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简单的放大器与镧系元素标记策略相结合,用于 microRNAs 的多重和特异性定量。

Simple Amplifier Coupled with a Lanthanide Labeling Strategy for Multiplexed and Specific Quantification of MicroRNAs.

机构信息

Department of Chemistry, Wuhan University, Wuhan 430072, China.

出版信息

Anal Chem. 2022 Sep 20;94(37):12934-12941. doi: 10.1021/acs.analchem.2c03234. Epub 2022 Sep 7.

Abstract

Inductively coupled plasma-mass spectrometry (ICP-MS) with elemental labeling is a promising strategy for multiplex microRNA (miRNA) analysis. However, it is still challenging for specific analysis of multiple miRNAs with high homology, and the development of multiplex assays is always limited by the complexity of the sequence design. Herein, a simple and direct ICP-MS-based assay was developed for the simultaneous detection of three miRNAs by combining the lanthanide labeling strategy with entropy-driven catalytic (EDC) amplification. Owing to the specificity of EDC for nucleic acid recognition, it is able to differentiate miRNAs with single-base mutation in each EDC circuit. A universal biotin-labeled DNA strand was designed to hybridize with the DNA substrates for three EDC circuits, targeting miRNA-21, miRNA-155, and miRNA-10b, respectively. All the substrates were loaded on the surface of streptavidin magnetic beads. In the presence of target miRNA, the EDC reaction was initiated, and EDC substrates were dissociated, continuously releasing reporter strands that were labeled with lanthanides (Tb/Ho/Lu). After magnetic separation, the supernatant containing the released reporter strands was introduced into an ICP-MS system for simultaneous detection of Tb/Ho/Lu and quantification of miRNA-21, miRNA-155, and miRNA-10b, respectively. The limits of detection were 7.4, 7.5, and 11 pmol L for miRNA-21, miRNA-155, and miRNA-10b, respectively. Overall, this study provides a powerful strategy for simultaneous quantification of multiple miRNAs, with the advantages of flexible probe design, good sensitivity, and excellent specificity.

摘要

基于电感耦合等离子体质谱(ICP-MS)的元素标记是一种很有前途的多重 microRNA(miRNA)分析策略。然而,对于具有高度同源性的多个 miRNA 的特异性分析仍然具有挑战性,并且多重分析的发展总是受到序列设计复杂性的限制。在此,我们开发了一种简单直接的 ICP-MS 分析方法,通过将镧系元素标记策略与熵驱动催化(EDC)扩增相结合,用于同时检测三种 miRNA。由于 EDC 对核酸识别的特异性,它能够在每个 EDC 电路中区分具有单个碱基突变的 miRNA。设计了一条通用的生物素标记的 DNA 链,分别与三个 EDC 电路的 DNA 底物杂交,针对 miRNA-21、miRNA-155 和 miRNA-10b。所有的底物都被加载到链霉亲和素磁性珠的表面。在存在靶 miRNA 的情况下,启动 EDC 反应,EDC 底物解离,不断释放被镧系元素(Tb/Ho/Lu)标记的报告链。在磁性分离后,将含有释放的报告链的上清液引入 ICP-MS 系统,分别用于同时检测 Tb/Ho/Lu 以及定量 miRNA-21、miRNA-155 和 miRNA-10b。miRNA-21、miRNA-155 和 miRNA-10b 的检测限分别为 7.4、7.5 和 11 pmol·L。总体而言,本研究为多重 miRNA 的同时定量提供了一种强大的策略,具有探针设计灵活、灵敏度高和特异性好的优点。

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