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Multi-Scale Surface Treatments of Titanium Implants for Rapid Osseointegration: A Review

机译:用于快速骨整合的钛植入物的多尺度表面处理:综述

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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.
机译:本综述的建议是总结钛植入物的多尺度表面技术的进步,以加速骨整合过程。回顾了用于改善植入物表面的润湿性,粗糙度和生物活性的几种多缩放方法。另外,宏观测量方法(例如,3D打印(3DP)和激光表面纹理(LST)),微刻度(例如,砂喷砂,蚀刻和砂喷砂,大砂砾和酸 - 还讨论了蚀刻(SLA))和纳米级方法(例如,等离子体喷涂和阳极氧化),已知这些表面在临床应用中具有良好的性质。具有有机和非有机载荷的功能化涂料表明了现代生物技术未来的良好前景。然而,由于成本高,临床验证低,因此到目前为止,这些部分涂层没有商业上可商购。为了对功能植入表面的效率进行深入探索,需要大量体外和体内调查。前瞻性钛植入物应具有最佳的化学,仿生特征和标准化的现代拓扑,以实现快速的骨整合。

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