首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Short-probe-based duplex-specific nuclease signal amplification strategy enables imaging of endogenous microRNAs in living cells with ultrahigh specificity
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Short-probe-based duplex-specific nuclease signal amplification strategy enables imaging of endogenous microRNAs in living cells with ultrahigh specificity

机译:基于短探针的双链体核酸酶信号放大策略使具有超高特异性的活细胞中的内源性微小血管成像

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摘要

Specific nucleic acids amplification at a constant and mild temperature is important for imaging assay of endogenous microRNAs (miRNAs) in living cells. Duplex-specific nuclease (DSN) is attractive in one-step isothermal assay of miRNA; however, its intrinsic limitations of low amplification specificity and high reaction temperature greatly restrict the application scope. Herein, we present a short-probe-based DSN signal amplification (spDSNSA) strategy enabling analysis of miRNAs at body temperature with significantly high specificity. From systematic investigation of amplification reaction on different types of DNA probes, we revealed that the annealing rate between probe and target miRNA greatly affects the dynamics of amplification process. By simply shortening the length of DNA probe, the spDSNSA remarkably improved specificity without loss of amplification efficiency at 37 degrees C. As a proof-of-concept, let-7a was sensitively detected by spDSNSA with a limit of detection down to 30 p.M., and a specificity 102-104 folds higher than those of traditional DSNSA methods. The analysis of the let-7a in the lysates of A549 human lung cancer cells and BEAS-2B human lung normal bronchial epithelial cells exhibited well agreement with rt-qPCR method. Furthermore, the endogenous let-7a in A549 and BEAS-2B living cells was clearly imaged without damaging the original morphology of cells. The method provide a facile idea for extension of DNS related signal amplification strategies in the application in living cells and POCTs, and would pose a great impact on the development of simple and rapid molecular diagnostic applications for short oligonucleotides.
机译:在恒定和温和的温度下扩增的特定核酸扩增对于活细胞中内源微小RNA(miRNA)的成像测定是重要的。双相特异性核酸酶(DSN)在miRNA的一步等温测定中具有吸引力;然而,其具有低扩增特异性和高反应温度的内在限制极大地限制了应用范围。这里,我们介绍了一种基于短探针的DSN信号放大(SPDSA)策略,使MIRNA分析在体温下,具有显着高的特异性。从对不同类型的DNA探针进行放大反应的系统调查,我们揭示了探针和靶髓质之间的退火率大大影响了扩增过程的动态。通过简单地缩短DNA探针的长度,SPDSNS显着提高了特异性,在37摄氏度下没有放大效率损失的特异性。作为概念验证,SPDSNA敏感地检测到敏感性检测到下午30点,比传统的DSNSA方法高102-104倍的特异性。 A549人肺癌细胞裂解物中的Let-7a分析,BEA-2B人肺正常支气管上皮细胞与RT-QPCR方法展现出良好的一致性。此外,在A549和BEA-2B活细胞中的内源性Let-7a在不损害细胞的原始形态的情况下显而易见。该方法提供了延长活细胞和POCTS在应用中的DNS相关信号放大策略的容易思想,并对短寡核苷酸的简单和快速的分子诊断应用产生了很大影响。

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