State Key Laboratory for Turbulence and Complex Systems and Department of Advanced Materials and Nanotechnology, College of Engineering, Peking University, Beijing, PR China.
Acta Biomater. 2011 Apr;7(4):1880-9. doi: 10.1016/j.actbio.2010.11.034. Epub 2010 Dec 8.
The Mg-Ca alloy system has been proposed as a potential new kind of degradable biomaterial with possible application within bone. Here microarc oxidation (MAO) coatings were fabricated on top of a Mg-Ca alloy using different applied voltages and the effect of applied voltage on the surface morphology and phase constitution, hydrogen evolution, pH variation in the immersion solution and in vitro biocompatibility of the MAO coating on the Mg-Ca alloy were extensively studied. It was found that the thickness and pore size of the MAO coating increased with the increasing applied voltage, whereas some micro-pores could be seen inside the 400 V treated MAO coating. The 360 V treated MAO coating gave the best long-term corrosion resistance during a 50 days immersion test. All the MAO coatings could promote MG63 cell adhesion, proliferation and differentiation in comparison with the uncoated Mg-Ca alloy sample, due to significantly reduced Mg ion release and pH value variations in the culture medium. After 5 days culture well-spread and elongated MG63 cells could be seen on the surface of the 360 V and 400 V MAO coatings, in contrast to no cells on the uncoated Mg-Ca alloy sample. In summary, MAO showed beneficial effects on the corrosion resistance of, and thus improved cell adhesion to, the Mg-Ca alloy, and should be a good surface modification method for other biomedical magnesium alloys.
镁钙合金系统被认为是一种潜在的新型可降解生物材料,可能在骨骼内得到应用。在此,采用不同的外加电压在 Mg-Ca 合金表面制备微弧氧化(MAO)涂层,并研究了外加电压对 MAO 涂层表面形貌和相组成、析氢、浸出液 pH 值变化以及 MAO 涂层在 Mg-Ca 合金上体外生物相容性的影响。结果表明,随着外加电压的增加,MAO 涂层的厚度和孔径增大,而在 400 V 处理的 MAO 涂层中可以看到一些微孔。在 50 天浸泡试验中,360 V 处理的 MAO 涂层具有最佳的长期耐腐蚀性。与未涂层的 Mg-Ca 合金样品相比,所有 MAO 涂层均能促进 MG63 细胞的黏附、增殖和分化,这主要是由于 MAO 涂层能显著降低镁离子的释放和培养基 pH 值的变化。培养 5 天后,在 360 V 和 400 V 的 MAO 涂层表面可以看到细胞铺展和伸长,而在未涂层的 Mg-Ca 合金样品表面则没有细胞。总之,MAO 提高了 Mg-Ca 合金的耐腐蚀性,从而改善了细胞对其的黏附性,这应该是其他医用镁合金的一种很好的表面改性方法。