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纳米图案表面对细菌黏附的增强和抑制作用。

Enhancement and suppression effects of a nanopatterned surface on bacterial adhesion.

机构信息

MOE Key Laboratory of Laser Life Science and Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.

出版信息

Phys Rev E. 2016 May;93(5):052419. doi: 10.1103/PhysRevE.93.052419. Epub 2016 May 24.

Abstract

We present a quantitative thermodynamic model to elucidate the effects of a nanopatterned surface on bacterial adhesion. Based on the established model, we studied the equilibrium state of rodlike bacterial cells adhered to a nanopillar-patterned surface. Theoretical analyses showed the physical origin of bacterial adhesion on a nanopatterned surface is actually determined by the balance between adhesion energy and deformation energy of the cell membrane. We found that there are enhancement effects on bacterial adhesion to the patterned surface with large radius and small spacing of nanopillars, but suppression effects for nanopillars with a radius smaller than a critical value. In addition, according to our model, a phase diagram has been constructed which can clarify the interrelated effects of the radius and the spacing of nanopillars. The broad agreement with experimental observations implies that these studies would provide useful guidance to the design of nanopatterned surfaces for biomedical applications.

摘要

我们提出了一个定量热力学模型来阐明纳米图案表面对细菌附着的影响。基于所建立的模型,我们研究了杆状细菌细胞在纳米柱图案表面上的平衡状态。理论分析表明,细菌在纳米图案表面上的附着的物理本质实际上是由附着能和细胞膜变形能之间的平衡决定的。我们发现,对于具有较大半径和较小纳米柱间距的图案表面,细菌附着有增强效应,但对于半径小于临界值的纳米柱则有抑制效应。此外,根据我们的模型,构建了一个相图,可以阐明纳米柱半径和间距的相关影响。与实验观察结果的广泛一致性表明,这些研究将为生物医学应用中纳米图案表面的设计提供有用的指导。

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