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基于微转发器的免疫和 DNA 杂交分析中银纳米粒子增强的荧光。

Silver nanoparticle-enhanced fluorescence in microtransponder-based immuno- and DNA hybridization assays.

机构信息

PharmaSeq, Inc, 11 Deer Park Dr., Suite 104, Monmouth Junction, NJ 08852, USA.

出版信息

Anal Bioanal Chem. 2010 Nov;398(5):1993-2001. doi: 10.1007/s00216-010-4108-7. Epub 2010 Aug 27.

Abstract

The aim of this study is to improve assay sensitivity in common solid-phase bioassay configurations as the result of using silver nanoparticles. The solid phase was provided by numerically indexed, silicon-based electronic chips, microtransponders (p-Chips) that have previously been used in multiplexed assays. Assay configurations investigated included an ELISA-type immunoassay and a DNA hybridization assay. The surface of p-Chips was derivatized with the silver island film (SIF) and a polymer, and then characterized with AFM and SEM. Silver nanoparticle sizes were in the range of 100 to 200 nm. Four fluorophores were tested for fluorescence enhancement; namely, green fluorescent protein, phycoerythrin, Cy3 and Alexa Fluor 555. We consistently observed significant fluorescence enhancement and sensitivity improvement in the p-Chip-based assays: the sensitivity in the cytokine IL-6 immunoassay was 4.3 pg/ml, which represented a 25-fold increase over the method not involving a SIF; and 50 pM in the hybridization assay, a 38-fold increase. The greatest enhancement was obtained for p-Chip surfaces derivatized first with the polymer and then coated with SIF. In conclusion, we show that the SIF-p-Chip-based platform is a highly sensitive method to quantify low-abundance biomolecules in nucleic acid-based assays and immunoassays.

摘要

本研究旨在通过使用银纳米粒子提高常见固相生物测定配置中的分析灵敏度。固相由数字索引的硅基电子芯片,即微转发器(p-Chips)提供,该芯片先前已用于多重分析。所研究的分析配置包括 ELISA 型免疫测定和 DNA 杂交分析。p-Chips 的表面用银岛膜(SIF)和聚合物衍生化,然后用 AFM 和 SEM 进行表征。银纳米粒子的尺寸在 100 到 200nm 之间。我们测试了四种荧光团以增强荧光:即绿色荧光蛋白、藻红蛋白、Cy3 和 Alexa Fluor 555。我们一致观察到基于 p-Chip 的分析中的显著荧光增强和灵敏度提高:细胞因子 IL-6 免疫测定的灵敏度为 4.3pg/ml,比不涉及 SIF 的方法提高了 25 倍;杂交分析中的灵敏度为 50pM,提高了 38 倍。用聚合物首先衍生化然后用 SIF 涂覆的 p-Chip 表面获得最大的增强。总之,我们表明,SIF-p-Chip 基平台是一种高度敏感的方法,可用于定量核酸分析和免疫测定中低丰度生物分子。

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