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剪切流中白细胞变形及与内皮细胞黏附的力学机制

Mechanics of leukocyte deformation and adhesion to endothelium in shear flow.

作者信息

Dong C, Cao J, Struble E J, Lipowsky H H

机构信息

Bioengineering Program, The Pennsylvania State University, University Park 16802, USA.

出版信息

Ann Biomed Eng. 1999 May-Jun;27(3):298-312. doi: 10.1114/1.143.

Abstract

The mechanics of leukocyte [white blood cell (WBC)] deformation and adhesion to endothelial cells (EC) in shear flow has been investigated. Experimental data on transient WBC-EC adhesion were obtained from in vivo measurements. Microscopic images of WBC-EC contact during incipient WBC rolling revealed that for a given wall shear stress, the contact area increases with time as new bonds are formed at the leading edge, and then decreases with time as the trailing edge of the WBC membrane peels away from the EC. A two-dimensional model (2D) was developed consisting of an elastic ring adhered to a surface under fluid stresses. This ring represents an actin-rich WBC cortical layer and contains an incompressible fluid as the cell interior. All molecular bonds are modeled as elastic springs distributed in the WBC-EC contact region. Variations of the proportionality between wall shear stress (tau(w)) in the vicinity of the WBC and the resulting drag force (F(s)), i.e., F(s)/tau(w), reveal its decrease with WBC deformation and increasing vessel channel height (2D). The computations also find that the peeling zone between adherent WBC and EC may account for less than 5% of the total contact interface. Computational studies describe the WBC-EC adhesion and the extent of WBC deformation during the adhesive process.

摘要

研究了白细胞(WBC)在剪切流中变形并黏附于内皮细胞(EC)的力学机制。关于白细胞与内皮细胞瞬时黏附的实验数据是通过体内测量获得的。白细胞初始滚动过程中白细胞与内皮细胞接触的微观图像显示,对于给定的壁面剪应力,随着白细胞前缘形成新的键,接触面积随时间增加,随后随着白细胞膜后缘从内皮细胞剥离,接触面积又随时间减小。建立了一个二维模型(2D),该模型由在流体应力作用下黏附于表面的弹性环组成。这个环代表富含肌动蛋白的白细胞皮质层,并包含不可压缩流体作为细胞内部。所有分子键都被模拟为分布在白细胞与内皮细胞接触区域的弹性弹簧。白细胞附近壁面剪应力(τ(w))与所产生的阻力(F(s))之间比例关系的变化,即F(s)/τ(w),显示其随白细胞变形和血管通道高度增加(二维模型)而减小。计算还发现,黏附的白细胞与内皮细胞之间的剥离区可能占总接触界面的不到5%。计算研究描述了白细胞与内皮细胞的黏附以及黏附过程中白细胞的变形程度。

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