Controlled release behaviour and antibacterial effects of antibiotic-loaded titania nanotubes

材料科学 纳米管 阳极氧化 壳聚糖 纳米技术 抗菌活性 药物输送 吸附 控制释放 庆大霉素 化学 抗生素 化学工程 细菌 碳纳米管 复合材料 微生物学 有机化学 工程类 生物 遗传学
作者
Wenchao Feng,Zhen Geng,Zhaoyang Li,Zhenduo Cui,Shengli Zhu,Yanqin Liang,Yunde Liu,Renfeng Wang,Xianjin Yang
出处
期刊:Materials Science and Engineering: C [Elsevier]
卷期号:62: 105-112 被引量:94
标识
DOI:10.1016/j.msec.2016.01.046
摘要

Bacterial infections have been identified as the main cause of orthopaedic implant failure. Owing to their high antibiotic delivery efficiency, titania nanotubes loaded with antibiotics constitute one of the most promising strategies for suppressing bacterial infections. However, it is difficult to control the drug-release behaviour of such nanotubes. Although sealing the nanotubes with a polymer solution provides sustained release effects to a certain extent, it inevitably influences their initial antibacterial activity. This study reports on the controlled release of gentamicin sulphate (GS) from titania nanotube surfaces whereby their initial antibacterial activity remains unaffected. Titania nanotubes were fabricated via electrochemical anodization and loaded with GS through physical adsorption. Experimental results showed that this loading method is feasible and efficient. The GS-loaded titania nanotubes were further covered by a thin film comprising a mixture of GS and chitosan (GSCH). The release kinetics confirmed that the drug release could be controlled by this thin film. Moreover, such a film was shown to not only inhibit initial bacterial adherence owing to its strong antibacterial properties but also enhance cell viability. Thus, GS-loaded titania nanotubes coated with GSCH have considerable potential as biomaterials for preventing initial release and peri-implant infection in the field of orthopaedics.

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