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双向振荡剪应力对内皮细胞增殖和形态的影响。

Effects of biaxial oscillatory shear stress on endothelial cell proliferation and morphology.

机构信息

Department of Chemical Engineering, Earnst Hall 106, University of Louisville, Louisville, Kentucky 40292, USA.

出版信息

Biotechnol Bioeng. 2012 Mar;109(3):695-707. doi: 10.1002/bit.24352. Epub 2011 Nov 10.

DOI:10.1002/bit.24352
PMID:22012789
Abstract

Wall shear stress (WSS) on anchored cells affects their responses, including cell proliferation and morphology. In this study, the effects of the directionality of pulsatile WSS on endothelial cell proliferation and morphology were investigated for cells grown in a Petri dish orbiting on a shaker platform. Time and location dependent WSS was determined by computational fluid dynamics (CFD). At low orbital speed (50 rpm), WSS was shown to be uniform (0-1 dyne/cm(2)) across the bottom of the dish, while at higher orbital speed (100 and 150 rpm), WSS remained fairly uniform near the center and fluctuated significantly (0-9 dyne/cm(2)) near the side walls of the dish. Since WSS on the bottom of the dish is two-dimensional, a new directional oscillatory shear index (DOSI) was developed to quantify the directionality of oscillating shear. DOSI approached zero for biaxial oscillatory shear of equal magnitudes near the center and approached one for uniaxial pulsatile shear near the wall, where large tangential WSS dominated a much smaller radial component. Near the center (low DOSI), more, smaller and less elongated cells grew, whereas larger cells with greater elongation were observed in the more uniaxial oscillatory shear (high DOSI) near the periphery of the dish. Further, cells aligned with the direction of the largest component of shear but were randomly oriented in low magnitude biaxial shear. Statistical analyses of the individual and interacting effects of multiple factors (DOSI, shear magnitudes and orbital speeds) showed that DOSI significantly affected all the responses, indicating that directionality is an important determinant of cellular responses.

摘要

壁面切应力(WSS)对锚定细胞的反应有影响,包括细胞增殖和形态。本研究利用旋转摇床平台上培养的细胞,考察了脉动 WSS 方向对内皮细胞增殖和形态的影响。通过计算流体动力学(CFD)确定了时间和位置相关的 WSS。在较低的轨道速度(50rpm)下,WSS 在培养皿底部是均匀的(0-1dyne/cm^2),而在较高的轨道速度(100 和 150rpm)下,WSS 在培养皿中心附近仍然相当均匀,而在侧壁附近波动较大(0-9dyne/cm^2)。由于培养皿底部的 WSS 是二维的,因此开发了一种新的定向振荡剪切指数(DOSI)来量化振荡剪切的方向性。DOSI 在中心附近接近零,对于等幅度的双轴振荡剪切,DOSI 接近 1,对于壁附近的单轴脉动剪切,大切向 WSS 主导一个小得多的径向分量。在中心附近(低 DOSI),细胞生长得更多、更小且更不易拉长,而在培养皿边缘处具有更大的单轴振荡剪切(高 DOSI)的情况下,观察到更大的细胞具有更大的伸长。此外,细胞沿剪切的最大分量的方向排列,但在低幅度的双轴剪切中随机定向。对多个因素(DOSI、剪切幅度和轨道速度)的个体和相互作用效应的统计分析表明,DOSI 显著影响所有的反应,表明方向性是细胞反应的一个重要决定因素。

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