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仿生抗菌表面,用于骨科和牙科植入物。

Bioinspired antibacterial surface for orthopedic and dental implants.

机构信息

Department of Chemistry, Hampden-Sydney College, Sydney, Virginia, USA.

Department of Biology, Hampden-Sydney College, Sydney, Virginia, USA.

出版信息

J Biomed Mater Res B Appl Biomater. 2021 Jul;109(7):973-981. doi: 10.1002/jbm.b.34762. Epub 2020 Nov 25.

Abstract

Bacterial infections still present a significant concern in orthopedic and dental implant failure. Previous investigations have focused on modifying the surface texture, roughness, or coating implants with antibiotics to provide enhanced anti-bacterial properties. However, they have demonstrated limited success. In this study, we attempted to engineer the titanium (Ti) alloy surface biomimetically at the nano level using alkaline hydrothermal treatment (AHT) inspired by cicada's wing structure. Two modified surfaces of Ti plates were developed using 4 and 8-hr AHT at 230°C. We found that the control plates showed a relatively smooth surface, with little artifacts on the surface. In contrast, 4-hr AHT and 8-hr AHT plates showed nano-spikes of heights around 250-350 and 100-1,250 nm, respectively, that were distributed randomly all over the surface. We found a statistically significant (p < 0.05) number of non-viable cells for both S. aureus and P. aeruginosa bacterial strains when incubated for 1 hr in a dynamic environment when compared with the control group. The 8-hr AHT groups killed 38.97% more S. aureus in static culture and 11.27% in a dynamic environment than the 4-hr AHT. Overall, the findings indicate that the nanostructures generated on titanium by the AHT showed significant bactericidal properties. We, therefore, recommend conducting alkaline hydrothermal treatment on the surfaces for future orthopedic and dental metallic implants.

摘要

细菌感染仍然是骨科和牙科植入物失败的一个重大问题。先前的研究集中在通过改变表面纹理、粗糙度或用抗生素涂覆植入物来提供增强的抗菌性能。然而,它们的效果有限。在这项研究中,我们试图模仿蝉翼结构,通过碱性水热处理(AHT)在纳米级水平上对钛(Ti)合金表面进行仿生工程改造。使用在 230°C 下进行的 4 和 8 小时 AHT,开发了两种 Ti 板的改性表面。我们发现对照板显示出相对光滑的表面,表面上几乎没有伪影。相比之下,4 小时 AHT 和 8 小时 AHT 板显示出高度约为 250-350 和 100-1250nm 的纳米尖峰,这些尖峰随机分布在整个表面上。与对照组相比,当在动态环境中孵育 1 小时时,我们发现两种金黄色葡萄球菌和铜绿假单胞菌细菌株的非存活细胞数量都有统计学意义(p<0.05)。在静态培养中,8 小时 AHT 组比 4 小时 AHT 组杀死的金黄色葡萄球菌多 38.97%,在动态环境中多 11.27%。总的来说,这些发现表明 AHT 在钛上产生的纳米结构具有显著的杀菌性能。因此,我们建议对未来的骨科和牙科金属植入物进行碱性水热处理。

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