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ICAM-1 expression and cytoskeleton organization in endothelial cells. influence of laminar shear stress

机译:内皮细胞中的ICAM-1表达和细胞骨架组织。层压剪切应力的影响

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Mechanical forces regulate the morphology and the metabolism of endothelial cells through mechano-sensitive structures existed on cell surface. In this work, the influence of a steady laminar or disturbed flow on cell cytoskeleton and itsconnection with differential adhesion molecules expression at the apical side of the endothelial cell were studied in vitro. A 3D cell scanner coupled with a fluorescence microscope allowed us to visualize the spatial organization or distribution ofcytoskeleton and adhesion molecules marked by specific fluorescent probes. In static conditions, the actin fibers presented a random structure, but after exposure to shear stresses, it was observed a reorganization of these fibers. The distribution ofadhesion molecules at the cell surface seems to be linked to these structural modifications. These study would help us to better understand the response of endothelium to complex flows near vascular singularities.
机译:机械力通过在细胞表面上存在的机械敏感结构调节内皮细胞的形态和代谢。在这项工作中,在体外研究了稳定层间或干扰流动对细胞细胞骨骼细胞骨骼和差异粘附分子表达的差异粘附分子表达的影响。与荧光显微镜耦合的3D电池扫描仪使我们可视化由特定荧光探针标记的单骨骼和粘附分子的空间组织或分布。在静态条件下,肌动蛋白纤维呈现随机结构,但在暴露于剪切应力之后,观察到这些纤维的重组。细胞表面上的分子分子的分布似乎与这些结构修饰相关联。这些研究将有助于我们更好地了解内皮对血管奇异性附近复杂流的反应。

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