Osseointegration of three-dimensional designed titanium implants manufactured by selective laser melting

选择性激光熔化 骨整合 材料科学 生物相容性 表面粗糙度 植入 润湿 生物医学工程 牙种植体 钛合金 牙科 复合材料 冶金 医学 外科 微观结构 合金
作者
Algabri Shaoki,Xu Jiayun,Haipeng Sun,Xian-shuai Chen,Jianglin Ouyang,Xiumei Zhuang,Feilong Deng
出处
期刊:Biofabrication [IOP Publishing]
卷期号:8 (4): 045014-045014 被引量:73
标识
DOI:10.1088/1758-5090/8/4/045014
摘要

The selective laser melting (SLM) technique is a recent additive manufacturing (AM) technique. Several studies have reported success in the SLM-based production of biocompatible orthopaedic implants and three-dimensional bone defect constructs. In this study, we evaluated the surface properties and biocompatibility of an SLM titanium implant in vitro and compared them with those of a machined (MA) titanium control surface. In addition, we evaluated the osseointegration capability of the SLM implants in vivo and compared it with those of MA and Nobel-speedy (Nobel-S) implants. SLM microtopographical surface analysis revealed porous and high roughness with varied geometry compared with a smooth surface in MA Ti samples but with similar favourable wettability. Osteoblast proliferation and alkaline phosphatase activity were significantly enhanced on the SLM surface. Histological analysis of the bone-implant contact ratio revealed no significant difference among SLM, MA, and Nobel-S implants. Micro-CT assessment indicated that there was no significant difference in bone volume fraction around the implant among SLM implants and other types of surface modification implants. The removal torque value measurement of SLM implants was significantly lower that of than Nobel-S implants P < 0.001 and higher than that of MA implants. The study demonstrates the capability of SLM implants to integrate with living bone. The SLM technique holds promise as a new dental implant manufacturing technique.
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