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基于双重增强荧光偏振的核酸超灵敏检测。

Ultrasensitive detection of nucleic acids based on dually enhanced fluorescence polarization.

机构信息

State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University, Beijing, 100084, China.

出版信息

Analyst. 2018 Jul 23;143(15):3560-3569. doi: 10.1039/c8an00952j.

Abstract

Highly sensitive detection of nucleic acids is crucial for genomics, transcriptomics, and heterogeneity studies. Conventional fluorescence polarization and intensity-based assays for DNA/RNA measurements often suffer from a poor limit of detection and a long test period. A versatile nanoscale probe based on a competitive displacement assay and fluorescence polarization was proposed for the simple, fast and sensitive detection of nucleic acids. For the probe, a partially complementary double-stranded DNA (dsDNA) was used as a connector of gold nanoparticles (AuNPs) and Alexa fluor 488 dyes (Alexa488), leading to the nanometal surface energy transfer (NSET) between Alexa488 and AuNPs. Meanwhile, suppression of the fluorescence intensity caused a decrease in the effective concentration of the Alexa488, and an increase in the volume or mass prolonged the rotational relaxation time of the Alexa488, both of which increased polarization of the Alexa488 in an aqueous solution. After competitive displacement between the probe and the target strand, the decrease in the volume or mass of the Alexa488 and fluorescence recovery resulted in the decline of the fluorescence polarization of the Alexa488, which could be used to sensitively detect the target concentration. After optimization, the fluorescence polarization-based method achieved a pM level detection of single-stranded nucleic acids within 30 minutes.

摘要

核酸的高灵敏度检测对于基因组学、转录组学和异质性研究至关重要。传统的基于荧光偏振和强度的 DNA/RNA 测量方法往往存在检测限低和测试周期长的问题。本文提出了一种基于竞争置换分析和荧光偏振的多功能纳米探针,用于简单、快速和灵敏地检测核酸。对于该探针,使用部分互补的双链 DNA(dsDNA)作为金纳米粒子(AuNPs)和 Alexa fluor 488 染料(Alexa488)的连接物,导致 Alexa488 和 AuNPs 之间发生纳米金属表面能量转移(NSET)。同时,荧光强度的抑制导致 Alexa488 的有效浓度降低,而体积或质量的增加延长了 Alexa488 的旋转弛豫时间,这两者都增加了 Alexa488 在水溶液中的偏振。在探针和目标链之间进行竞争置换后,Alexa488 的体积或质量减少以及荧光恢复导致 Alexa488 的荧光偏振下降,可用于灵敏检测目标浓度。经过优化,基于荧光偏振的方法在 30 分钟内实现了对单链核酸的 pM 级检测。

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