Petri Björn, Phillipson Mia, Kubes Paul
Immunology Research Group, Department of Physiology and Biophysics, University of Calgary, Calgary, AB, Canada.
J Immunol. 2008 May 15;180(10):6439-46. doi: 10.4049/jimmunol.180.10.6439.
The mechanisms of leukocyte recruitment have been studied extensively in vitro and have shed light on the basic molecular structure-function relationship of adhesion and signaling molecules involved in this essential immune response. This review will summarize how these in vitro observations extend to leukocyte behavior in inflamed blood vessels in the microcirculation. We highlight physiological results that might not have been predicted from in vitro systems. Special attention is placed on the physiology of rolling, adhesion, and intralumenal crawling in blood vessels. The importance of the glycocalyx, secondary tethers, shear, and the microenvironment are discussed. Docking structures forming rings of adhesion molecules together with a novel endothelial dome-like structure in vivo during transmigration are highlighted. Transcellular and paracellular emigration out of inflamed blood vessels is also discussed. The last section highlights leukocyte recruitment in some organs that do not always follow the accepted paradigm of leukocyte recruitment.
白细胞募集机制已在体外进行了广泛研究,并揭示了参与这一重要免疫反应的黏附分子和信号分子的基本分子结构与功能关系。本综述将总结这些体外观察结果如何扩展到微循环中炎症血管内的白细胞行为。我们强调了那些可能无法从体外系统预测到的生理学结果。特别关注血管中滚动、黏附及管腔内爬行的生理学过程。讨论了糖萼、二级栓系、剪切力和微环境的重要性。突出了在体内迁移过程中形成黏附分子环的对接结构以及一种新型内皮穹顶样结构。还讨论了从炎症血管中跨细胞和旁细胞迁出的情况。最后一部分强调了一些器官中的白细胞募集,这些器官并不总是遵循公认的白细胞募集模式。