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In vitro and in vivo performance of bioactive Ti6Al4V/TiC/HA implants fabricated by a rapid microwave sintering technique

机译:快速微波烧结技术制备的具有生物活性的Ti6Al4V / TiC / HA植入物的体外和体内性能

摘要

Failure of the bone-implant interface in a joint prosthesis is a main cause of implant loosening. The introduction of a bioactive substance, hydroxyapatite (HA), to a metallic bone-implant may enhance its fixation on human bone by encouraging direct bone bonding. Ti6Al4V/TiC/HA composites with a reproducible porous structure (porosity of 27% and pore size of 6-89 mu m) were successfully fabricated by a rapid microwave sintering technique. This method allows the biocomposites to be fabricated in a short period of time under ambient conditions. Ti6Al4V/TiC/HA composites exhibited a compressive strength of 93 MPa, compressive modulus of 2.9 GPa and microhardness of 556 HV which are close to those of the human cortical bone. The in vitro preosteoblast MC3T3-E1 cells cultured on the Ti6Al4V/TiC/HA composite showed that the composite surface could provide a biocompatible environment for cell adhesion, proliferation and differentiation without any cytotoxic effects. This is among the first attempts to study the in vivo performance of load-bearing Ti6Al4V/TiC and Ti6Al4V/TiC/HA composites in a live rabbit. The results indicated that the Ti6Al4V/TiC/HA composite had a better bone-implant interface compared with the Ti6Al4V/FiC implant. Based on the microstructural features, the mechanical properties, and the in vitro and in vivo test results from this study, the Ti6Al4V/TiC/HA composites have the potential to be employed in load-bearing orthopedic applications.
机译:关节假体中的骨植入物界面故障是植入物松动的主要原因。将生物活性物质羟基磷灰石(HA)引入金属骨植入物中,可通过促进直接的骨结合来增强其在人骨上的固定。通过快速微波烧结技术成功地制备了具有可再现的多孔结构(孔隙度为27%,孔径为6-89μm)的Ti6Al4V / TiC / HA复合材料。该方法允许在环境条件下在短时间内制造生物复合材料。 Ti6Al4V / TiC / HA复合材料的抗压强度为93 MPa,压缩模量为2.9 GPa,显微硬度为556 HV,与人的皮质骨相近。在Ti6Al4V / TiC / HA复合材料上培养的体外成骨细胞MC3T3-E1细胞显示,复合材料表面可为细胞粘附,增殖和分化提供生物相容性环境,而没有任何细胞毒性作用。这是研究在活兔中体内负载Ti6Al4V / TiC和Ti6Al4V / TiC / HA复合材料的体内性能的首次尝试。结果表明,与Ti6Al4V / FiC植入物相比,Ti6Al4V / TiC / HA复合材料具有更好的骨植入物界面。基于这项研究的微观结构特征,力学性能以及体外和体内测试结果,Ti6Al4V / TiC / HA复合材料具有在承重骨科应用中使用的潜力。

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