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Comparative quantification of nucleic acids using single-molecule detection and molecular beacons

机译:使用单分子检测和分子信标进行核酸的比较定量

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摘要

This paper reports a highly sensitive homogenous method for comparative quantification of nucleic acids based on single-molecule detection (SMD) and molecular beacons (MBs). Two different color MBs were used to perform a separation-free comparative hybridization assay for simultaneous quantification of both target and control strands. A fluorescent burst, emitted from a single hybrid when it passes through a minuscule laser-focused region, is detected with high signal-to-noise ratio (SNR) by using single-molecule fluorescence spectroscopy. Targets are quantified via counting of discrete fluorescent bursts. The high SNR achieved in both detection channels overcame the complications of fluorescent variability usually observed in dual-color ensemble measurements. In comparison with the conventional ensemble methods, this method improved the detection limit by 3 orders of magnitude and reduced the probe consumption by 6 orders of magnitude, facilitating a highly sensitive approach for comparative quantification of nucleic acids and offering great promise for genomic quantification without amplification.
机译:本文报道了一种基于单分子检测(SMD)和分子信标(MBs)的核酸比较定量的高灵敏度均质方法。使用两种不同的颜色MB进行无分离的比较杂交测定,以同时定量测定目标链和对照链。通过使用单分子荧光光谱,可以以高信噪比(SNR)检测单个杂种通过微小激光聚焦区域时发出的荧光猝发。通过对离散的荧光猝发计数来量化目标。在两个检测通道中获得的高SNR克服了通常在双色系综测量中观察到的荧光可变性带来的复杂性。与传统的集成方法相比,该方法将检测限提高了3个数量级,并将探针消耗降低了6个数量级,为核酸的比较定量提供了一种高度灵敏的方法,并为无需扩增的基因组定量提供了广阔的前景。

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