Ley K, Lundgren E, Berger E, Arfors K E
Pharmacia Experimental Medicine, La Jolla, CA 92037.
Blood. 1989 Apr;73(5):1324-30.
Adhesion of polymorphonuclear granulocytes (PMNs) in microvessels occurs in the presence of shear forces exerted by the blood flow. To model this in vitro, phorbol myristate acetate (PMA)-activated PMN were exposed to shear stress on cultured human umbilical vein endothelial cells (HUVECs) and on plastic dishes coated with bovine serum albumin (BSA). PMN adhesion to HUVECs averaged 36% of the total PMNs added and was reduced to 21% by shear stress of approximately 1.5 dynes.cm-2. On BSA, adhesion was reduced from 59% to 35%. Dextran sulfate (molecular weight 500,000) inhibited PMN adhesion in a dose-dependent manner when shear stress was applied. At a concentration of 1 mg.ml-1, inhibition was 72% on HUVECs and 76% on BSA. Half-maximal inhibition was reached at approximately 1 microgram.mL-1 dextran sulfate, corresponding to 2 nmol/L. Without shear stress, dextran sulfate had no effect on HUVECs and only a moderate effect on BSA. The murine monoclonal antibody (MoAb) 60.3, recognizing an epitope on the leukocyte adhesion glycoprotein CD18, inhibited PMN adhesion equally well with and without shear. A low dose of MoAb 60.3 enhanced the effect of dextran sulfate without shear stress. Flow cytometry (FACS) did not show inhibition of MoAb 60.3 binding to PMNs by dextran sulfate. These results indicate that a dextran sulfate-inhibitable adhesion process is important for PMN adhesion in the presence of shear stress.
在血流产生的剪切力作用下,多形核粒细胞(PMN)会黏附于微血管。为在体外模拟这一过程,将佛波酯肉豆蔻酸乙酸酯(PMA)激活的PMN暴露于培养的人脐静脉内皮细胞(HUVEC)以及包被有牛血清白蛋白(BSA)的塑料培养皿上的剪切应力中。PMN对HUVEC的黏附平均占所添加PMN总数的36%,在约1.5达因·厘米⁻²的剪切应力作用下,该黏附率降至21%。在BSA上,黏附率从59%降至35%。当施加剪切应力时,硫酸葡聚糖(分子量500,000)以剂量依赖方式抑制PMN黏附。在浓度为1毫克·毫升⁻¹时,对HUVEC的抑制率为72%,对BSA的抑制率为76%。在约1微克·毫升⁻¹硫酸葡聚糖(相当于2纳摩尔/升)时达到半数最大抑制。无剪切应力时,硫酸葡聚糖对HUVEC无影响,对BSA仅有中等程度影响。识别白细胞黏附糖蛋白CD18上一个表位的鼠单克隆抗体(MoAb)60.3,在有或无剪切应力情况下对PMN黏附的抑制效果相同。低剂量的MoAb 60.3在无剪切应力时增强了硫酸葡聚糖的作用。流式细胞术(FACS)未显示硫酸葡聚糖抑制MoAb 60.3与PMN的结合。这些结果表明,在存在剪切应力的情况下,硫酸葡聚糖可抑制的黏附过程对PMN黏附很重要。