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高效指数滚环扩增分子网络可实现超灵敏无标记 miRNA 检测。

Efficient and Exponential Rolling Circle Amplification Molecular Network Leads to Ultrasensitive and Label-Free Detection of MicroRNA.

机构信息

Key Laboratory of Luminescent and Real-Time Analytical Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering , Southwest University , Chongqing 400715 , P. R. China.

出版信息

Anal Chem. 2020 Jan 21;92(2):2074-2079. doi: 10.1021/acs.analchem.9b04585. Epub 2020 Jan 9.

Abstract

MicroRNAs (miRNAs) are useful biomarkers for the diagnosis of a variety of cancers. However, it is a major challenge to detect miRNAs, considering their high sequence similarity, low concentration, and small size nature. With the establishment of an efficient rolling circle amplification (RCA) molecular network by target-driven polymerization/nicking reactions, we present here an exponential amplification strategy for detecting miRNA in a label-free way with ultrahigh sensitivity. The target miRNA sequences can bind two ssDNA probes to form a junction structure to initiate a dual polymerization/nicking cyclic reaction for the production of many primers, which further trigger multiple RCA reactions in a drastically amplified sequence replication and extension mode for the yield of substantial dsDNAs with various sizes. The SYBR Green I then binds these dsDNAs to induce significantly magnified fluorescence emission for detecting the target miRNA sequences with a detection limit down to 0.86 fM in the linear range between 1 fM and 10 pM. Because of the involvement of the presynthesized circular DNA template, the RCA efficiency is further improved, and such a method can also be used for detecting miRNA in diluted human serum samples, demonstrating its great potential and universality for detecting different nucleic acid sequences for biochemical research and clinical diagnosis applications.

摘要

微小 RNA(miRNA)是诊断各种癌症的有用生物标志物。然而,由于 miRNA 具有高度的序列相似性、低浓度和小尺寸的特点,因此检测 miRNA 是一个主要的挑战。通过目标驱动的聚合/缺口反应建立了一种高效的滚环扩增(RCA)分子网络,我们在这里提出了一种超灵敏的无标记检测 miRNA 的指数扩增策略。目标 miRNA 序列可以结合两个 ssDNA 探针形成连接结构,从而启动双聚合/缺口循环反应,产生许多引物,这些引物进一步触发多个 RCA 反应,以大幅放大的序列复制和扩展模式产生具有各种大小的大量 dsDNA。然后,SYBR Green I 结合这些 dsDNA 以诱导显著放大的荧光发射,从而以 0.86 fM 的检测限在 1 fM 至 10 pM 的线性范围内检测目标 miRNA 序列。由于涉及预合成的圆形 DNA 模板,RCA 效率进一步提高,并且该方法还可用于检测稀释的人血清样品中的 miRNA,证明了其在生化研究和临床诊断应用中用于检测不同核酸序列的巨大潜力和通用性。

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