School of Chemical Engineering, Dalian University of Technology, Dalian 116024, Liaoning, P. R. China.
ACS Biomater Sci Eng. 2021 Jun 14;7(6):2268-2278. doi: 10.1021/acsbiomaterials.0c01659. Epub 2021 May 20.
Titanium is extensively employed in modern medicines as orthopedic and dental implants, but implant failures frequently occur because of bacterial infections. Herein, three types of 3D nanostructured titanium surfaces with nanowire clusters (NWC), nanowire/sheet clusters (NW/SC) and nanosheet clusters (NSC), were fabricated using the low-temperature hydrothermal synthesis under normal pressure, and assessed for the sterilization against two common human pathogens. The results show that the NWC and NSC surfaces merely display good bactericidal activity against , whereas the NW/SC surface represents optimal bactericidal efficiency against both (98.6 ± 1.23%) and (69.82 ± 2.79%). That is attributed to the hybrid geometric nanostructure of NW/SC, i.e., the pyramidal structures of ∼23 nm in tip diameter formed with tall clustered wires, and the sharper sheets of ∼8 nm in thickness in-between these nanopyramids. This nanostructure displays a unique mechano-bactericidal performance via the synergistic effect of capturing the bacteria cells and penetrating the cell membrane. This study proves that the low-temperature hydrothermal synthesized hybrid mechano-bactericidal titanium surfaces provide a promising solution for the construction of bactericidal biomedical implants.
钛在现代医学中被广泛用作骨科和牙科植入物,但由于细菌感染,植入物经常失效。在此,通过常压低温水热合成制备了三种类型的具有纳米线簇(NWC)、纳米线/片簇(NW/SC)和纳米片簇(NSC)的 3D 纳米结构钛表面,并评估了它们对两种常见人类病原体的杀菌作用。结果表明,NWC 和 NSC 表面仅对 显示出良好的杀菌活性,而 NW/SC 表面对 和 均表现出最佳的杀菌效率(98.6±1.23%和 69.82±2.79%)。这归因于 NW/SC 的混合几何纳米结构,即由高簇纳米线形成的约 23nm 尖端直径的金字塔结构,以及这些纳米金字塔之间的约 8nm 厚的更锋利的薄片。这种纳米结构通过捕获细菌细胞和穿透细胞膜的协同作用,显示出独特的机械杀菌性能。本研究证明,低温水热合成的混合机械杀菌钛表面为构建杀菌生物医学植入物提供了一种有前途的解决方案。