Kafshgari Morteza Hasanzadeh, Voelcker Nicolas H, Harding Frances J
ARC Centre of Excellence in Convergent Bio-Nano Science & Technology, Mawson Institute, University of South Australia, GPO Box 2471, Adelaide, SA, 5001, Australia.
Nanomedicine (Lond). 2015;10(16):2553-71. doi: 10.2217/nnm.15.91. Epub 2015 Aug 21.
Zero-valent, or elemental, silicon nanostructures exhibit a number of properties that render them attractive for applications in nanomedicine. These materials hold significant promise for improving existing diagnostic and therapeutic techniques. This review summarizes some of the essential aspects of the fabrication techniques used to generate these fascinating nanostructures, comparing their material properties and suitability for biomedical applications. We examine the literature in regards to toxicity, biocompatibility and biodistribution of silicon nanoparticles, nanowires and nanotubes, with an emphasis on surface modification and its influence on cell adhesion and endocytosis. In the final part of this review, our attention is focused on current applications of the fabricated silicon nanostructures in nanomedicine, specifically examining drug and gene delivery, bioimaging and biosensing.
零价或元素硅纳米结构具有许多特性,使其在纳米医学应用中具有吸引力。这些材料在改进现有诊断和治疗技术方面具有巨大潜力。本综述总结了用于生成这些迷人纳米结构的制造技术的一些基本方面,比较了它们的材料特性以及对生物医学应用的适用性。我们研究了关于硅纳米颗粒、纳米线和纳米管的毒性、生物相容性和生物分布的文献,重点关注表面修饰及其对细胞粘附和内吞作用的影响。在本综述的最后部分,我们将注意力集中在制造的硅纳米结构在纳米医学中的当前应用,特别是研究药物和基因递送、生物成像和生物传感。