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可编程 DNA 条形码编码的指数扩增反应用于 miRNA 的多重检测。

Programmable DNA barcode-encoded exponential amplification reaction for the multiplex detection of miRNAs.

机构信息

Department of Forensic Medicine, Chongqing Medical University, Chongqing 400016, China.

出版信息

Anal Methods. 2024 Mar 14;16(11):1649-1658. doi: 10.1039/d3ay02215c.

DOI:10.1039/d3ay02215c
PMID:38414433
Abstract

Multiple analysis of miRNAs is essential for the early diagnosis and monitoring of diseases. Here, a programmable, multiplex, and sensitive approach was developed for one-pot detection of miRNAs by melting temperature encoded sequences and exponential isothermal amplification (E-EXPAR). In the presence of target miRNAs, the corresponding templates initiate the cycles of nicking and polymerization/displacement, generating numerous barcode strands with unique encoding sequences. Subsequently, generated barcode strands hybridize with fluorescent probes and quench the fluorophore by a triplet of G base through a photo-induced electron transfer mechanism. Finally, a melting curve analysis is performed to quantify miRNAs by calculating the rate of fluorescence change at the corresponding melting temperature. Based on this, miRNA-21, miRNA-9, and miRNA-122 were detected with the detection limits of 3.3 fM, 2.9 fM, and 1.7 fM, respectively. This E-EXPAR was also employed to simultaneously detect three miRNAs in biological samples, showing consistent results with RT-qPCR. Overall, this study provides a programmable and universal platform for multiplex analysis of miRNAs, and holds great promise as an alternative to the multiplex analysis in clinical diagnostics and prognostics for nucleic acid detection.

摘要

多重分析 miRNAs 对于疾病的早期诊断和监测至关重要。在这里,我们开发了一种可编程、多重且灵敏的方法,通过熔解温度编码序列和指数等温扩增(E-EXPAR)进行 miRNA 的一锅检测。在存在靶 miRNA 的情况下,相应的模板启动缺口和聚合/置换循环,生成具有独特编码序列的大量条形码链。随后,生成的条形码链与荧光探针杂交,并通过三碱基 G 对通过光诱导电子转移机制猝灭荧光团。最后,通过计算相应熔解温度下荧光变化的速率来进行熔解曲线分析以定量 miRNA。基于此,检测到 miRNA-21、miRNA-9 和 miRNA-122 的检测限分别为 3.3 fM、2.9 fM 和 1.7 fM。该 E-EXPAR 还用于同时检测生物样本中的三种 miRNA,与 RT-qPCR 结果一致。总体而言,本研究为 miRNA 的多重分析提供了一个可编程和通用的平台,有望成为核酸检测临床诊断和预后中多重分析的替代方法。

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