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钛纳米结构处理增强植入式骨科和牙科设备的生物活性。

Titanium nanofeaturing for enhanced bioactivity of implanted orthopedic and dental devices.

机构信息

School of Oral & Dental Science, University of Bristol, Bristol, UK.

出版信息

Nanomedicine (Lond). 2013 Jan;8(1):89-104. doi: 10.2217/nnm.12.177.

Abstract

Titanium (Ti) is used as a load-bearing material in the production of orthopedic devices. The clinical efficacy of these implants could be greatly enhanced by the addition of nanofeatures that would improve the bioactivity of the implants, in order to promote in situ osteo-induction and -conduction of the patient's stem and osteoprogenitor cells, and to enhance osseointegration between the implant and the surrounding bone. Nanofeaturing of Ti is also currently being applied as a tool for the biofunctionalization of commercially available dental implants. In this review, we discuss the different nanofabrication strategies that are available to generate nanofeatures in Ti and the cellular response to the resulting nanofeatures. In vitro research, in vivo studies and clinical trials are considered, and we conclude with a perspective about the future potential for use of nanotopographical features in a therapeutic setting.

摘要

钛(Ti)被用作生产骨科设备的承重材料。通过添加纳米特征,可以极大地提高这些植入物的生物活性,从而促进患者干细胞和前体细胞的原位诱导和传导,并增强植入物与周围骨骼之间的骨整合,从而提高这些植入物的临床疗效。纳米特征化目前也被用作商业上可用的牙科植入物的生物功能化的工具。在这篇综述中,我们讨论了可用于在 Ti 中生成纳米特征的不同纳米制造策略,以及细胞对由此产生的纳米特征的反应。我们考虑了体外研究、体内研究和临床试验,并对纳米形貌特征在治疗环境中的未来应用潜力进行了展望。

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