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首页> 外文期刊>Materials science & engineering >The effects of plasma electrolytically oxidized layers containing Sr and Ca on the osteogenic behavior of selective laser melted Ti6Al4V porous implants
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The effects of plasma electrolytically oxidized layers containing Sr and Ca on the osteogenic behavior of selective laser melted Ti6Al4V porous implants

机译:含有Sr和Ca的血浆电解氧化层对选择性激光熔化Ti6Al4V多孔植入物的成骨发生的影响

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摘要

Surface biofunctionalization is frequently applied to enhance the functionality and longevity of orthopedic implants. Here, we investigated the osteogenic effects of additively manufactured porous Ti6Al4V implants whose surfaces were biofunctionalized using plasma electrolytic oxidation (PEO) in Ca/P-based electrolytes with or without strontium. Various levels of Sr and Ca were incorporated in the oxide layers by using different current densities and oxidation times. Increasing the current density and oxidation time resulted in thicker titanium oxide layers and enhanced the release of Ca2+ and Sr2+. Biofunctionalization with strontium resulted in enhanced pore density, a thinner TiO2 layer, four-fold reduced release of Ca2+, and mainly anatase phases as compared to implants biofunctionalized in electrolytes containing solely Ca/P species under otherwise similar conditions. Different current densities and oxidation times significantly increased the osteogenic differentiation of MC3T3-E1 cells on implants biofunctionalized with strontium, when the PEO treatment was performed with a current density of 20 A/dm2 for 5 and 10 min as well as for a current density of 40 A/dm2 for 5 min. Therefore, addition of Sr in the PEO electrolyte and control of the PEO processing parameters represent a promising way to optimize the surface morphology and osteogenic activity of future porous AM implants.
机译:经常应用表面生物功能化以增强整形外植入的功能和寿命。在此,我们研究了含有含有血浆电解氧化(PEO)在具有或不含锶的CA / P型电解质中的等离子体电解氧化(PEO)的表面生物官能化的胃α效应。通过使用不同的电流密度和氧化时间将各种水平的Sr和Ca掺入氧化物层中。增加电流密度和氧化时间导致厚度的氧化钛层并增强了Ca2 +和Sr2 +的释放。用锶的生物官能化导致孔密度增强,TiO 2层较薄,减少Ca2 +的释放,主要是锐钛矿相,与在另外类似的Ca / P物种的电解质中植入物体中的生物官能化。当使用电流密度为20a / dm2进行5和10min的PEO处理时,不同的电流密度和氧化时间显着提高了MC3T3-E1细胞对生物官能化的植入物的植入物的植入物分化。以及电流密度40 A / DM2 5分钟。因此,在PEO电解质中加入SR和对PEO处理参数的控制代表了优化未来多孔AM植入物的表面形态和成骨活性的有希望的方法。

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