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The shear threshold effect for particle adhesion to bioreactive surfaces: influence of receptor and ligand site density

机译:颗粒粘附到生物反应性表面的剪切阈值效应:受体和配体位点密度的影响

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Selectins are cell adhesion molecules that mediate capture and rolling adhesion of white blood cells to vascular walls, an essential component of the inflammatory response. Adhesion through L-selectin requires a hydrodynamic shear stress above a threshold level, a phenomenon known as the shear threshold effect. We have reported that the shear threshold effect can he re-created in cell-free systems, in which microspheres coated with the carbohydrate ligand sialyl Lewis x (sLe/sup x/) are perfused over L-selectin-coated surfaces. This paper extends the use of the cell-free system to determine the concurrent influence of receptor and ligand site density on the shear threshold effect. We find that the shear threshold effect diminishes with increasing levels of either L-selectin or sLe/sup x/. At reduced site densities of either L-selectin or sLe/sup x/, the shear threshold effect is present, with maximal rolling observed at a shear stress of 1.2 dynes/cm/sup 2/. At higher site densities of L-selectin and sLe/sup x/, the shear threshold effect disappears. These results suggest that the shear threshold relies on the formation of low numbers of receptor-ligand bonds.
机译:选择素是细胞粘附分子,其介导白细胞与血管壁的捕获和滚动粘附,这是炎症反应的重要组成部分。通过L-选择蛋白的粘附需要高于阈值水平的流体动力剪切应力,这种现象称为剪切阈值效应。我们已经报道了在没有细胞的系统中可以重新创建剪切阈值效应,在该系统中,涂有糖配体唾液酸路易斯(sLe / sup x /)的微球在L-选择素包被的表面上被灌注。本文扩展了无细胞系统的使用,以确定受体和配体位点密度对剪切阈值效应的同时影响。我们发现,剪切阈值效应随着L-选择素或sLe / sup x /的水平增加而减小。在L-选择蛋白或sLe / sup x /的降低的位点密度下,存在剪切阈值效应,并且在1.2达因/厘米/ sup 2 /的剪切应力下观察到最大滚动。在L-选择蛋白和sLe / sup x /的较高位点密度下,剪切阈值效应消失。这些结果表明剪切阈值取决于少量受体-配体键的形成。

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