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Fluorometric Detection of MicroRNA Using Isothermal Gene Amplification and Graphene Oxide

机译:等温基因扩增和氧化石墨烯的荧光定量检测

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We have developed a facile fluorometric system for the detection of microRNA (miRNA), using rolling circle amplification (RCA), graphene oxide (GO), and fluorescently labeled peptide nucleic acid (F-PNA): The padlock probe DNA complementary to a target miRNA Was selectively ligated to form circular DNA that was then used as the template for RCA. F-PNAs complementary to the target miRNA were annealed to multiple sites of the isothermally amplified single stranded RCA product (RCAP) containing multiple target miRNA sequences. This F-PNA/RCAP duplex is less adsorbed onto the GO monolayer, thus attenuating the quenching of F-PNA fluorescence by GO. In the absence of target miRNA (and hence the absence of RCA and duplex formation), the free F-TNA is completely adsorbed onto the GO monolayer and fluorescence quenching ensues. Thus, GO-based fluorescence detection coupled with isothermal gene amplification would be a simple and convenient method for the quantitative detection of miRNA.
机译:我们已经开发了一种简便的荧光测定系统,用于使用滚环扩增(RCA),氧化石墨烯(GO)和荧光标记的肽核酸(F-PNA)检测microRNA(miRNA):与靶标互补的挂锁探针DNA将miRNA选择性连接形成环状DNA,然后将其用作RCA的模板。将与目标miRNA互补的F-PNA退火至等温扩增的单链RCA产物(RCAP)的多个位点,该产物包含多个目标miRNA序列。该F-PNA / RCAP双链体较少吸附在GO单层上,因此减弱了GO对F-PNA荧光的猝灭。在不存在靶标miRNA的情况下(因此在不存在RCA和双链体形成的情况下),游离的F-TNA被完全吸附到GO单层上,随后发生荧光猝灭。因此,结合等温基因扩增的基于GO的荧光检测将是定量检测miRNA的简单便捷的方法。

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