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微流控纳米等离子体功能化器件用于多重 DNA 检测。

Microfluidic nanoplasmonic-enabled device for multiplex DNA detection.

机构信息

Department of Biomedical Engineering, University of Rochester, Rochester, NY 14627, USA.

出版信息

Lab Chip. 2012 Mar 21;12(6):1089-93. doi: 10.1039/c2lc21114a. Epub 2012 Feb 2.

Abstract

We describe a rapid, quantitative, multiplex, self-labelled, and real-time DNA biosensor employing Ag nanoparticle-bound DNA hairpin probes immobilized in a microfluidic channel. Capture of complementary target DNAs by the microarrayed DNA hairpin probes results in a positive fluorescence signal via a conformational change of the probe molecules, signalling the presence of target DNAs. The device's capability for quantitative analyses was evaluated and a detection time as low as 6 min (with a target flow rate of 0.5 μl min(-1)) was sufficient to generate significant detection signals. This detection time translates to merely 3 μl of target solution consumption. An unoptimized sensitivity of 500 pM was demonstrated for this device.

摘要

我们描述了一种快速、定量、多重、自标记和实时 DNA 生物传感器,该传感器采用固定在微流道中的 Ag 纳米颗粒结合的 DNA 发夹探针。通过探针分子的构象变化,微阵列 DNA 发夹探针捕获互补的靶 DNA 会产生阳性荧光信号,从而表明靶 DNA 的存在。评估了该装置进行定量分析的能力,结果表明,检测时间低至 6 分钟(目标流速为 0.5 μl min(-1))即可产生显著的检测信号。这相当于仅消耗 3 μl 的目标溶液。该装置的未优化灵敏度为 500 pM。

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