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On-Demand Intracellular Delivery of Single Particlesin Single Cells by 3D Hollow Nanoelectrodes

机译:按需按需递送单个颗粒3D空心纳米电极在单细胞中表达

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摘要

Delivery of molecules into intracellular compartments is one of the fundamental requirements in molecular biology. However, the possibility of delivering a precise number of nano-objects with single-particle resolution is still an open challenge. Here we present an electrophoretic platform based on 3D hollow nanoelectrodes to enable delivery of single nanoparticles into single selected cells and monitoring of the single-particle delivery by surface-enhanced Raman scattering (SERS). The gold-coated hollow nanoelectrode capable of confinement and enhancement of electromagnetic fields upon laser illumination can distinguish the SERS signals of a single nanoparticle flowing through the nanoelectrode. Tight wrapping of cell membranes around the nanoelectrodes allows effective membrane electroporation such that single gold nanorods are delivered on demand into a living cell by electrophoresis. The capability of the 3D hollow nanoelectrodes to porate cells and reveal single emitters from the background in continuous flow is promising for the analysis of both intracellular delivery and sampling.
机译:分子进入细胞内区室是分子生物学的基本要求之一。然而,以单粒子分辨率提供精确数量的纳米物体的可能性仍然是一个开放的挑战。在这里,我们介绍了一种基于3D空心纳米电极的电泳平台,能够将单个纳米颗粒输送到单个选定的细胞中,并通过表面增强拉曼散射(SERS)监控单个颗粒的输送。能够在激光照射时限制和增强电磁场的镀金空心纳米电极可以区分流过纳米电极的单个纳米颗粒的SERS信号。围绕纳米电极的细胞膜紧密包裹可以有效地进行膜电穿孔,从而根据需要将单个金纳米棒通过电泳传递到活细胞中。 3D中空纳米电极能够在连续流动中从背景中穿透细胞并揭示单个发射体的能力,有望用于分析细胞内传递和采样。

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