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Regulation of CD18 expression on neutrophils in response to fluid shear stress

机译:流体剪切应力对中性粒细胞CD18表达的调节

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When leukocytes adhere to endothelial cells and are exposed to fluid shear stresses, they often retract pseudopods and reduce their attachment. Leukocytes use CD18 for membrane adhesion, but the kinetics of such integrin adhesion molecules under fluid shear is unknown. We examine on neutrophils with confocal microscopy of single adherent cells and flow cytometry of cell suspensions the CD18 expression under fluid shear after labeling with fluorescent antibodies. Fluid shear causes reduction of CD18-associated immunofluorescence of extracellular epitopes, especially in areas of the membrane exposed to elevated levels of shear (1.5 dyne/cm~2 maximum shear stress; 1 dyne = 10 mN). CD18 was also translocated over the leukocyte surface from regions of higher shear to lower shear and into the membrane contact areas with the substrate. We obtained no evidence for cytoplasmic internalization of CD18. Fluid shear (5 dyne/cm~2) in a suspension of human leukocytes resulted in cleavage of the extracellular domain but not against a cytoplasmic domain of CD18. Chelation of extracellular Ca~(2+) abolished the down-regulation of CD18. Cysteine protease inhibitors and a selective inhibitor for cathepsin B, but no blockade of other cysteine proteases such as cathepsin L and calpain, aminopeptidases, elastase, or metalloproteinases, suppressed shear-induced CD18 down-regulation. The evidence suggests that physiological levels of fluid shear cause release of cysteine protease(s) including cathepsin B, leading to cleavage of the extracellular domain of CD18 molecules and possible membrane detachment.
机译:当白细胞粘附于内皮细胞并暴露于流体剪切应力时,它们通常会收回假足并减少其附着。白细胞使用CD18进行膜粘附,但是这种整联蛋白粘附分子在流体剪切作用下的动力学是未知的。我们用共聚焦显微镜检查单个粘附细胞并在细胞悬浮液的流式细胞仪上检测嗜中性粒细胞,并用荧光抗体标记后在流体剪切作用下CD18表达。流体剪切导致细胞外表位的CD18相关免疫荧光的降低,尤其是在暴露于较高剪切水平(1.5达因/ cm〜2最大剪切应力; 1达因= 10 mN)的膜区域。 CD18也从高剪切区域到低剪切区域在白细胞表面上移位,并进入与底物的膜接触区域。我们没有获得CD18细胞质内在化的证据。人白细胞悬液中的流体剪切(5达因/ cm〜2)导致细胞外结构域的切割,而不是针对CD18的细胞质结构域的切割。细胞外Ca〜(2+)的螯合消除了CD18的下调。半胱氨酸蛋白酶抑制剂和组织蛋白酶B的选择性抑制剂,但不阻止其他半胱氨酸蛋白酶(例如组织蛋白酶L和钙蛋白酶,氨基肽酶,弹性蛋白酶或金属蛋白酶)抑制剪切诱导的CD18下调。有证据表明,生理水平的液体剪切作用会导致半胱氨酸蛋白酶(包括组织蛋白酶B)的释放,导致CD18分子胞外结构域的裂解和可能的膜分离。

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