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金纳米颗粒填充微盘用于细胞的多重拉曼标记。

Gold nanoparticle-packed microdisks for multiplex Raman labelling of cells.

机构信息

Department of Chemical and Biomedical Engineering, FAMU-FSU College of Engineering, Florida State University, 2525 Pottsdamer Street, Tallahassee, Florida 32310, USA.

出版信息

Nanoscale. 2014 Aug 7;6(15):8762-8. doi: 10.1039/c4nr01851f.

Abstract

Micro/nanoparticles containing densely packed gold nanoparticles (AuNPs) possess unique properties potentially useful for various biomedical applications. The micro/nanoparticles are conventionally produced by the bottom-up methods, which have limited capability for controlling the particle size, shape and structure. This article reports development of a top-down method that integrates layer-by-layer assembly and microcontact printing to fabricate disk-shaped microparticles named microdisks composed of densely packed AuNPs. This method allows precise control of not only the size, shape and structure of the microdisks but also the amount of the AuNPs in the microdisks. The microdisks can be loaded with different Raman reporters to generate characteristic surface-enhanced Raman scattering spectra under the near infrared excitation over a centimetre-scale lens-sample distance. Moreover, the microdisks can be attached to single live cells. This microdisk platform holds potential for multiplex Raman labelling of therapeutic cells for in vivo tracking of the cells.

摘要

含有密集金纳米颗粒 (AuNPs) 的微/纳米颗粒具有独特的性质,可能对各种生物医学应用有用。这些微/纳米颗粒通常通过自下而上的方法制备,该方法对控制颗粒的大小、形状和结构的能力有限。本文报道了一种自上而下的方法,该方法将层层组装和微接触印刷相结合,制造出由密集 AuNPs 组成的圆盘状微颗粒,称为微盘。该方法不仅可以精确控制微盘的大小、形状和结构,还可以控制微盘中的 AuNP 数量。微盘可以装载不同的拉曼报告分子,在厘米级透镜-样品距离下的近红外激发下产生特征的表面增强拉曼散射光谱。此外,微盘可以附着在单个活细胞上。该微盘平台具有对治疗细胞进行多重拉曼标记的潜力,可用于体内追踪细胞。

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