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具有近红外光响应表面的3D打印钛合金植入物的抗菌性能和生物活性

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

作者信息

Wang Ming-Kang, Xiao Fan, Xu Xu

机构信息

School of Stomatology, Zhejiang Chinese Medical University, Hangzhou, 310053, People's Republic of China.

College of Mechanical Engineering, Zhejiang University of Technology, 310023, Zhejiang, People's Republic of China.

出版信息

Int J Implant Dent. 2025 Jan 8;11(1):3. doi: 10.1186/s40729-024-00587-2.

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 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 coating was prepared on its surface via a hydrothermal method to obtain Ti6Al4V@TiO. The surface morphology, physicochemical properties, and photothermal response of the samples were observed. The Ti6Al4V groups and Ti6Al4V@TiO groups were cocultured with S. aureus and E. coli and exposed to 808 nm NIR light (0.8 W/cm) 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 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). The Ti6Al4V group showed significant antibacterial properties after irradiation with 808 nm NIR light, and the Ti6Al4V@TiO group also had partial antibacterial ability without irradiation. After irradiation with 808 nm NIR light, the Ti6Al4V@TiO 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 coating prepared via a hydrothermal method produced synergistic antibacterial effects after NIR light irradiation.

摘要

目的

选择性激光熔化(SLM)3D打印技术是应用最广泛的植入物制造技术之一。然而,植入物表面相对粗糙,细菌容易附着在上面,增加了术后感染的风险。因此,我们通过水热法在SLM 3D打印钛合金片(Ti6Al4V)表面制备了近红外光响应纳米TiO涂层,以评估其抗菌性能和生物相容性。

方法

采用SLM技术3D打印钛合金片,并通过水热法在其表面制备纳米TiO涂层,得到Ti6Al4V@TiO。观察样品的表面形貌、理化性质和光热响应。将Ti6Al4V组和Ti6Al4V@TiO组与金黄色葡萄球菌和大肠杆菌共培养,并用808 nm近红外光(0.8 W/cm)照射,通过活菌平板计数实验和死活细菌染色评估其体外抗菌性能。

结果

纳米TiO涂层样品的亲水性显著提高,且样品表现出优异的光热响应。用808 nm近红外光(0.8 W/cm)照射15分钟后,温度达到46.9±0.32℃。Ti6Al4V组在808 nm近红外光照射后显示出显著的抗菌性能,Ti6Al4V@TiO组在未照射时也具有部分抗菌能力。在808 nm近红外光照射后,Ti6Al4V@TiO组表现出最强的抗菌性能,对金黄色葡萄球菌和大肠杆菌的抗菌率分别达到90.11±2.20%和90.60±1.08%。

结论

通过水热法制备的纳米TiO涂层在近红外光照射后产生协同抗菌效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7d2/11711858/e1420afbdd5d/40729_2024_587_Figa_HTML.jpg

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