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Fluoroapatite glass-ceramic coatings on alumina: structural, mechanical and biological characterisation.

机译:氧化铝上的氟磷灰石玻璃陶瓷涂层:结构,机械和生物学特性。

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摘要

The aim of this work was to realise bioactive coatings on full density alpha-alumina substrates. An SiO2-CaO-based glass (SC) and an SiO2-Al2O3-P2O5-K2O-CaO-F--based glass-ceramic (SAF) were used for this purpose. Specifically, SAF is a fluoroapatite containing glass-ceramic and previous studies have shown that it is a highly bioactive biomaterial. Furthermore, these fluoroapatite crystals possess a needle-shaped morphology which mimics that of hydroxylapatite found in human hard tissues, particularly in teeth. SAF is a very viscous glass-ceramic and for this reason an intermediate, less viscous, SC layer was interposed in direct contact with alumina aiming to obtain a good coating adhesion. Moreover, this intermediate layer strongly lowers the Al3+ diffusion and thus minimises both compositional changes in the SAF outer layer and the risk of detrimental modifications of the nature of the crystalline phases. A complete characterisation of the coated samples was performed by means of X-ray diffraction, optical and scanning microscopy. Coating adhesion on alumina was tested by comparative shear tests while biocompatibility was investigated on alumina. bulk SAF and on the realised coatings. For this purpose, cytotoxicity, adhesion and proliferation of human osteoblast-like cells were cultured onto the three materials. Results showed that the interposition of the SC layer was successful in allowing a good softening and spreading of the SAF outer layer and in avoiding the crystallisation of undesired crystalline phases maintaining the good bioactive properties of the bulk one. In vitro results on the coatings showed osteoblast-like cell behaviour similar to bulk fluoroapatite glass-ceramic and better respect to alumina substrates, being a promising index of bone material integration and of its in vivo possible applications.
机译:这项工作的目的是在全密度α-氧化铝基底上实现生物活性涂层。为此使用了SiO2-CaO-基玻璃(SC)和SiO2-Al2O3-P2O5-K2O-CaO-F-基玻璃陶瓷(SAF)。具体而言,SAF是含有玻璃陶瓷的氟磷灰石,先前的研究表明它是一种具有高生物活性的生物材料。此外,这些氟磷灰石晶体具有类似于人的硬组织,特别是牙齿中发现的羟基磷灰石的针状形态。 SAF是一种非常粘的玻璃陶瓷,因此,将中间的,粘度较小的SC层插入到与氧化铝直接接触的过程中,旨在获得良好的涂层附着力。此外,该中间层极大地降低了Al3 +的扩散,因此将SAF外层的成分变化和结晶相性质的有害改变的风险最小化。借助于X射线衍射,光学和扫描显微镜对涂覆的样品进行完整的表征。通过比较剪切试验来测试涂层在氧化铝上的粘附力,同时在氧化铝上研究生物相容性。散装SAF和已实现的涂料。为此目的,将人成骨细胞样细胞的细胞毒性,粘附和增殖培养在这三种材料上。结果表明,SC层的插入成功实现了SAF外层的良好软化和铺展,并且避免了不希望的晶相结晶,从而保持了块状体的良好生物活性。在涂层上的体外结果显示出类似于块状氟磷灰石玻璃陶瓷的成骨细胞样细胞行为,并更好地尊重氧化铝基质,这是骨材料整合及其在体内可能应用的有希望的指标。

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