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Fabrication and formation of bioactive anodic zirconium oxide nanotubes containing presynthesized hydroxyapatite via alternative immersion method

机译:含预合成羟基磷灰石的生物活性阳极氧化锆纳米管的制备方法

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摘要

Hydroxyapatite (HA) coating has been widely applied on metallic biomedical implants to enhance their biocompatibility. It has been reported that HA coating can be formed on annealed zirconium with anodic zirconium oxide nanotubular arrays after immersion in simulated biological fluid (SBF) for about 14 days. In the present study, we apply an alternative immersion method (AIM) to form presynthesized HA on ZrO_2 nanotubes. The AIM-treated specimen was then moved to the SBF to evaluate the capability for the formation of HA on it. The HA coating formed after only 2 days immersion and thickened after 5 days in the SBF. The HA coating is the carbonated HA with a ratio of Ca to P of about 1.4, similar to the physiological HA containing other minor elements such as Mg and Na. The results demonstrate that the AIM treatment is indeed suitable for the zirconium oxide nanotubes and highly accelerates the formation of HA coating in comparison with the existing methods, i.e. the annealing of the as-formed zirconium oxide nanotubular arrays.
机译:羟基磷灰石(HA)涂层已广泛应用于金属生物医学植入物,以增强其生物相容性。据报道,在浸入模拟生物体液(SBF)约14天后,可以在带有阳极氧化锆纳米管阵列的退火锆上形成HA涂层。在本研究中,我们应用替代的浸入法(AIM)在ZrO_2纳米管上形成预先合成的HA。然后将经过AIM处理的标本移至SBF,以评估在其上形成HA的能力。 HA涂层仅浸入2天后形成,并在SBF中放置5天后变厚。 HA涂层是具有约1.4的Ca与P之比的碳酸化HA,类似于含有其他微量元素例如Mg和Na的生理HA。结果表明,与现有方法,即形成的氧化锆纳米管阵列的退火相比,AIM处理确实适用于氧化锆纳米管,并且极大地加速了HA涂层的形成。

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