Center for Bio-Molecular Nanotechnology, Istituto Italiano di Tecnologia, Via Barsanti, 1-73010 Arnesano (Lecce), Italy.
Nanomedicine (Lond). 2013 May;8(5):807-21. doi: 10.2217/nnm.13.63.
The understanding of the interactions between biological systems and nanoengineered devices is crucial in several research fields, including tissue engineering, biomechanics, synthetic biology and biomedical devices. This review discusses the current knowledge of the interactions between bacteria and abiotic nanostructured substrates. First, the effects of randomly organized nanoscale topography on bacterial adhesion and persistence are described. Second, the interactions between microorganisms and highly organized/ordered micro- and nano-patterns are discussed. Finally, we survey the most promising approaches for the fabrication of silver polymeric nanocomposites, which have important applications as antimicrobial materials. The advantages, drawbacks and limitations of such nanotechnologies are critically discussed in view of potential future applications.
生物系统与纳米工程设备之间相互作用的理解在多个研究领域至关重要,包括组织工程、生物力学、合成生物学和生物医学设备。本综述讨论了细菌与非生物纳米结构基底之间相互作用的最新知识。首先,描述了随机组织纳米形貌对细菌黏附和持久性的影响。其次,讨论了微生物与高度组织化/有序的微纳图案之间的相互作用。最后,我们调查了制造银聚合物纳米复合材料的最有前途的方法,这些复合材料作为抗菌材料具有重要的应用。鉴于潜在的未来应用,从优缺点和局限性等方面对这些纳米技术进行了批判性讨论。