骨整合
材料科学
钛
润湿
表面改性
纳米技术
表面粗糙度
阳极氧化
植入
表面光洁度
生物医学工程
钛合金
蚀刻(微加工)
复合材料
冶金
化学工程
工程类
外科
医学
铝
图层(电子)
合金
作者
Qingge Wang,Peng Zhou,Shifeng Liu,Shokouh Attarilar,L.W. Ma,Yinsheng Zhong,Liqiang Wang
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2020-06-26
卷期号:10 (6): 1244-1244
被引量:186
摘要
The propose of this review was to summarize the advances in multi-scale surface technology of titanium implants to accelerate the osseointegration process. The several multi-scaled methods used for improving wettability, roughness, and bioactivity of implant surfaces are reviewed. In addition, macro-scale methods (e.g., 3D printing (3DP) and laser surface texturing (LST)), micro-scale (e.g., grit-blasting, acid-etching, and Sand-blasted, Large-grit, and Acid-etching (SLA)) and nano-scale methods (e.g., plasma-spraying and anodization) are also discussed, and these surfaces are known to have favorable properties in clinical applications. Functionalized coatings with organic and non-organic loadings suggest good prospects for the future of modern biotechnology. Nevertheless, because of high cost and low clinical validation, these partial coatings have not been commercially available so far. A large number of in vitro and in vivo investigations are necessary in order to obtain in-depth exploration about the efficiency of functional implant surfaces. The prospective titanium implants should possess the optimum chemistry, bionic characteristics, and standardized modern topographies to achieve rapid osseointegration.
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