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激光封装的二氧化钛纳米管纳米银修饰壳聚糖/聚(甲基丙烯酸甲酯-共-甲基丙烯酸丁酯)聚合物涂层的抗菌性能

Antibacterial properties of laser-encapsulated titanium oxide nanotubes decorated with nanosilver and covered with chitosan/Eudragit polymers.

机构信息

Institute of Manufacturing and Materials Technology, Faculty of Mechanical Engineering and Ship Technology, Gdańsk University of Technology, Narutowicza 11/12, 80-233 Gdańsk, Poland.

Center for Plasma and Laser Engineering, The Szewalski Institute of Fluid-Flow Machinery, Polish Academy of Sciences, Fiszera 14, 80-231 Gdańsk, Poland.

出版信息

Biomater Adv. 2022 Jul;138:212950. doi: 10.1016/j.bioadv.2022.212950. Epub 2022 May 26.

Abstract

To provide antibacterial properties, the titanium samples were subjected to electrochemical oxidation in the fluoride-containing diethylene glycol-based electrolyte to create a titanium oxide nanotubular surface. Afterward, the surface was covered by sputtering with silver 5 nm film, and the tops of the nanotubes were capped using laser treatment, resulting in an appearance of silver nanoparticles (AgNPs) of around 30 nm in diameter on such a modified surface. To ensure a controlled release of the bactericidal substance, the samples were additionally coated with a pH-sensitive chitosan/Eudragit 100 coating, also exhibiting bactericidal properties. The modified titanium samples were characterized using SEM, EDS, AFM, Raman, and XPS techniques. The wettability, corrosion properties, adhesion of the coating to the substrate, the release of AgNPs into solutions simulating body fluids at different pH, and antibacterial properties were further investigated. The obtained composite coatings were hydrophilic, adjacent to the surface, and corrosion-resistant. An increase in the amount of silver released as ions or metallic particles into a simulated body fluid solution at acidic pH was observed for modified samples with the biopolymer coating after three days of exposure avoiding burst effect. The proposed modification was effective against both Gram-positive and Gram-negative bacteria.

摘要

为了提供抗菌性能,钛样品在含氟的二甘醇基电解液中进行电化学氧化,以创建氧化钛纳米管表面。之后,通过溅射在表面覆盖 5nm 厚的银膜,并使用激光处理封闭纳米管的顶部,从而在这种改性表面上形成直径约 30nm 的银纳米颗粒(AgNPs)的外观。为了确保杀菌物质的受控释放,样品还涂覆了具有杀菌性能的 pH 敏感壳聚糖/Eudragit 100 涂层。使用 SEM、EDS、AFM、拉曼和 XPS 技术对改性钛样品进行了表征。进一步研究了润湿性、腐蚀性能、涂层与基底的附着力、在不同 pH 值的模拟体液中 AgNPs 的释放以及抗菌性能。所得复合涂层具有亲水性、与表面相邻且耐腐蚀。在暴露三天后,具有生物聚合物涂层的改性样品在酸性 pH 值下将银离子或金属颗粒释放到模拟体液溶液中的量增加,避免了突释效应。所提出的改性方法对革兰氏阳性和革兰氏阴性细菌均有效。

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