Molecular beacon-peptide probe based double recycling amplification for multiplexed detection of serum exosomal microRNAs

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL Analytical Methods Pub Date : 2024-07-09 DOI:10.1039/d4ay00629a
Liang Liu, Junlong Cai, Kun Yang, Bo Sun, Wei Liu, Yang Li, Hankun Hu
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Abstract

Exosomal microRNAs (exomiRs) have been shown to play crucial roles as biomarkers for early detection and prognosis of cancer. However, simultaneous quantification of multiplex exomiRs is hindered by methods that require additional steps, such as labeling with fluorophores or gel visualization, which are susceptible to various factors. Herein, we developed a mass spectrometry-detectable and target-triggered method for multiplexed exomiR detection using three enzyme-based double recycling amplification in combination with well-designed molecular beacon-peptide (MBP) probes, called molecular beacon-peptide probe-based double recycling amplification (MBPDRA). MBP probes mediated the double recycling amplification reaction and were released as mass-detectable reporter peptides. In particular, the hybridization of the target microRNAs (miRNAs) with the stem-loop of the probe triggers two consecutive processes. The first cycle involved polymerase strand displacement amplification, leading to the production of complementary DNA (Cycle I), and the second cycle encompassed the recycling exonuclease cleavage of the MBP probe (Cycle II). Subsequently, excess probes were removed by interaction with streptavidin beads via biotin-streptavidin binding. The reporter peptides were released using trypsin and subsequently detected by mass spectrometry. Our method enables quantitative detection of multiple exomiRs with a dynamic range from 0.1 fM to 10 pM and a limit of quantification of 0.1 fM. Moreover, the proposed assay was successfully employed for quantification of three exomiRs, exmiR-21, exmiR-191, and exmiR-451a in the sera of patients with pancreatic cancer. Based on these findings, we believe that the MBPDRA assay holds significant promise as a reliable method for quantifying multiple miRNAs in biomedical research and clinical diagnostics.
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基于分子信标-肽探针的双循环扩增技术用于血清外泌体 microRNA 的多重检测
研究表明,外泌体微RNA(exomiRs)作为生物标志物在癌症的早期检测和预后方面发挥着至关重要的作用。然而,同时定量多重外泌体微RNA的方法需要额外的步骤,如荧光标记或凝胶显像,容易受到各种因素的影响。在此,我们开发了一种质谱检测和目标触发的多重外显子R检测方法,该方法采用基于三种酶的双循环扩增技术,结合精心设计的分子信标肽(MBP)探针,称为基于分子信标肽探针的双循环扩增(MBPDRA)。MBP 探针介导了双重循环扩增反应,并以质量可检测的报告肽形式释放出来。特别是,目标 microRNA(miRNA)与探针的茎环杂交会触发两个连续的过程。第一个循环涉及聚合酶链置换扩增,从而产生互补 DNA(循环 I),第二个循环包括 MBP 探针的循环外切酶裂解(循环 II)。随后,多余的探针通过生物素-链霉亲和素结合与链霉亲和素珠子相互作用而被去除。报告肽用胰蛋白酶释放,然后用质谱检测。我们的方法可定量检测多种外显子Rs,动态范围为0.1 fM至10 pM,定量限为0.1 fM。此外,我们还成功地利用所提出的检测方法定量检测了胰腺癌患者血清中的三种外显子Rs:exmiR-21、exmiR-191和exmiR-451a。基于这些研究结果,我们认为 MBPDRA 分析法作为一种可靠的方法,有望在生物医学研究和临床诊断中对多种 miRNA 进行定量。
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来源期刊
Analytical Methods
Analytical Methods CHEMISTRY, ANALYTICAL-FOOD SCIENCE & TECHNOLOGY
CiteScore
5.10
自引率
3.20%
发文量
569
审稿时长
1.8 months
期刊介绍: Early applied demonstrations of new analytical methods with clear societal impact
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