School of Mechanical and Materials Engineering, Washington State University, Pullman, WA 99164, USA.
Acta Biomater. 2011 Apr;7(4):1902-12. doi: 10.1016/j.actbio.2011.01.004. Epub 2011 Jan 11.
A laser processed NiTi alloy was anodized for different times in H(2)SO(4) electrolyte with varying pH to create biocompatible surfaces with low Ni ion release as well as bioactive surfaces to enhance biocompatibility and bone cell-material interactions. The anodized surfaces were assessed for their in vitro cell-material interactions using human fetal osteoblast (hFOB) cells for 3, 7 and 11 days, and Ni ion release up to 8 weeks in simulated body fluids. The results were correlated with the surface morphologies of anodized surfaces characterized using field-emission scanning electron microscopy (FESEM). The results show that anodization creates a surface with nano/micro-roughness depending on the anodization conditions. The hydrophilicity of the NiTi surface was found to improve after anodization, as shown by the lower contact angles in cell medium, which dropped from 32° to <5°. The improved wettability of anodized surfaces is further corroborated by their high surface energy, comparable with that of commercially pure Ti. Relatively high surface energies, especially the polar component, and nano/micro surface features of anodized surfaces significantly increased the number of living cells and their adherence and growth on these surfaces. Finally, a significant drop in Ni ion release from 268±11 to 136±15 ppb was observed for NiTi surfaces after anodization. This work indicates that anodization of a NiTi alloy has a positive influence on the surface energy and surface morphology, which in turn improves bone cell-material interactions and reduces Ni ion release in vitro.
激光处理的 NiTi 合金在 H(2)SO(4)电解质中进行不同时间的阳极氧化处理,电解液的 pH 值不同,以在低 Ni 离子释放的情况下创建生物相容性表面,并创建生物活性表面以增强生物相容性和骨细胞-材料相互作用。使用人胎成骨细胞(hFOB)对阳极氧化表面进行体外细胞-材料相互作用评估,分别在模拟体液中培养 3、7 和 11 天,并在 8 周内释放 Ni 离子。将结果与使用场发射扫描电子显微镜(FESEM)表征的阳极氧化表面的表面形貌相关联。结果表明,阳极氧化会根据阳极氧化条件在表面上产生纳米/微观粗糙度。发现 NiTi 表面的亲水性在阳极氧化后得到改善,表现在细胞培养基中的接触角从 32°降低到<5°。阳极氧化表面的润湿性提高进一步由其高表面能证实,与商业纯 Ti 的表面能相当。相对较高的表面能,尤其是极性分量,以及阳极氧化表面的纳米/微观特征显著增加了活细胞的数量及其在这些表面上的黏附和生长。最后,观察到 NiTi 表面的 Ni 离子释放从 268±11 到 136±15 ppb 显著降低。这项工作表明,NiTi 合金的阳极氧化对表面能和表面形貌有积极影响,从而改善骨细胞-材料相互作用并减少体外 Ni 离子释放。