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Engineering vertically aligned semiconductor nanowire arrays for applications in the life sciences

机译:设计垂直对齐的半导体纳米线阵列,用于生命科学

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摘要

The interface between nanotechnology and life sciences is one of the fastest-growing and most promising areas of material science. This review is following a recent shift toward the engineering of vertically aligned (VA) semiconductor nanowire (NW) arrays for the development of next-generation biodevices. The focus of the review is on porous and non-porous silicon and other semiconductor NWs. We will first cover key aspects of VA-NW array fabrication and chemical functionalization. Then we will concentrate on the interactions between VA-NW elements and mammalian cells. Specifically, we assess the ability of these nanostructures to influence cellular adhesion, morphology, migration, proliferation, and differentiation. We then address the use of vertically aligned NWs as tools for the delivery of biomolecular cargo into mammalian cells. The final sections of the review will be dedicated to examples of vertically aligned silicon nanowire (VA-SiNW) arrays used in drug delivery and for biosensing.
机译:纳米技术与生命科学之间的接口是材料科学发展最快,最有前途的领域之一。这项审查是在最近转向垂直排列(VA)半导体纳米线(NW)阵列的工程设计以开发下一代生物设备的研究之后。审查的重点是多孔和无孔硅以及其他半导体NW。我们将首先介绍VA-NW阵列制造和化学功能化的关键方面。然后,我们将专注于VA-NW元件与哺乳动物细胞之间的相互作用。具体来说,我们评估这些纳米结构影响细胞粘附,形态,迁移,增殖和分化的能力。然后,我们讨论使用垂直排列的NW作为将生物分子货物运送到哺乳动物细胞中的工具。审查的最后部分将专门介绍用于药物输送和生物传感的垂直排列的硅纳米线(VA-SiNW)阵列的示例。

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