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流体剪切力影响下受体介导的细菌黏附的新型实验研究

Novel experimental study of receptor-mediated bacterial adhesion under the influence of fluid shear.

作者信息

Mohamed N, Rainier T R, Ross J M

机构信息

Department of Chemical and Biochemical Engineering, University of Maryland Baltimore County, Baltimore, 1000 Hilltop Circle, Baltimore, Maryland 21250, USA.

出版信息

Biotechnol Bioeng. 2000 Jun 20;68(6):628-36.

Abstract

Dynamic adhesion of cells to surfaces is a vital step in a variety of biochemical and physiological phenomena. Bacterial adhesion is responsible not only for problems associated with biofouling and biofilm formation in the biochemical industry but also in the initiation of certain infectious diseases. In this study, we report the effect of critical parameters, such as receptor and ligand densities and shear rate, on receptor-mediated dynamic bacterial adhesion. Adhesion of a pathogenic strain of Staphylococcus aureus to immobilized collagen was studied. The receptor density on the cell surface was varied by harvesting cells at different growth times and was quantified using flow cytometry. Dynamic adhesion experiments were conducted over a range of physiologically relevant shear rates (50 to 1500 s(-1)) using a parallel-plate flow chamber. Video microscopy coupled with digital image processing was employed to quantify adhesion. A semiquantitative comparison between experimental results and theoretical data obtained using a previously proposed mathematical model was also performed. The results suggest that dynamic adhesion is dependent on receptor density and shear rate, but independent of ligand density. This report demonstrates the feasibility of using bacteria to study fundamental aspects of receptor-mediated dynamic adhesion.

摘要

细胞与表面的动态粘附是多种生化和生理现象中的关键步骤。细菌粘附不仅会导致生化工业中与生物污染和生物膜形成相关的问题,还会引发某些传染病。在本研究中,我们报告了关键参数(如受体和配体密度以及剪切速率)对受体介导的动态细菌粘附的影响。研究了金黄色葡萄球菌致病菌株与固定化胶原蛋白的粘附。通过在不同生长时间收获细胞来改变细胞表面的受体密度,并使用流式细胞术进行定量。使用平行板流动腔在一系列生理相关的剪切速率(50至1500 s(-1))下进行动态粘附实验。采用视频显微镜结合数字图像处理来定量粘附。还对实验结果与使用先前提出的数学模型获得的理论数据进行了半定量比较。结果表明,动态粘附取决于受体密度和剪切速率,但与配体密度无关。本报告证明了利用细菌研究受体介导的动态粘附基本方面的可行性。

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