Pham Duy Quang, Berndt Christopher C, Cizek Jan, Gbureck Uwe, Zreiqat Hala, Lu Zufu, Ang Andrew Siao Ming
Australian Research Council Training Centre for Surface Engineering for Advanced Materials (SEAM), School of Engineering, Swinburne University of Technology, Hawthorn, Victoria, Australia; Australian Research Council Training Centre for Innovative BioEngineering, The University of Sydney, Sydney, New South Wales, Australia.
Institute of Plasma Physics of the Czech Academy of Sciences, Prague, Czech Republic.
Mater Sci Eng C Mater Biol Appl. 2021 Mar;122:111873. doi: 10.1016/j.msec.2021.111873. Epub 2021 Jan 8.
This work studies the mechanical and biological properties of Baghdadite (BAG, CaZrSiO) coating manufactured on Ti6Al4V substrates by hybrid water-stabilized plasma spray (WSP-H). Hydroxyapatite (HAp, Ca(PO)(OH)) coating was produced by gas-stabilized atmospheric plasma spray and used as a reference material. Upon spraying, the BAG coating exhibited lower crystallinity than the HAp coating. Mechanical testing demonstrated superior properties of the BAG coating: its higher hardness, elastic modulus as well as a better resistance to scratch and wear. In the cell viability study, the BAG coating presented better human osteoblast attachment and proliferation on the coating surface after three days and seven days compared to the HAp counterpart. Furthermore, the gene expression study of human osteoblasts indicated that the BAG coating surface showed higher expression levels of osteogenic genes than those on the HAp coating. Overall, this study indicates that enhanced mechanical and bioactive properties can be achieved for the BAG coating compared to the benchmark HAp coating. It is therefore concluded here that the BAG coating is a potential candidate for coating orthopedic implants.
本研究通过混合水稳等离子喷涂(WSP-H)工艺,对在Ti6Al4V基体上制备的白榴钙锆石(BAG,CaZrSiO)涂层的力学性能和生物学性能进行了研究。采用气稳大气等离子喷涂制备了羟基磷灰石(HAp,Ca(PO)(OH))涂层作为参考材料。喷涂过程中,BAG涂层的结晶度低于HAp涂层。力学测试表明,BAG涂层具有优异的性能:更高的硬度、弹性模量以及更好的抗划伤和耐磨性能。在细胞活力研究中,与HAp涂层相比,BAG涂层在3天和7天后在涂层表面表现出更好的人成骨细胞附着和增殖能力。此外,人成骨细胞的基因表达研究表明,BAG涂层表面的成骨基因表达水平高于HAp涂层。总体而言,本研究表明,与基准HAp涂层相比,BAG涂层可实现增强的力学性能和生物活性。因此,本研究得出结论,BAG涂层是骨科植入物涂层的潜在候选材料。