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铜钛氧化物纳米管的抗菌活性及细胞相容性

Antibacterial activity and cytocompatibility of Cu-Ti-O nanotubes.

作者信息

Hang Ruiqiang, Gao Ang, Huang Xiaobo, Wang Xiaoguang, Zhang Xiangyu, Qin Lin, Tang Bin

机构信息

Research Institute of Surface Engineering, Taiyuan University of Technology, 030024, Taiyuan, China.

出版信息

J Biomed Mater Res A. 2014 Jun;102(6):1850-8. doi: 10.1002/jbm.a.34847. Epub 2013 Jul 3.

Abstract

TiO2 nanotubes (NTs) have favorable biological properties, but the poor antibacterial activity limits their application especially in orthopedics fields. In this article, Cu-Ti-O nanotubes with different Cu contents are fabricated on sputtered TiCu films. Scanning electron microscopy reveals the NTs can be formed on sputtered TiCu films when the Cu content is less than 14.6 at %. X-ray photoelectron spectroscopy results indicate the NTs are consist of CuO mixed with TiO2 and the Cu content in NTs decreases dramatically compared with that in TiCu films. Biological experiments show that although these NTs have poor release antibacterial activity, their contact antibacterial activity has proven to be excellent, indicating the NT surface can effectively inhibit biomaterial-associated infections. The cytocompatibility of the NTs is closely related to the Cu content and when its content is relatively low (1.01 at %), there is no appreciable cytotoxicity. So Cu-Ti-O NTs with 1 at % Cu may be suitable to achieve proper antibacterial activity and desired cytocompatibility. The Cu-Ti-O NTs integrate the favorable antibacterial activity of Cu and excellent biological properties of TiO2 NTs therefore have potential applications in orthopedics, dentistry, and other biomedical fields.

摘要

二氧化钛纳米管(NTs)具有良好的生物学特性,但较差的抗菌活性限制了它们的应用,尤其是在骨科领域。在本文中,在溅射的TiCu薄膜上制备了具有不同铜含量的Cu-Ti-O纳米管。扫描电子显微镜显示,当铜含量小于14.6原子百分比时,NTs可以在溅射的TiCu薄膜上形成。X射线光电子能谱结果表明,NTs由与TiO2混合的CuO组成,并且NTs中的铜含量与TiCu薄膜相比显著降低。生物学实验表明,尽管这些NTs的释放抗菌活性较差,但其接触抗菌活性已被证明是优异的,这表明NTs表面可以有效抑制生物材料相关感染。NTs的细胞相容性与铜含量密切相关,当其含量相对较低(1.01原子百分比)时,没有明显的细胞毒性。因此,含1原子百分比铜的Cu-Ti-O NTs可能适合实现适当的抗菌活性和所需的细胞相容性。Cu-Ti-O NTs兼具铜良好的抗菌活性和TiO2 NTs优异的生物学特性,因此在骨科、牙科和其他生物医学领域具有潜在应用。

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