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逐层组装的透明质酸/壳聚糖纳米薄膜及其抗菌效果:一项以金黄色葡萄球菌和铜绿假单胞菌为对象的研究

Hyaluronan/chitosan nanofilms assembled layer-by-layer and their antibacterial effect: A study using Staphylococcus aureus and Pseudomonas aeruginosa.

作者信息

Hernandez-Montelongo J, Lucchesi E G, Gonzalez I, Macedo W A A, Nascimento V F, Moraes A M, Beppu M M, Cotta M A

机构信息

Departamento de Física Aplicada, Instituto de Física Gleb Wataghin, Universidade Estadual de Campinas, Campinas, 13083-859 São Paulo, Brazil.

Itibanyl Produtos Especiais LTDA, Jarinu, 13240-000 São Paulo, Brazil.

出版信息

Colloids Surf B Biointerfaces. 2016 May 1;141:499-506. doi: 10.1016/j.colsurfb.2016.02.028. Epub 2016 Feb 12.

Abstract

In the last few years, chitosan-based coatings have been proposed as antibacterial surfaces for biomedical devices in order to prevent nosocomial infections. In that sense, this work reports the optimized synthesis of hyaluronan/chitosan (HA/CHI) nanofilms assembled layer-by-layer in order to maximize the antibacterial effect for two important human pathogenic bacteria, Staphylococcus aureus and Pseudomonas aeruginosa. In this assembly, HA forms a soft, highly hydrated, and nontoxic film, whereas CHI shows the antimicrobial characteristics. Our HA/CHI nanofilm synthesis optimization was based on changing pH values of the biopolymer stem-solutions and the consequent variation of their ionization degree. Furthermore, the surface density of primary amino groups, which are related to the antibacterial effect, was also enhanced by increasing the number of HA/CHI bilayers. The antibacterial effect of HA/CHI nanofilms was evaluated by the spread plate counting method for both bacteria. These results were correlated with the morphology of nanofilms (characterized using SEM and AFM), as well as with their chemical properties studied by UV-vis, Kelvin Probe Force microscopy and XPS spectroscopy.

摘要

在过去几年中,基于壳聚糖的涂层已被提议作为生物医学设备的抗菌表面,以预防医院感染。从这个意义上说,这项工作报道了透明质酸/壳聚糖(HA/CHI)纳米薄膜的优化合成,该纳米薄膜通过层层组装,以最大化对两种重要的人类病原菌金黄色葡萄球菌和铜绿假单胞菌的抗菌效果。在这种组装中,HA形成柔软、高度水合且无毒的薄膜,而CHI具有抗菌特性。我们对HA/CHI纳米薄膜合成的优化基于改变生物聚合物原液的pH值及其电离度的相应变化。此外,通过增加HA/CHI双层的数量,与抗菌效果相关的伯氨基表面密度也得到了提高。通过平板计数法对两种细菌评估了HA/CHI纳米薄膜的抗菌效果。这些结果与纳米薄膜的形态(使用扫描电子显微镜和原子力显微镜表征)以及通过紫外可见光谱、开尔文探针力显微镜和X射线光电子能谱研究的化学性质相关。

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