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纳米图案化表面的杀菌机制。

Bactericidal mechanism of nanopatterned surfaces.

作者信息

Li Xinlei

机构信息

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

出版信息

Phys Chem Chem Phys. 2016 Jan 14;18(2):1311-6. doi: 10.1039/c5cp05646b.

Abstract

The quest to design and fabricate new antibacterial surfaces is an important task to meet the urgent demands of biomedical applications. Recently, a mechanical mechanism for killing adherent bacteria was discovered on nanopatterned surfaces, but there is a lack of understanding of the bactericidal mechanism. Here we present a quantitative thermodynamic model to study the bactericidal mechanism of nanopatterned surfaces through analyzing the total free energy change of bacterial cells. By comparing the bacterial cells on a flat surface and nanopatterned surface, our theoretical results reveal that cicada wing-like nanopatterned surfaces have more effective bactericidal properties than flat surfaces because a patterned surface leads to a drastic increase of the contact adhesion area. Our model also reveals some details of the influence mechanism, and gives some important information about how to improve the bactericidal properties through designing the morphology of the patterned surface.

摘要

设计和制造新型抗菌表面是满足生物医学应用迫切需求的一项重要任务。最近,在纳米图案化表面发现了一种杀死附着细菌的机械机制,但对杀菌机制尚缺乏了解。在此,我们提出一个定量热力学模型,通过分析细菌细胞的总自由能变化来研究纳米图案化表面的杀菌机制。通过比较平坦表面和纳米图案化表面上的细菌细胞,我们的理论结果表明,蝉翼状纳米图案化表面比平坦表面具有更有效的杀菌性能,因为图案化表面会导致接触粘附面积急剧增加。我们的模型还揭示了影响机制的一些细节,并给出了一些关于如何通过设计图案化表面的形态来提高杀菌性能的重要信息。

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