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Nitrogen plasma immersion ion implantation treatment to enhance corrosion resistance, bone cell growth, and antibacterial adhesion of Ti-6Al-4V alloy in dental applications

机译:氮等离子体浸渍离子注入处理,提高耐腐蚀,骨细胞生长,牙科应用中Ti-6Al-4V合金的抗菌粘附性

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摘要

Ti-6Al-4V is a biocompatible alloy widely used for dental prostheses. Unfortunately, the oxide film that forms spontaneously on the surface is bioinert and sometimes prone to the release of metal ions. In this study, we applied nitrogen plasma immersion ion implantation (N-PIII) treatment to Ti-6Al-4V in order to improve corrosion resistance and biological responses, including cell growth and antibacterial adhesion, for dental applications. We then analyzed the surface characteristics, such as topography, chemical composition, hardness, and hydrophilicity. Resistance to corrosion was examined using potentiodynamic polarization curves obtained in artificial saliva, simulated body fluid, and simulated blood plasma solutions. Human bone marrow mesenchymal stem cells were used to test cell responses, including adhesion, proliferation, and mineralization. The oral bacteria, Streptococcus salivarius, was used to evaluate antibacterial adhesion, including bacterial attachment and morphology. Our results demonstrate that N-PIII treatment did not significantly affect surface roughness at the macroscopic (micrometer) scale or hydrophilicity. During N-PIII treatment, a thin film of TiN (< 1 mu m in thickness) formed on the surface of the Ti-6Al-4V. The presence of TiN positively affected the surface hardness, corrosion resistance (i.e., decreased corrosion rate and passive current), cell responses (i.e., enhanced cell adhesion, proliferation, and mineralization), and antibacterial adhesion. These effects were particularly evident when N-PIII treatment was applied at higher voltage. Our results demonstrate that the proposed N-PIII treatment increases the corrosion resistance of Ti-6Al-4V alloy, while promoting cell responses and antibacterial adhesion for dental applications.
机译:TI-6AL-4V是一种广泛用于牙科假肢的生物相容性合金。遗憾的是,在表面上自发地形成的氧化物膜是生物素的,有时容易释放金属离子。在该研究中,我们将氮等离子体浸渍离子注入(N-PIII)处理应用于Ti-6Al-4V,以改善耐腐蚀性和生物反应,包括细胞生长和抗菌粘附,适用于牙科应用。然后,我们分析了地形,化学成分,硬度和亲水等表面特征。使用人工唾液,模拟体液和模拟血浆溶液中获得的电位显微偏振曲线检查耐腐蚀性。人骨髓间充质干细胞用于测试细胞应答,包括粘附,增殖和矿化。口腔细菌,链球菌唾液,用于评估抗菌粘附,包括细菌附着和形态。我们的研究结果表明,N-PIII治疗没有显着影响宏观(千分尺)或亲水性的表面粗糙度。在N-PIII处理期间,形成在Ti-6AL-4V的表面上的锡(厚度为的厚度为1μm的厚度)薄膜。锡积极地影响表面硬度,耐腐蚀性(即腐蚀速率和无源电流),细胞应答(即,增强的细胞粘附,增殖和矿化),以及抗菌粘附。当在较高电压下施加N-PIII处理时,这些效果特别明显。我们的结果表明,所提出的N-PIII处理增加了Ti-6Al-4V合金的耐腐蚀性,同时促进细胞应答和牙科应用的抗菌粘附。

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