细胞形态反应影响的比较

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Recent results demonstrate, the exquisite sensitivity of cell orientation responses to the pattern of imposed deformation. Cells undergoing pure in-plane uniaxial stretching orient differently than cells that are simply elongated-likely because the latter stimulus produces simultaneous compression in the unstretched direction. It is not known, however, if cells respond differently to pure stretching than to pure compression. This study was performed to address this issue. Human aortic endothelial cells were seeded on deformable silicone membranes and subjected to various magnitudes and rates to pure stretching or compression. The cell orientation and cytoskeletal stress fiber organization responses were examined. Both stretching and compression resulted in magnitude-dependent but not rate-dependent orientation responses away from the deforming direction. Compression produced a slower temporal response than stretching. However stress fiber reorganization responses-early disruption followed by reassembly into parallel arrays along the cells' long axes were similar between the two stimuli. Moreover, the cell orientation and stress fiber responses appeared to be uncoupled since disruption of stress fibers was not required for the cell orientation. Moreover parallel actin stress fibers were observed at oblique angles to the deforming direction indicating that stress fibers call reassemble when undergoing deformation.
机译:最近的结果表明,细胞定向响应对施加的变形模式的灵敏性。进行纯面内单轴拉伸的细胞的方向与简单拉伸的细胞不同,因为后者的刺激会在未拉伸方向上同时产生压缩。但是,尚不清楚细胞对纯拉伸的反应与对纯压缩的反应是否不同。进行这项研究是为了解决这个问题。将人的主动脉内皮细胞接种在可变形的硅树脂膜上,并进行各种幅度和速率的纯拉伸或压缩。检查了细胞取向和细胞骨架应激纤维的组织反应。拉伸和压缩都导致远离变形方向的大小相关但不是速率相关的定向响应。压缩产生的时间反应比拉伸慢。然而,两种刺激之间的应力纤维重组反应-早期破坏,然后沿细胞长轴重新组装成平行阵列是相似的。而且,细胞取向和应力纤维响应似乎是不耦合的,因为细胞取向不需要破坏应力纤维。此外,在与变形方向倾斜的角度观察到平行的肌动蛋白应力纤维,这表明应力纤维在变形时需要重新组装。

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