Bigi Adriana, Fini Milena, Bracci Barbara, Boanini Elisa, Torricelli Paola, Giavaresi Gianluca, Aldini Nicolò N, Facchini Alessandro, Sbaiz Fausto, Giardino Roberto
Department of Chemistry G. Ciamician, University of Bologna, Via Selmi 2, 40126 Bologna, Italy.
Biomaterials. 2008 Apr;29(11):1730-6. doi: 10.1016/j.biomaterials.2007.12.011. Epub 2008 Jan 14.
An in vivo study was carried out on uncoated and hydroxyapatite (HA)-coated nanostructured Ti13Nb11Zr alloy in comparison with high-grade Ti6Al4V, to investigate the effect of the different surfaces on osteointegration rate. A highly effective method to obtain a fast biomimetic deposition of a thin layer of nanocrystalline HA was applied to coat both substrates. Cylindrical pins were implanted in rabbit cortical bone and evaluated at 4 and 12 weeks by histomorphometry and microhardness tests. The results confirmed the ability of the slightly supersaturated Ca/P solution to induce a fast deposition of nanocrystalline HA on Ti alloys' surfaces. HA-coated Ti13Nb11Zr had the highest osteointegration rate at 4 and 12 weeks. Both HA-coated surfaces showed an affinity index significantly higher than those of native surfaces at 4 weeks (Ti13Nb11Zr+HA: 37%; Ti6Al4V+HA: 26%). Microhardness test showed a significantly higher bone mineralization index of HA-coated Ti13Nb11Zr in comparison with that of HA-coated Ti6Al4V surface. The study suggests that the HA coating on both alloys enhances bone response around implants and that there is a synergic effect of Ti-Nb-Zr alloy with the HA coating on bone remodeling and maturation.
对未涂层和羟基磷灰石(HA)涂层的纳米结构Ti13Nb11Zr合金进行了体内研究,并与高级Ti6Al4V合金进行比较,以研究不同表面对骨整合率的影响。采用一种高效方法在两种基底上快速仿生沉积一层纳米晶HA。将圆柱形销钉植入兔皮质骨,并在4周和12周时通过组织形态计量学和显微硬度测试进行评估。结果证实了微过饱和Ca/P溶液在Ti合金表面诱导纳米晶HA快速沉积的能力。HA涂层的Ti13Nb11Zr在4周和12周时具有最高的骨整合率。在4周时,两种HA涂层表面的亲和指数均显著高于未涂层表面(Ti13Nb11Zr+HA:37%;Ti6Al4V+HA:26%)。显微硬度测试表明,与HA涂层的Ti6Al4V表面相比,HA涂层的Ti13Nb11Zr具有显著更高的骨矿化指数。该研究表明,两种合金上的HA涂层均增强了植入物周围的骨反应,并且Ti-Nb-Zr合金与HA涂层在骨重塑和成熟方面存在协同效应。