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脂多糖诱导的白细胞与内皮细胞相互作用:微血管内CD14与Toll样受体4的作用

Lipopolysaccharide-induced leukocyte-endothelial cell interactions: a role for CD14 versus toll-like receptor 4 within microvessels.

作者信息

Andonegui Graciela, Goyert Sanna M, Kubes Paul

机构信息

Department of Physiology and Biophysics, Faculty of Medicine, University of Calgary, Canada.

出版信息

J Immunol. 2002 Aug 15;169(4):2111-9. doi: 10.4049/jimmunol.169.4.2111.

Abstract

The objective of this study was to systematically assess leukocyte-endothelial cell interactions in vivo in response to LPS in CD14-deficient (CD14(-/-)) and Toll-like receptor 4-deficient (TLR4(d); C3H/HeJ) mice. Local injection of LPS (0.05 micro g/kg) into muscle at a concentration that did not cause systemic effects produced a significant reduction in the speed with which leukocytes roll and a substantial increase in leukocyte adhesion and emigration 4 h postinjection. There was no response to LPS in the muscle microvasculature of CD14(-/-) mice or TLR4(d) animals. Systemic LPS induced leukopenia and significant sequestration of neutrophils in lungs in wild-type mice but not in CD14(-/-) or TLR4(d) mice. P-selectin expression was examined in numerous mouse organs using a dual radiolabeling mAb technique. The results revealed a 20- to 50-fold increase in P-selectin expression in response to LPS in all wild-type tissues examined but no response in any TLR4(d) tissues. Surprisingly, there was consistently a partial, significant increase in P-selectin expression in numerous microvasculatures including skin and pancreas, but no increase in P-selectin was detected in lung, muscle, and other organs in CD14(-/-) mice in response to LPS. Next, the skin and muscle microcirculation were visualized using intravital microscopy after systemic LPS treatment, and the results confirmed a CD14-independent mechanism of leukocyte sequestration in skin but not muscle. In summary, our results suggest that the LPS-induced leukocyte sequestration to some tissues is entirely dependent on both CD14 and TLR4 but there are CD14-independent, TLR4-dependent endothelial cell responses in some microvascular beds.

摘要

本研究的目的是系统评估CD14缺陷(CD14(-/-))和Toll样受体4缺陷(TLR4(d);C3H/HeJ)小鼠体内白细胞与内皮细胞在脂多糖(LPS)刺激下的相互作用。以不会产生全身效应的浓度将LPS(0.05μg/kg)局部注射到肌肉中,在注射后4小时,白细胞滚动速度显著降低,白细胞黏附和移出显著增加。CD14(-/-)小鼠或TLR4(d)动物的肌肉微血管对LPS无反应。全身性LPS诱导野生型小鼠白细胞减少和肺中中性粒细胞显著滞留,但CD14(-/-)或TLR4(d)小鼠无此现象。使用双放射性标记单克隆抗体技术检测了多种小鼠器官中的P-选择素表达。结果显示,在所有检测的野生型组织中,LPS刺激后P-选择素表达增加了20至50倍,但任何TLR4(d)组织均无反应。令人惊讶的是,在包括皮肤和胰腺在内的许多微血管中,P-选择素表达始终有部分显著增加,但在CD14(-/-)小鼠的肺、肌肉和其他器官中,LPS刺激后未检测到P-选择素增加。接下来,在全身性LPS处理后,使用活体显微镜观察皮肤和肌肉微循环,结果证实皮肤中白细胞滞留存在不依赖CD14的机制,但肌肉中不存在。总之,我们的结果表明,LPS诱导的白细胞在某些组织中的滞留完全依赖于CD14和TLR4,但在一些微血管床中存在不依赖CD14、依赖TLR4的内皮细胞反应。

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