Department of Orthopedics, Peking University Third Hospital, Beijing, 100191, People's Republic of China.
Biomed Mater. 2020 Aug 31;15(5):052003. doi: 10.1088/1748-605X/ab9078.
Titanium alloy orthopedic implants produced by 3D printing combine the dual advantages of having a complex structure that cannot be manufactured by traditional techniques and the excellent physical and chemical properties of titanium and its alloys; they have been widely used in the field of orthopedics in recent years. The inherent porous structure of 3D-printed implants and the original modification processes for titanium alloys provide conditions for the functionalization of implants. To meet the needs of orthopedic surgeons and patients, functionalized implants with long-term stability and anti-infection or anti-tumor properties have been developed. The various methods of functionalization deserve to be summarized, compared and analyzed. Therefore, in this review, we will collect and discuss existing knowledge on the functionalization of 3D-printed titanium alloy orthopedic implants.
3D 打印的钛合金骨科植入物结合了传统技术无法制造的复杂结构和钛及其合金的优异物理化学性能的双重优势;近年来已广泛应用于骨科领域。3D 打印植入物的固有多孔结构和钛合金的原始改性工艺为植入物的功能化提供了条件。为了满足骨科医生和患者的需求,已经开发出具有长期稳定性和抗感染或抗肿瘤性能的功能化植入物。各种功能化方法值得总结、比较和分析。因此,在这篇综述中,我们将收集和讨论现有的关于 3D 打印钛合金骨科植入物功能化的知识。