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氧氮化表面对制备不易被皮肤细菌附着的钛表面的影响。

Influence of Oxynitrided Surface in the Production of a Less Susceptible Titanium Surface to Skin-Borne Bacterial Adhesion.

作者信息

Aires Michelle de Medeiros, Treter Janine, Braz Danilo Cavalcante, Krug Cristiano, Macedo Alexandre José, Alves Júnior Clodomiro

机构信息

Lab Plasma, Federal University of Rio Grande do Norte, Rio Grande do Norte, Brazil.

Biofilms and Microbial Diversity Laboratory, Biotechnology Center and Pharmacy College of the Federal University of Rio Grande do Sul, Rio Grande do Sul, Brazil.

出版信息

Artif Organs. 2016 May;40(5):521-6. doi: 10.1111/aor.12581. Epub 2015 Nov 27.

Abstract

There is a growing quest for an ideal biomaterial that shows appropriate cellular response and is not susceptible to microbial adhesion. In this study, commercial grade II titanium was submitted to RF/DC plasma surface modification at 2.2 mbar, using gas mixtures of argon, nitrogen, and oxygen at proportions 4:1:2 and 4:1:3. The surfaces were physically and chemically characterized. In order to evaluate bacterial response, the surfaces were exposed to Staphylococcus epidermidis. Oxynitrided samples, although having a higher roughness as compared with untreated samples, exhibited lower bacterial growth. This observation is probably due to the formation of different crystalline phases of nitrides and oxides caused by plasma treatment. The surface with highest contact angle and highest surface tension showed lower bacterial adhesion. These results were confirmed by scanning electron microscopy. The role of nitrogen in reducing bacterial adhesion is clear when this material is compared with untreated titanium, on which only an oxide film is present.

摘要

人们越来越渴望找到一种理想的生物材料,这种材料能表现出适当的细胞反应且不易受到微生物附着的影响。在本研究中,商业级II型钛在2.2毫巴的压力下进行射频/直流等离子体表面改性,使用氩气、氮气和氧气的混合气体,比例分别为4:1:2和4:1:3。对这些表面进行了物理和化学表征。为了评估细菌反应,将这些表面暴露于表皮葡萄球菌中。与未处理的样品相比,氧氮化样品虽然粗糙度更高,但细菌生长较低。这种观察结果可能是由于等离子体处理导致形成了不同的氮化物和氧化物晶相。接触角和表面张力最高的表面显示出较低的细菌附着力。扫描电子显微镜证实了这些结果。当将这种材料与仅存在氧化膜的未处理钛进行比较时,氮在减少细菌附着力方面的作用是显而易见的。

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