Singh Jarnail, Chatha Sukhpal Singh, Singh Hazoor
Yadavindra College of Engineering, Punjabi University Guru Kashi Campus, Talwandi Sabo, Punjab, India.
Prog Biomater. 2022 Mar;11(1):95-108. doi: 10.1007/s40204-022-00183-w. Epub 2022 Feb 22.
The delayed tissue-implant interactions in metallic implants coated with hydroxyapatite (HA) paved the way for the development of alternative bioactive coatings. In this study, bi-layered functional gradient (HA-CS) coating was formulated by the atmospheric plasma spray (APS) process on Ti6Al4V alloy. The HA layer was applied at the metal interface to ensure long-term stability, while the calcium silicate (CS) outer layer was applied to achieve fast tissue-implant interactions. Moreover, single-layered HA and CS coating were also formulated for comparative analysis. The phase compositions, coating microstructure, chemical properties, microhardness, porosity, surface roughness, and in-vitro bioactivity were investigated. The CS top layer showed high porosity and surface roughness with respect to the inner HA layer, which constitutes an optimum microstructure to promote bioactivity. The microhardness of the outer CS layer of HA-CS was 520.3 ± 80.8 HV, while the corresponding value for the inner HA layer was 291.7 ± 45.7 HV. HA-CS and CS coatings demonstrated higher in-vitro bioactivity compared to HA coating. On the contrary, HA coating (3.76 mpy) displayed better corrosion resistance than the HA-CS (4.17 mpy) and CS coatings (4.34 mpy). The in-vitro results indicated that the HA-CS coating could promote the healthy development of osteoblast-like MG-63.
涂覆有羟基磷灰石(HA)的金属植入物中延迟的组织 - 植入物相互作用为替代生物活性涂层的开发铺平了道路。在本研究中,通过大气等离子喷涂(APS)工艺在Ti6Al4V合金上制备了双层功能梯度(HA - CS)涂层。HA层涂覆在金属界面处以确保长期稳定性,而硅酸钙(CS)外层用于实现快速的组织 - 植入物相互作用。此外,还制备了单层HA和CS涂层用于对比分析。研究了涂层的相组成、微观结构、化学性质、显微硬度、孔隙率、表面粗糙度和体外生物活性。相对于内部的HA层,CS顶层显示出高孔隙率和表面粗糙度,这构成了促进生物活性的最佳微观结构。HA - CS的外部CS层的显微硬度为520.3±80.8 HV,而内部HA层的相应值为291.7±45.7 HV。与HA涂层相比,HA - CS和CS涂层表现出更高的体外生物活性。相反,HA涂层(3.76 mpy)比HA - CS(4.17 mpy)和CS涂层(4.34 mpy)具有更好的耐腐蚀性。体外结果表明,HA - CS涂层可以促进成骨样MG - 63细胞的健康发育。