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选择素如何介导白细胞在小静脉中的滚动?

How do selectins mediate leukocyte rolling in venules?

作者信息

Tözeren A, Ley K

机构信息

Department of Mechanical Engineering, Catholic University of America, Washington, D.C. 20064.

出版信息

Biophys J. 1992 Sep;63(3):700-9. doi: 10.1016/S0006-3495(92)81660-0.

Abstract

At the onset of inflammation, 20-80% of all leukocytes passing postcapillary venules roll along the endothelium. Recent blocking experiments with antibodies and soluble adhesion receptor molecules, as well as in vitro reconstitution experiments, suggest that leukocyte rolling is mediated by adhesion molecules that belong to the selectin family. What differentiates a selectin-counterreceptor interaction that leads to leukocyte rolling from others that mediate firm adhesion after static incubation but no adhesion when incubated under flow conditions? Here, we explore this question by introducing a quantitative biophysical model that is compatible with the laws of mechanics as applied to rolling leukocytes and the present biochemical and biophysical data on selectin mediated interactions. Our computational experiments point to an adhesion mechanism in which the rate of bond formation is high and the detachment rate low, except at the rear of the contact area where the stretched bonds detach at a high uniform rate. The bond length and bond flexibility play a critical role in enhancing leukocyte rolling at a wide range of fluid shear rates.

摘要

在炎症发生时,所有通过毛细血管后微静脉的白细胞中有20% - 80%会沿着内皮细胞滚动。近期利用抗体和可溶性黏附受体分子进行的阻断实验以及体外重组实验表明,白细胞滚动是由属于选择素家族的黏附分子介导的。在静态孵育后能介导牢固黏附,但在流动条件下孵育时却不发生黏附的其他相互作用中,导致白细胞滚动的选择素 - 反受体相互作用有何不同呢?在此,我们通过引入一个定量生物物理模型来探讨这个问题,该模型符合应用于滚动白细胞的力学定律以及目前关于选择素介导相互作用的生化和生物物理数据。我们的计算实验指出了一种黏附机制,即除了在接触区域后部拉伸的键以高均匀速率脱离外,键形成速率高而脱离速率低。键长和键柔性在广泛的流体剪切速率范围内增强白细胞滚动方面起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c92/1262203/82765ae54bc5/biophysj00097-0097-a.jpg

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