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Effect of surface treatments on the surface morphology, corrosion property, and antibacterial property of Ti-10Cu sintered alloy

机译:表面处理对Ti-10Cu烧结合金表面形貌,腐蚀性能和抗菌性能的影响

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Ti-10Cu sintered alloy has shown strong antibacterial properties against S. aureus and E. coli and good cell biocompatibility in vitro and in vivo, displaying potential application as an implant material. Surface treatments are always applied to implants to improve the surface biocompatibility. In this paper, several typically used surface treatments, including sandblasting (SB), sandblasted and large-grits acid etching (SLA), and alkaline heat treatment (AH) were chosen to modify the Ti-10Cu. A cp-Ti (commercially pure titanium) sample was used as control sample. The effect of surface treatments on the corrosion properties and antibacterial properties of the Ti-10Cu sintered alloy was investigated. After SB and SLA treatments, a rough surface with a TiO2 layer was formed on the surface, which reduced the corrosion resistance and enhanced the Ti and Cu ion release. After AH treatment, a smooth but microporous surface with a TiO2/titanate layer was formed, which improved slightly the corrosion resistance. However, the Cu ion and Ti ion release from the Ti-10Cu sample was promoted by AH treatment due to the fact that more Ti2Cu phases were exposed on the AH-treated Ti-10Cu sample. It was demonstrated that the Ti-10Cu samples after surface treatments still exhibited good antibacterial properties against S. aureus, which indicated that the surface treatment did not reduce the antibacterial activity. The control mechanism was thought to be related to the high Cu ion release even after surface treatments. It was expected that the surface treatments provided Ti-10Cu sintered alloy with good surface bioactivity without reduction in antibacterial activity.
机译:Ti-10Cu烧结合金对金黄色葡萄球菌和大肠杆菌具有很强的抗菌性能,在体内外均具有良好的细胞生物相容性,显示出作为植入材料的潜在应用。表面处理始终应用于植入物,以改善表面生物相容性。在本文中,选择了几种常用的表面处理方法,包括喷砂(SB),喷砂处理和大网格酸蚀(SLA)以及碱热处理(AH)来修饰Ti-10Cu。 cp-Ti(商业纯钛)样品用作对照样品。研究了表面处理对Ti-10Cu烧结合金的腐蚀性能和抗菌性能的影响。经过SB和SLA处理后,在表面上形成了带有TiO2层的粗糙表面,这降低了耐蚀性并增强了Ti和Cu离子的释放。经过AH处理后,形成了具有TiO2 /钛酸酯层的光滑但微孔的表面,从而略微提高了耐腐蚀性。但是,由于在AH处理的Ti-10Cu样品上暴露了更多的Ti2Cu相,因此通过AH处理促进了从Ti-10Cu样品释放Cu离子和Ti离子。结果表明,表面处理后的Ti-10Cu样品仍对金黄色葡萄球菌具有良好的抗菌性能,这表明表面处理并没有降低抗菌活性。据认为,即使在表面处理之后,该控制机制也与高Cu离子释放有关。预期表面处理提供了具有良好的表面生物活性而不降低抗菌活性的Ti-10Cu烧结合金。

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