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无逆转录数字定量 PCR 用于 microRNA 分析。

Reverse transcription-free digital-quantitative-PCR for microRNA analysis.

机构信息

Department of Chemistry, Wayne State University, 5101 Cass Ave, Detroit, MI 48202, USA.

出版信息

Analyst. 2023 Jun 26;148(13):3019-3027. doi: 10.1039/d3an00351e.

Abstract

MicroRNAs (miRNAs) are non-coding RNA sequences that regulate many biological processes and have become central targets of biomedical research. However, their naturally low abundances in biological samples necessitates the development of sensitive analytical techniques to conduct routine miRNA measurements in research laboratories. Digital PCR has the potential to meet this need because of its single-molecule detection capabilities, but PCR analyses of miRNAs are slowed by the ligation and reverse transcription steps first required to prepare samples. This report describes the development of a method to rapidly quantify miRNA in digital microwell arrays using base-stacking digital-quantitative-PCR (BS-dqPCR). BS-dqPCR expedites miRNA measurements by eliminating the need for ligation and reverse transcription steps, which reduces the time and cost compared to conventional miRNA PCR analyses. Under standard PCR thermocycling conditions, digital signals from miRNA samples were lower than expected, while signals from blanks were high. Therefore, a novel asymmetric thermocycling program was developed that maximized on-target signal from miRNA while minimizing non-specific amplification. The analytical response of BS-dqPCR was then evaluated over a range of miRNA concentrations. The digital PCR dimension increased in signal with increasing miRNA copy numbers. When the digital signal saturated, the quantitative PCR dimension readily discerned miRNA copy number differences. Overall, BS-dqPCR provides rapid, high-sensitivity measurements of miRNA over a wide dynamic range, which demonstrates its utility for routine miRNA analyses.

摘要

微小 RNA(miRNAs)是一类非编码 RNA 序列,它们调控许多生物学过程,已成为生物医学研究的核心靶标。然而,由于其在生物样本中的天然低丰度,需要开发灵敏的分析技术来在研究实验室中进行常规 miRNA 测量。数字 PCR 具有单分子检测能力,因此有可能满足这一需求,但 miRNA 的 PCR 分析受到首先需要进行样品制备的连接和逆转录步骤的限制。本报告介绍了一种使用碱基堆叠数字定量 PCR(BS-dqPCR)在数字微孔阵列中快速定量 miRNA 的方法。BS-dqPCR 通过消除连接和逆转录步骤,与传统的 miRNA PCR 分析相比,缩短了时间和成本,从而加快了 miRNA 测量。在标准 PCR 热循环条件下,miRNA 样品的数字信号低于预期,而空白样品的信号较高。因此,开发了一种新的不对称热循环程序,该程序最大限度地提高了 miRNA 的靶标信号,同时最小化了非特异性扩增。然后在一系列 miRNA 浓度范围内评估了 BS-dqPCR 的分析响应。数字 PCR 维度随着 miRNA 拷贝数的增加而增加信号。当数字信号饱和时,定量 PCR 维度可以轻易区分 miRNA 拷贝数的差异。总体而言,BS-dqPCR 提供了 miRNA 的快速、高灵敏度测量,具有广泛的动态范围,证明了其在常规 miRNA 分析中的实用性。

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