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Modification of titanium alloys surface properties by plasma electrolytic oxidation (PEO) and influence on biological response

机译:等离子体电解氧化修饰钛合金表面性能及其对生物反应的影响

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摘要

Surface characteristics can mediate biological interaction improving or affecting the tissue integration after implantation of a biomaterial. Features such as topography, wettability, surface energy and chemistry can be key determinants for interactions between cells and materials. Plasma electrolytic oxidation (PEO) is a technique used to control this kind of parameters by the addition of chemical species and the production of different morphologies on the surfaces of titanium and its alloys. With the purpose to improve the biological response, surfaces of c.p titanium and Ti6Al4V were modified by using PEO. Different electrolytes, voltages, current densities and anodizing times were tested in order to obtain surfaces with different characteristics. The obtained materials were characterized by different techniques such as X-ray diffraction (XRD), scanning electron microscopy (SEM) and glow discharge optical emission spectroscopy (GDOES). Wettability of the obtained surfaces were measured and the corresponding surface energies were calculated. Superhydrophilic surfaces with contact angles of about 0 degrees were obtained without any other treatment but PEO and this condition in some cases remains stable after several weeks of anodizing; crystal phase composition (anatase-rutile) of the anodic surface appears to be critical for obtaining this property. Finally, in order to verify the biological effect of these surfaces, osteoblast were seeded on the samples. It was found that cell behavior improves as SFE (surface free energy) and coating porosity increases whereas it is affected negatively by roughness.
机译:表面特性可以介导生物相互作用,从而改善或影响生物材料植入后的组织整合。诸如地形,润湿性,表面能和化学性质等特征可能是决定细胞与材料之间相互作用的关键因素。等离子体电解氧化(PEO)是一种用于通过添加化学物种以及在钛及其合金表面上生成不同形态来控制此类参数的技术。为了改善生物反应,使用PEO对c.p钛和Ti6Al4V的表面进行了改性。测试了不同的电解质,电压,电流密度和阳极氧化时间,以获得具有不同特性的表面。所获得的材料通过不同的技术进行表征,例如X射线衍射(XRD),扫描电子显微镜(SEM)和辉光放电发射光谱(GDOES)。测量获得的表面的润湿性并计算相应的表面能。无需任何其他处理即可获得具有约0度接触角的超亲水表面,但PEO可以在阳极化几周后保持稳定。阳极表面的结晶相组成(锐钛型金红石型)对于获得该特性至关重要。最后,为了验证这些表面的生物学效应,将成骨细胞接种在样品上。已经发现,随着SFE(表面自由能)和涂层孔隙率的增加,电池的性能会改善,而粗糙度会对其产生负面影响。

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  • 来源
    《Journal of materials science》 |2017年第11期|169.1-169.14|共14页
  • 作者单位

    UdeA, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Fac Ingn, Calle 70 52-21, Medellin, Colombia|UdeA, Fac Med, PECET, Inst Invest Med, Calle 70 52-21, Medellin, Colombia;

    UdeA, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Fac Ingn, Calle 70 52-21, Medellin, Colombia;

    UdeA, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Fac Ingn, Calle 70 52-21, Medellin, Colombia;

    UdeA, Fac Med, PECET, Inst Invest Med, Calle 70 52-21, Medellin, Colombia;

    UdeA, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Fac Ingn, Calle 70 52-21, Medellin, Colombia;

    UdeA, Ctr Invest Innovac & Desarrollo Mat CIDEMAT, Fac Ingn, Calle 70 52-21, Medellin, Colombia;

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