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细胞滚动速度分布的定量解释。

Quantitative interpretation of cell rolling velocity distribution.

作者信息

Yasunaga Adam B, Murad Yousif, Kapras Vojtěch, Menard Frederic, Li Isaac T S

机构信息

Department of Chemistry, The University of British Columbia, Kelowna, British Columbia, Canada; Biochemistry and Molecular Biology, The University of British Columbia, Kelowna, British Columbia, Canada.

Department of Chemistry, The University of British Columbia, Kelowna, British Columbia, Canada; Faculty of Medicine, The University of British Columbia, Kelowna, British Columbia, Canada.

出版信息

Biophys J. 2021 Jun 15;120(12):2511-2520. doi: 10.1016/j.bpj.2021.04.021. Epub 2021 Apr 29.

Abstract

Leukocyte rolling adhesion, facilitated by selectin-mediated interactions, is a highly dynamic process in which cells roll along the endothelial surface of blood vessel walls to reach the site of infection. The most common approach to investigate cell-substrate adhesion is to analyze the cell rolling velocity in response to shear stress changes. It is assumed that changes in rolling velocity indicate changes in adhesion strength. In general, cell rolling velocity is studied at the population level as an average velocity corresponding to given shear stress. However, no statistical investigation has been performed on the instantaneous velocity distribution. In this study, we first developed a method to remove systematic noise and revealed the true velocity distribution to exhibit a log-normal profile. We then demonstrated that the log-normal distribution describes the instantaneous velocity at both the population and single-cell levels across the physiological flow rates. The log-normal parameters capture the cell motion more accurately than the mean and median velocities, which are prone to systematic error. Lastly, we connected the velocity distribution to the molecular adhesion force distribution and showed that the slip-bond regime of the catch-slip behavior of the P-selectin/PSGL-1 interaction is responsible for the variation of cell velocity.

摘要

在选择素介导的相互作用促进下,白细胞滚动黏附是一个高度动态的过程,在此过程中细胞沿着血管壁的内皮表面滚动以到达感染部位。研究细胞与底物黏附的最常用方法是分析细胞在剪切应力变化时的滚动速度。人们认为滚动速度的变化表明黏附强度的变化。一般来说,细胞滚动速度是在群体水平上作为对应于给定剪切应力的平均速度来研究的。然而,尚未对瞬时速度分布进行统计研究。在本研究中,我们首先开发了一种去除系统噪声的方法,并揭示了真实的速度分布呈现对数正态分布。然后我们证明对数正态分布描述了在生理流速范围内群体和单细胞水平的瞬时速度。对数正态参数比容易产生系统误差的平均速度和中值速度更准确地捕捉细胞运动。最后,我们将速度分布与分子黏附力分布联系起来,并表明P-选择素/PSGL-1相互作用的捕捉-滑移行为的滑移键机制是细胞速度变化的原因。

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