论文标题

无标记的等离激子检测不受限制的纳米尺寸的布朗颗粒

Label-free Plasmonic Detection of Untethered Nanometer-sized Brownian Particles

论文作者

Baaske, Martin Dieter, Neu, Peter Sebastian, Orrit, Michel

论文摘要

对单个纳米尺寸分析物,病毒颗粒和蛋白质分子的光学检测有很大的希望,可以理解和控制生物样品和医疗保健应用。由于荧光标签对检测带宽施加了限制,并且需要长时间的侵入性过程,因此非常需要无标签的光学技术。最近出现了强大的无标签光学方法,例如干涉散射显微镜,基于等离子体纳米颗粒的测定和基于微腔的测定法。尽管高度敏感,但到目前为止,这些方法仅限于超过微秒的整合时间。这通常施加了在这些时期通过特定的分子系,非特异性吸附或限制排列阻碍分析物运动的要求。在这里,我们引入了一种能够将通常用作光稳定标签的金纳米棒转化为高度局部的高速探针的光学技术。我们的方法提供了低于微秒的时间分辨率。这减轻了对分子系的需求,使我们能够在横穿亚曲线的接触量的布朗运动中检测到单个不受束力的纳米颗粒。我们的方法为研究高度局部和高度动态的纳米级系统开辟了一个新的门户,并构成了迈向单个不受限制蛋白的无标签识别的第一步。

Optical detection of individual nanometer-sized analytes, virus particles, and protein molecules holds great promise for understanding and control of biological samples and healthcare applications. As fluorescent labels impose restrictions on detection bandwidth and require lengthy and invasive processes, label-free optical techniques are highly desirable. Powerful label-free optical methods have recently emerged, such as interferometric scattering microscopy, plasmonic nanoparticle-based assays and microcavity-based assays. Although highly sensitive, these methods are so far restricted to integration times in excess of microseconds. This often imposes a requirement to impede analyte motion during these periods via specific molecular tethers, unspecific adsorption or confining arrangements. Here we introduce an optical technique capable of transforming gold nanorods commonly used as photostable labels into highly localized high-speed probes. Our method provides a time resolution well below microseconds. This mitigates the requirement for molecular tethers and allows us to detect single untethered nanoparticles in Brownian motion traversing sub atto-liter sensing volumes. Our method opens a novel gateway for the investigation of highly localized and highly dynamic nanoscale systems and constitutes a first step towards the label-free recognition of single untethered proteins.

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