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基于双链特异性核酸酶信号放大的荧光侧流分析用于即时检测 microRNAs。

Duplex-specific nuclease signal amplification-based fluorescent lateral flow assay for the point-of-care detection of microRNAs.

机构信息

Beijing Institute of Radiation Medicine, Beijing 100850, P. R. China.

出版信息

Analyst. 2021 Jan 21;146(2):558-564. doi: 10.1039/d0an01673j. Epub 2020 Nov 9.

Abstract

MiRNAs play important regulatory roles in numerous biological processes and serve as significant biomarkers for the development and prognosis of several diseases. Their unique characteristics, such as short size, high sequence homology among family members, low abundance, and easy degradability, have hindered their specific and highly sensitive detection. Herein, a duplex-specific nuclease (DSN)-assisted target recycling signal amplification-based fluorescent lateral flow assay was demonstrated for the point-of-care detection of cancer-related miRNA-21. In this assay, digoxin/biotin-labeled DNA probes were selectively cleaved by the DSN enzyme in the rounds of hybridization with the miRNA-21 target and cleavage cycle. Subsequently, the resulting mixture, containing the miRNA-21 target and intact and cleaved DNA probes, was loaded onto the lateral flow strip with digoxin antibody-conjugated quantum dot nanobeads and the streptavidin-coated test line. The increase in the proportion of cleaved DNA probes can induce a weakened response signal, which is directly associated with the amount of the miRNA target. Thus, highly sensitive quantification of miRNA-21 was achieved at a low limit of detection of 0.16 pM within 2 h of assay time. Assay specificity toward miRNA-21 was validated by testing several other miRNAs, including let-7b, let-7d, miRNA-141, and miRNA-200a. Moreover, the assay can quantify miRNA-21 spiked in human serum samples with acceptable recovery values, thus indicating its considerable clinical feasibility.

摘要

miRNAs 在许多生物过程中发挥着重要的调节作用,并作为几种疾病发生和预后的重要生物标志物。其独特的特点,如短尺寸、家族成员间高序列同源性、低丰度和易降解性,阻碍了其特异性和高灵敏度的检测。在此,提出了一种基于双链特异性核酸酶(DSN)辅助靶标循环信号放大的荧光侧向流动分析方法,用于即时检测癌症相关的 miRNA-21。在该测定中,地高辛/生物素标记的 DNA 探针在 miRNA-21 靶标与探针的杂交轮次中被 DSN 酶选择性切割,并且经过循环切割。随后,所得混合物(包含 miRNA-21 靶标和完整及切割的 DNA 探针)被加载到带有地高辛抗体偶联量子点纳米珠和链霉亲和素包被的检测线的侧向流动条上。切割的 DNA 探针比例的增加会引起响应信号减弱,该信号与 miRNA 靶标的量直接相关。因此,在 2 小时的测定时间内,以低至 0.16 pM 的检测限实现了对 miRNA-21 的高灵敏度定量。通过测试其他几种 miRNA,包括 let-7b、let-7d、miRNA-141 和 miRNA-200a,验证了该测定对 miRNA-21 的特异性。此外,该测定可以定量人血清样品中掺入的 miRNA-21,回收率值可接受,表明其具有相当的临床可行性。

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