Department of Biomechanical Engineering, Faculty of Mechanical, Maritime, and Materials Engineering, Delft University of Technology (TU Delft), Mekelweg 2, Delft 2628CD, The Netherlands.
Nanotechnology. 2019 May 17;30(20):20LT01. doi: 10.1088/1361-6528/ab0a3a. Epub 2019 Feb 25.
Recent discoveries have shown that nanopatterns with feature sizes ≤100 nm could direct stem cell fate or kill bacteria. These effects could be used to develop orthopedic implants with improved osseointegration and decreased chance of implant-associated infections. The quest for osteogenic and bactericidal nanopatterns is ongoing but no controlled nanopatterns with dual osteogenic and bactericidal functionalities have been found yet. In this study, electron beam induced deposition (EBID) was used for accurate and reproducible decoration of silicon surfaces with four different types of nanopatterns. The features used in the first two nanopatterns (OST1 and OST2) were derived from osteogenic nanopatterns known to induce osteogenic differentiation of stem cells in the absence of osteogenic supplements. Two modifications of these nanopatterns were also included (OST2-SQ, OST2-H90) to study the effects of controlled disorder and lower nanopillar heights. An E. coli K-12 strain was used for probing the response of bacteria to the nanopatterns. Three nanopatterns (OST2, OST2-SQ, and OST2-H90) exhibited clear bactericidal behavior as evidenced by severely damaged cells and disrupted formation of extracellular polymeric substance. These findings indicate that controlled nanopatterns with features derived from osteogenic ones can have bactericidal activity and that EBID represents an enabling nanotechnology to achieve (multi)functional nanopatterns for bone implants.
最近的发现表明,特征尺寸≤100nm 的纳米图案可以指导干细胞的命运或杀死细菌。这些效应可用于开发具有改善的骨整合和降低植入物相关感染机会的骨科植入物。对成骨和杀菌纳米图案的探索仍在继续,但尚未发现具有双重成骨和杀菌功能的可控纳米图案。在这项研究中,电子束诱导沉积(EBID)用于在硅表面上精确且可重复地装饰四种不同类型的纳米图案。前两种纳米图案(OST1 和 OST2)的特征源自已知可在没有成骨补充剂的情况下诱导干细胞成骨分化的成骨纳米图案。这两种纳米图案的两个修改版(OST2-SQ 和 OST2-H90)也被包括在内,以研究受控无序和较低纳米柱高度的影响。使用大肠杆菌 K-12 菌株来探测细菌对纳米图案的反应。三种纳米图案(OST2、OST2-SQ 和 OST2-H90)表现出明显的杀菌行为,这表现为细胞严重受损和细胞外聚合物的形成受到破坏。这些发现表明,源自成骨的特征的可控纳米图案可以具有杀菌活性,并且 EBID 代表了一种实现(多)功能骨植入物纳米图案的使能纳米技术。