Robust Discrimination between Single Gold Nanoparticles and Their Dimers in Aqueous Solution for Ultrasensitive Homogeneous Bioassays

J. Kobayashi, Y. Takeshita, N. Mizuno, Keio Esashika, T. Saiki
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引用次数: 2

Abstract

We propose a robust method to distinguish isolated single gold nanoparticles (AuNP monomers) and their dimers under Brownian motion, a key for ultrasensitive homogeneous bioassays, including AuNP sandwich assays. To detect dimers and distinguish them from a larger number of monomers in aqueous solution, single-particle polarization microscopy was performed. For the accurate detection of individual particles, the optical anisotropy and rotational diffusion time are measured because a dimer is much more anisotropic than the nearly spherical monomer and the rotational diffusion time of a dimer is four times that of a monomer. By employing an autocorrelation analysis, we defined a measure of distinguishing that simultaneously enables high detection probability and low error probability. The detection platform offers homogeneous DNA hybridization assays and immunoassays at the subpicomolar level.
超灵敏均质生物测定中单金纳米颗粒及其二聚体在水溶液中的强大区分
我们提出了一种强大的方法来区分分离的单金纳米颗粒(AuNP单体)及其在布朗运动下的二聚体,这是超灵敏均匀生物测定的关键,包括AuNP三明治测定。为了检测二聚体并将其与水溶液中的大量单体区分开来,采用了单粒子偏振显微镜。由于二聚体的光学各向异性比近球形单体强得多,其旋转扩散时间是单体的四倍,因此为了精确地检测单个粒子,测量了光学各向异性和旋转扩散时间。通过采用自相关分析,我们定义了一种同时实现高检测概率和低错误概率的区分度量。检测平台提供均匀的DNA杂交分析和亚皮摩尔水平的免疫分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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