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用于牙科植入物的纳米结构铜-二氧化钛表面的抗菌性能

Antibacterial properties of nanostructured Cu-TiO surfaces for dental implants.

作者信息

Rosenbaum Jonathan, Versace Davy Louis, Abbad-Andallousi Samir, Pires Remi, Azevedo Christophe, Cénédese Pierre, Dubot Pierre

机构信息

UFR d'Odontologie Garancière, Université Paris Diderot Paris 7, France.

Institut de Chimie et des Matériaux de Paris-Est, Université Paris-Est, CNRS, Thiais, UMR7182, France.

出版信息

Biomater Sci. 2017 Feb 28;5(3):455-462. doi: 10.1039/c6bm00868b.

Abstract

The influence of copper derived TiO surfaces (nCu-nT-TiO) on the death of nosocomial Staphylococcus aureus (Sa) and Escherichia coli (Ec), was investigated. TiO nanotube (nT-TiO) arrays were fabricated by anodic oxidation of pure titanium sheets in fluorhydric solutions, leading to surface nanostructuration and creation of specific reactive sites. Copper nanocubes with a mean size of 20 nm have been synthesized and deposited on the nT-TiO surface by pulsed electrodeposition from a copper sulphate solution. Scanning Electron Microscopy (SEM) reveals that Cu nanocubes are both inserted into the TiO nanotubes and on the nanotube edges. X-ray Photoemission Spectroscopy (XPS) and SEM-EDX confirm the metallic nature of copper nanoparticles, covered with a thin mixed CuO-CuO thin layer. As the adsorption of proteins is one of the early stages of biomaterial surface interactions with body fluids before bacterial colonization, Infrared Spectroscopy (IR) in reflection-absorption mode, SEM and XPS have been used to follow the evolution of nCu-nT-TiO surfaces when exposed to a simulated plasma solution containing Bovine Serum Albumin (BSA). Finally bacterial tests have revealed a high biocide potential of the nCu-nT-TiO surface, which leads to the entire death of SA and EC.

摘要

研究了铜衍生的TiO表面(nCu - nT - TiO)对医院内金黄色葡萄球菌(Sa)和大肠杆菌(Ec)死亡的影响。通过在氢氟酸溶液中对纯钛片进行阳极氧化制备TiO纳米管(nT - TiO)阵列,从而实现表面纳米结构化并产生特定的反应位点。已经合成了平均尺寸为20 nm的铜纳米立方体,并通过从硫酸铜溶液中进行脉冲电沉积将其沉积在nT - TiO表面上。扫描电子显微镜(SEM)显示,铜纳米立方体既插入到TiO纳米管中,也位于纳米管边缘。X射线光电子能谱(XPS)和SEM - EDX证实了覆盖有薄的CuO - Cu₂O混合薄层的铜纳米颗粒的金属性质。由于蛋白质吸附是生物材料表面在细菌定植之前与体液相互作用的早期阶段之一,因此采用反射吸收模式的红外光谱(IR)、SEM和XPS来跟踪nCu - nT - TiO表面在暴露于含有牛血清白蛋白(BSA)的模拟血浆溶液时的演变。最后,细菌测试表明nCu - nT - TiO表面具有很高的杀菌潜力,这导致了金黄色葡萄球菌和大肠杆菌的全部死亡。

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