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CD11/CD18在猫肠系膜小静脉中剪切速率依赖性白细胞-内皮细胞相互作用中的作用

Role of CD11/CD18 in shear rate-dependent leukocyte-endothelial cell interactions in cat mesenteric venules.

作者信息

Perry M A, Granger D N

机构信息

School of Physiology & Pharmacology, University of New South Wales, Kensington, Australia.

出版信息

J Clin Invest. 1991 May;87(5):1798-804. doi: 10.1172/JCI115200.

Abstract

In vivo microscopy was used to assess the relationships among shear rate (and shear stress), leukocyte rolling velocity, and leukocyte adherence in a cat mesentery preparation. Shear rate in individual venules and arterioles of 25-35 microns diameter were varied over a wide range by graded occlusion of an arterial loop. There was a linear decline in leukocyte rolling velocity (Vwbc) as red cell velocity (Vrbc) was reduced. The ratio Vwbc/Vrbc remained constant despite variations in shear stress from 5-25 dyn/cm2. A reduction in shear stress was associated with an increased leukocyte adherence, particularly when Vwbc was reduced below 50 microns/s. Reduction in wall shear rate below 500 s-1 in arterioles allowed 1-3 leukocytes to adhere per 100 microns length of vessel, while venules exposed to the same shear rates had 5-16 adherent leukocytes. In arterioles, leukocyte rolling was only observed at low shear rates. At shear rates less than 250 s-1 leukocyte rolling velocity was faster in arterioles than venules, and the ratio Vwbc/Vrbc for arterioles was 0.08 +/- 0.02, which was fourfold higher than the ratio obtained in venules at similar shear rates. Pretreatment with the CD18-specific antibody (mAb) IB4 increased leukocyte rolling velocity in venules by approximately 20 microns/s at red cell velocities below 2,000 microns/s. mAb IB4 largely prevented the leukocyte adherence to arterioles and venules, and increased the ratio Vwbc/Vrbc observed in venules at low shear elicit a CD18-dependent adhesive interaction between leukocytes and microvascular endothelium, and that differences in shear rates cannot explain the greater propensity for leukocyte rolling and adhesion in venules than arterioles.

摘要

采用体内显微镜技术评估猫肠系膜标本中剪切速率(及剪切应力)、白细胞滚动速度和白细胞黏附之间的关系。通过对动脉环进行分级闭塞,使直径为25 - 35微米的单个小静脉和小动脉中的剪切速率在很宽的范围内变化。随着红细胞速度(Vrbc)降低,白细胞滚动速度(Vwbc)呈线性下降。尽管剪切应力在5 - 25达因/平方厘米之间变化,但Vwbc/Vrbc比值保持恒定。剪切应力降低与白细胞黏附增加有关,尤其是当Vwbc降低到50微米/秒以下时。小动脉壁剪切速率降低到500秒-1以下时,每100微米血管长度有1 - 3个白细胞黏附;而暴露于相同剪切速率的小静脉有5 - 16个黏附的白细胞。在小动脉中,仅在低剪切速率下观察到白细胞滚动。在剪切速率小于250秒-1时,小动脉中白细胞滚动速度比小静脉快,小动脉的Vwbc/Vrbc比值为0.08±0.02,比在相似剪切速率下小静脉获得的比值高四倍。用CD18特异性抗体(单克隆抗体)IB4预处理,在红细胞速度低于2000微米/秒时,可使小静脉中白细胞滚动速度增加约20微米/秒。单克隆抗体IB4在很大程度上可防止白细胞黏附于小动脉和小静脉,并增加低剪切速率下小静脉中观察到的Vwbc/Vrbc比值,提示白细胞与微血管内皮之间存在CD18依赖性黏附相互作用,且剪切速率差异不能解释小静脉中白细胞滚动和黏附比小动脉更明显的倾向。

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