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Target-assisted FRET signal amplification for ultrasensitive detection of microRNA

机译:MicroRNA的超细敏感检测的目标辅助FRET信号放大

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摘要

MicroRNA (miRNA) is a type of noncoding RNA and plays a crucial role in gene expression regulation. Sensitive identification and detection of miRNA can offer vast information for transcriptome analysis and cancer studies. Conventional PCR and molecular hybridization techniques suffer from low specificity when used for miRNA detection due to the short nucleotide length of miRNA. The extremely low abundance of miRNA in real biological samples also sets higher demands for the sensitivity of detection methods. A novel method based on target-assisted fluorescence resonance energy transfer (FRET) signal amplification was proposed for the simple and ultrasensitive detection of miRNA. A hairpin fluorescence DNA probe could hybridize with target miRNA to expose the hybridization site for the primer. After being duplexed with the nanogold-labeled primer, the fluorescent dye in the DNA probe was quenched via the FRET mechanism. In the presence of a DNA polymerase, primer-activated strand displacement released the miRNA, and then the miRNA strand could recognize and function with another DNA probe. The recycling of target miRNA and a high quenching efficiency of nanogold greatly improved the sensitivity. The detection limit of the method (1.5 fM) was lower than that of the reported strategies using a target cycling reaction, allowing trace detection of miRNA in real samples. By making full use of miRNA sequences, the method could also recognize single-base mismatches and distinguish homologous miRNAs.
机译:microRNA(miRNA)是一种非致rNA,在基因表达调节中起着至关重要的作用。 MiRNA的敏感性鉴定和检测可以提供用于转录组分析和癌症研究的广泛信息。当MiRNA短的核苷酸长度由于miRNA短的核苷酸长度而用于miRNA检测,常规PCR和分子杂交技术患有低特异性。实际生物样品中的极低丰度的miRNA也为检测方法的敏感性设置了更高的要求。提出了一种基于目标辅助荧光共振能量转移(FRET)信号放大的新方法,用于MiRNA的简单和超细敏感检测。发夹荧光DNA探针可以与靶miRNA杂交,以暴露底漆的杂交位点。在用纳米骨标记的引物双工后,通过褶皱机构淬灭DNA探针中的荧光染料。在DNA聚合酶的存在下,引物活化的链位移释放释放miRNA,然后MiRNA链可以识别并用另一个DNA探针起作用。靶miRNA的再循环和纳米叶的高淬火效率大大提高了灵敏度。方法的检测限(1.5 fm)低于使用目标循环反应的报告策略的检测限,允许在真实样品中痕量检测miRNA。通过充分利用miRNA序列,该方法还可以识别单碱基错配并区分同源miRNA。

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