Li Xiang, Yang Ying, Shen Hui, Zhou Meng, Huang Bingmin, Cui Lishan, Hao Shijie
College of New Energy and Materials, China University of Petroleum, Beijing 102249, China.
College of Chemical Engineering and Environment, China University of Petroleum, Beijing 102249, China.
Colloids Surf B Biointerfaces. 2025 May;249:114496. doi: 10.1016/j.colsurfb.2025.114496. Epub 2025 Jan 6.
NiTi alloys are an important class of biomaterials with extensive clinical applications such as cardiovascular stents, orthodontic arch-wires, esophageal stents, orthopedic implants and more. However, the long-term implantation of NiTi alloys presents significant challenges due to their susceptibility to wear, corrosion and the excessive release of harmful nickel ions. These factors can severely compromise both the biocompatibility and the overall service life of the implants. To better meet the demands for safety, durability and superior biological performance after implantation, surface modification of NiTi alloys has become a focal point of current research. Based on the fundamental properties of the NiTi alloys and the challenges encountered in their practical applications, this article provides a focused review of recent advances in improving their corrosion resistance, wear resistance, antibacterial properties and biological performance through surface modification and coating techniques. In addition, the paper outlines current research challenges and proposes recommendations for future development directions.
镍钛合金是一类重要的生物材料,具有广泛的临床应用,如心血管支架、正畸弓丝、食管支架、骨科植入物等。然而,镍钛合金的长期植入存在重大挑战,因为它们易磨损、腐蚀,且会过度释放有害的镍离子。这些因素会严重损害植入物的生物相容性和整体使用寿命。为了更好地满足植入后对安全性、耐久性和卓越生物学性能的要求,镍钛合金的表面改性已成为当前研究的重点。基于镍钛合金的基本特性及其实际应用中遇到的挑战,本文重点综述了通过表面改性和涂层技术提高其耐腐蚀性、耐磨性、抗菌性能和生物学性能的最新进展。此外,本文概述了当前的研究挑战,并对未来的发展方向提出了建议。