Key Laboratory of Inorganic Coating Materials, Chinese Academy of Sciences, Shanghai 200050, PR China.
Acta Biomater. 2010 Mar;6(3):990-1000. doi: 10.1016/j.actbio.2009.09.021. Epub 2009 Oct 1.
A monoclinic zirconia coating with a nanostructural surface was prepared on the Ti-6Al-4V substrate by an atmospheric plasma-spraying technique, and its microstructure and composition, as well as mechanical and biological properties, were investigated to explore potential application as a bioactive coating on bone implants. X-ray diffraction, transmission electron microscopy, scanning electron microscopy and Raman spectroscopy revealed that the zirconia coating was composed of monoclinic zirconia which was stable at low temperature, and its surface consists of nano-size grains 30-50 nm in size. The bond strength between the coating and the Ti-6Al-4V substrate was 48.4 + or - 6.1 MPa, which is higher than that of plasma-sprayed HA coatings. Hydrothermal experiments indicated that the coating was stable in a water environment and the phase composition and Vickers hardness were independent of the hydrothermal treatment time. Bone-like apatite is observed to precipitate on the surface of the coating after soaking in simulated body fluid for 6 days, indicating excellent bioactivity in vitro. The nanostructured surface composed of monoclinic zirconia is believed to be crucial to its bioactivity. Morphological observation and the cell proliferation test demonstrated that osteoblast-like MG63 cells could attach to, adhere to and proliferate well on the surface of the monoclinic zirconia coating, suggesting possible applications in hard tissue replacements.
采用大气等离子喷涂技术在 Ti-6Al-4V 基底上制备了具有纳米结构表面的单斜氧化锆涂层,研究了其微观结构、组成、力学性能和生物学性能,以探索其作为骨植入物生物活性涂层的潜在应用。X 射线衍射、透射电子显微镜、扫描电子显微镜和拉曼光谱表明,氧化锆涂层由低温稳定的单斜氧化锆组成,其表面由 30-50nm 大小的纳米晶粒组成。涂层与 Ti-6Al-4V 基底之间的结合强度为 48.4±6.1MPa,高于等离子喷涂 HA 涂层。水热处理实验表明,涂层在水环境中稳定,且相组成和维氏硬度与水热处理时间无关。涂层在模拟体液中浸泡 6 天后,表面观察到类骨磷灰石的沉淀,表现出优异的体外生物活性。认为由单斜氧化锆组成的纳米结构表面是其生物活性的关键。形貌观察和细胞增殖试验表明,成骨样 MG63 细胞能够很好地附着、黏附和增殖于单斜氧化锆涂层表面,这表明其在硬组织替代物中有潜在的应用。