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Effects of recirculating flow on U-937 cell adhesion to human umbilical vein endothelial cells.

机译:回流对U-937细胞与人脐静脉内皮细胞粘附的影响。

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摘要

We used a sudden-expansion flow chamber to examine U-937 cell adhesion to unactivated and tumor necrosis factor (TNF)-alpha-activated human umbilical vein endothelial cells (HUVEC) in recirculating flow. For both unactivated and TNF-alpha-activated HUVEC, U-937 cells exhibited transient arrests within approximately 150 &mgr;m of flow reattachment. Few arrests occurred directly at the reattachment site. U-937 cell rolling was not observed. At all other locations within the recirculation zone, U-937 cells did not exhibit transient arrests or rolling. TNF-alpha activation increased the frequency of U-937 cell arrests near reattachment but did not change the median arrest duration. Numerically simulated cell trajectories failed to predict attachment near the reattachment point. Deviations between experiment and theory may result from the nonspherical shape and deformability of U-937 cells. These results demonstrate that U-937 cell transient arrests occur preferentially in the vicinity of the reattachment point in recirculating flow. Possible mechanisms for adhesion include low shear stress, curved streamlines, fluid velocity components normal to the endothelium, and formation of larger contact areas.
机译:我们使用一个突然膨胀的流动室来检查U-937细胞在循环流中对未激活的和肿瘤坏死因子(TNF)-α激活的人脐静脉内皮细胞(HUVEC)的粘附。对于未激活的和TNF-α激活的HUVEC,U-937细胞在流量重新附着的大约150μm内表现出短暂的停滞。很少有逮捕直接发生在重新安置地点。没有观察到U-937细胞滚动。在再循环区内的所有其他位置,U-937细胞均未表现出短暂的停滞或滚动。 TNF-α激活增加了重新附着附近U-937细胞的频率,但没有改变中位放电持续时间。数值模拟的细胞轨迹无法预测重新附着点附近的附着。 U-937细胞的非球形形状和可变形性可能导致实验与理论之间的偏差。这些结果表明,U-937细胞瞬时停滞优先发生在循环流中的重新附着点附近。粘附的可能机制包括低剪切应力,弯曲的流线,垂直于内皮的流体速度分量以及形成较大的接触面积。

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