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Biocompatibility and Antibacterial Properties of ZnO-Incorporated Anodic Oxide Coatings on TiZrNb Alloy

机译:Tizrnb合金ZnO掺入阳极氧化物涂料的生物相容性和抗菌性质

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摘要

In a present paper, we demonstrate novel approach to form ceramic coatings with incorporated ZnO nanoparticles (NPs) on low modulus TiZrNb alloy with enhanced biocompatibility and antibacterial parameters. Plasma Electrolytic Oxidation (PEO) was used to integrate ZnO nanoparticles (average size 12–27 nm), mixed with Ca(H2PO2)2 aqueous solution into low modulus TiZrNb alloy surface. The TiZrNb alloys with integrated ZnO NPs successfully showed higher surface porosity and contact angle. XPS investigations showed presence of Ca ions and absence of phosphate ions in the PEO modified layer, what explains higher values of contact angle. Cell culture experiment (U2OS type) confirmed that the surface of as formed oxide-ZnO NPs demonstrated hydrophobic properties, what can affect primary cell attachment. Further investigations showed that Ca ions in the PEO coating stimulated proliferative activity of attached cells, resulting in competitive adhesion between cells and bacteria in clinical situation. Thus, high contact angle and integrated ZnO NPs prevent bacterial adhesion and considerably enhance the antibacterial property of TiZrNb alloys. A new anodic oxide coating with ZnO NPs could be successfully used for modification of low modulus alloys to decrease post-implantation complications.
机译:在本文中,我们展示了在低模量TizRNB合金中形成陶瓷涂层的新方法,其具有增强的生物相容性和抗菌参数的掺入ZnO纳米颗粒(NPS)。等离子体电解氧化(PEO)用于将ZnO纳米颗粒(平均尺寸12-27nm)整合,与Ca(H2PO 2)2水溶液混合到低模量TizRNB合金表面中。具有集成ZnO NP的TizrnB合金成功显示出更高的表面孔隙率和接触角。 XPS研究显示了PEO改性层中的Ca离子和磷酸盐离子的缺失,解释了更高的接触角值。细胞培养实验(U2OS型)证实,作为形成的氧化物-ZNO NPS的表面表现出疏水性质,可能影响原发性细胞附着物。进一步的研究表明,PEO涂层中的Ca离子刺激了附着细胞的增殖活性,导致临床情况下细胞和细菌之间的竞争性粘​​附。因此,高接触角和集成的ZnO NPS防止细菌粘附,并显着增强了TizRNB合金的抗菌性。具有ZnO NP的新阳极氧化物涂层可成功用于改性低模量合金以降低植入后并发症。

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