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离心过程中剪切力诱导中性粒细胞表面L-选择素形成帽状结构。

Shear-induced capping of L-selectin on the neutrophil surface during centrifugation.

作者信息

Lee Dooyoung, King Michael R

机构信息

Department of Chemical Engineering, University of Rochester, Rochester, NY 14627, USA.

出版信息

J Immunol Methods. 2007 Dec 1;328(1-2):97-105. doi: 10.1016/j.jim.2007.08.011. Epub 2007 Sep 12.

Abstract

L-selectin on leukocytes is critical in leukocyte tethering and adhesion to inflamed endothelium and lymphocyte homing to lymphoid organs. The spatial distribution of L-selectin on leukocytes controls cellular adhesive function in hydrodynamic shear. How L-selectin changes its position on the cell membrane remains an open question, but a possible candidate is shear stress encountered on the cell surface. Here we demonstrate shear-induced L-selectin polarization on the membrane during the process of centrifugation of resting neutrophils via immunofluorescent microscopy. It was found that randomly distributed L-selectin on neutrophils moves to a polar cap at one end of the cell after centrifugation (300 x g for 2 min) without inflammatory stimuli. This L-selectin redistribution under shear was predicted by Monte Carlo simulations that show how convection dominates over diffusion, leading to L-selectin cap formation during centrifugation at 280 x g or during leukocyte adhesion to the endothelial wall at 1 dyn/cm(2). Those results point to a role for shear stress in the modulation of L-selectin distribution, and suggest a possible alternate mechanism and reinterpretation of previous in vitro studies of L-selectin mediated adhesion of neutrophils isolated via centrifugation.

摘要

白细胞上的L-选择素对于白细胞与炎症内皮的栓系和黏附以及淋巴细胞归巢至淋巴器官至关重要。L-选择素在白细胞上的空间分布控制着流体动力剪切力作用下的细胞黏附功能。L-选择素如何在细胞膜上改变其位置仍是一个悬而未决的问题,但一个可能的因素是细胞表面所遇到的剪切应力。在此,我们通过免疫荧光显微镜证实了在静息中性粒细胞离心过程中剪切力诱导的L-选择素在膜上的极化。研究发现,在无炎症刺激的情况下,离心(300×g,2分钟)后,中性粒细胞上随机分布的L-选择素会移动至细胞一端的极帽处。蒙特卡洛模拟预测了这种剪切力作用下的L-选择素重新分布,该模拟显示了对流如何在扩散中占主导地位,从而导致在280×g离心过程中或白细胞以1达因/平方厘米黏附于内皮壁时形成L-选择素帽。这些结果表明剪切应力在调节L-选择素分布中发挥作用,并提示了一种可能的替代机制,以及对先前通过离心分离的中性粒细胞进行的L-选择素介导黏附的体外研究的重新解释。

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