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Motion of cells sedimenting on a solid surface in a laminar shear flow.

机译:在层流剪切流中沉淀在固体表面上的细胞的运动。

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摘要

Cell adhesion often occurs under dynamic conditions, as in flowing blood. A quantitative understanding of this process requires accurate knowledge of the topographical relationships between the cell membrane and potentially adhesive surfaces. This report describes an experimental study made on both the translational and rotational velocities of leukocytes sedimenting of a flat surface under laminar shear flow. The main conclusions are as follows: (a) Cells move close to the wall with constant velocity for several tens of seconds. (b) The numerical values of translational and rotational velocities are inconsistent with Goldman's model of a neutrally buoyant sphere in a laminar shear flow, unless a drag force corresponding to contact friction between cells and the chamber floor is added. The phenomenological friction coefficient was 7.4 millinewton.s/m. (c) Using a modified Goldman's theory, the width of the gap separating cells (6 microns radius) from the chamber floor was estimated at 1.4 micron. (d) It is shown that a high value of the cell-to-substrate gap may be accounted for by the presence of cell surface protrusions of a few micrometer length, in accordance with electron microscope observations performed on the same cell population. (e) In association with previously reported data (Tissot, O., C. Foa, C. Capo, H. Brailly, M. Delaage, and P. Bongrand. 1991. Biocolloids and Biosurfaces. In press), these results are consistent with the possibility that cell-substrate attachment be initiated by the formation of a single molecular bond, which might be considered as the rate limiting step.
机译:细胞粘附通常在动态条件下发生,例如在流动的血液中。对这一过程的定量理解需要准确了解细胞膜与潜在粘附表面之间的拓扑关系。该报告描述了在层流剪切流作用下,平坦表面上白细胞沉降的平移和旋转速度的实验研究。主要结论如下:(a)细胞以恒定的速度靠近壁移动数十秒钟。 (b)平移和旋转速度的数值与层流剪切流中的中性浮力球的高盛模型不一致,除非增加了对应于单元和腔室底板之间接触摩擦的阻力。现象摩擦系数为7.4毫瓦·秒/米。 (c)使用修正的高盛理论,将小室与腔室底部分隔的间隙(半径为6微米)的宽度估计为1.4微米。 (d)根据对同一细胞群进行的电子显微镜观察,显示出高的细胞-底物间隙值可以归因于存在几微米长的细胞表面突起。 (e)与先前报告的数据(Tissot,O.,C。Foa,C。Capo,H。Brailly,M。Delaage和P. Bongrand。1991. Biocolloids and Biosurfaces。付印中)相关,这些结果是一致的可能通过形成单个分子键来引发细胞-基质附着,这可能被视为限速步骤。

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