Antibacterial properties and biological activity of 3D-printed titanium alloy implants with a near-infrared photoresponsive surface

生物相容性 材料科学 光热效应 涂层 钛合金 模拟体液 辐照 光热治疗 核化学 表面改性 抗菌活性 化学工程 合金 复合材料 纳米技术 冶金 化学 扫描电子显微镜 细菌 工程类 物理 核物理学 生物 遗传学
作者
Ming-Kang Wang,Fan Xiao,Xu Xu
出处
期刊:International Journal of Implant Dentistry [Springer Science+Business Media]
卷期号:11 (1)
标识
DOI:10.1186/s40729-024-00587-2
摘要

Abstract Purpose SLM 3D printing technology is one of the most widely used implant-making technologies. However, the surfaces of the implants are relatively rough, and bacteria can easily adhere to them; increasing the risk of postoperative infection. Therefore, we prepared a near-infrared photoresponsive nano-TiO 2 coating on the surface of an SLM 3D-printed titanium alloy sheet (Ti6Al4V) via a hydrothermal method to evaluate its antibacterial properties and biocompatibility. Methods Using SLM technology, titanium alloy sheets were 3D printed, and a nano-TiO 2 coating was prepared on its surface via a hydrothermal method to obtain Ti6Al4V@TiO 2 . The surface morphology, physicochemical properties, and photothermal response of the samples were observed. The Ti6Al4V groups and Ti6Al4V@TiO 2 groups were cocultured with S. aureus and E. coli and exposed to 808 nm NIR light (0.8 W/cm 2 ) and viable plate count experiments and live/dead bacterial staining were used to assess their in vitro antibacterial properties. Results The hydrophilicity of the nano-TiO 2 coating sample significantly improved and the sample exhibited an excellent photothermal response. The temperature reached 46.9± 0.32 °C after 15 min of irradiation with 808 nm NIR light (0.8 W/cm 2 ). The Ti6Al4V group showed significant antibacterial properties after irradiation with 808 nm NIR light, and the Ti6Al4V@TiO 2 group also had partial antibacterial ability without irradiation. After irradiation with 808 nm NIR light, the Ti6Al4V@TiO 2 group showed the strongest antibacterial properties, reaching 90.11± 2.20% and 90.60± 1.08% against S. aureus and E. coli , respectively. Conclusions A nano-TiO 2 coating prepared via a hydrothermal method produced synergistic antibacterial effects after NIR light irradiation.
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