Department of Bioengineering, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, USA.
Micro and Nanotechnology Laboratory, University of Illinois Urbana-Champaign, Urbana, Illinois 61801, USA.
Analyst. 2022 Jun 27;147(13):2936-2941. doi: 10.1039/d2an00263a.
A recent surge of interest in microRNA has been driven by its discovery as a circulating biomarker of disease, with many diagnostic test platforms currently under development. Alternatives to widely used microRNA quantification methods such as quantitative reverse transcriptase PCR (qRT-PCR) are needed for use in portable and point-of-care devices which are incompatible with complex sample processing workflows and thermal cycling. Rolling circle amplification (RCA) is a one-pot assay technique which directly amplifies nucleic acids using sequence-specific microRNA priming to initiate a single-step isothermal reaction that is compatible with simple devices. Sensitivity remains a limitation of RCA methods, however, and detection limits do not typically reach the femtomolar level in which microRNA targets are present in blood. RCA assays have previously been improved by digestion of the amplification products using a nicking endonuclease to exponentially generate new reaction primers. Here we describe how a ligation-free version of this technique performed in a single tube can be used to improve the limit of detection for microRNA-375, an important blood biomarker for prostate cancer. Endonuclease addition changes a linear process into an exponential amplification reaction which results in a 61-fold improvement of the limit of detection (5.9 fM), a dynamic range wider than 5-log(10), and a shorter reaction time. By eliminating the need for microRNA reverse transcription and thermal cycling, this single-step one-pot method provides a more rapid and simplified alternative to qRT-PCR for ultrasensitive microRNA quantification in blood extracts.
最近,人们对 microRNA 的兴趣大增,因为它被发现是疾病的循环生物标志物,目前有许多诊断测试平台正在开发中。需要替代广泛使用的 microRNA 定量方法,如定量逆转录聚合酶链反应 (qRT-PCR),用于便携式和即时护理设备,这些设备与复杂的样品处理工作流程和热循环不兼容。滚环扩增 (RCA) 是一种一锅法检测技术,它使用序列特异性 microRNA 引物直接扩增核酸,启动单步等温反应,与简单的设备兼容。然而,RCA 方法的灵敏度仍然是一个限制因素,检测限通常无法达到 microRNA 靶标在血液中存在的飞摩尔水平。以前已经通过使用切口内切酶消化扩增产物来改进 RCA 检测方法,以指数方式产生新的反应引物。在这里,我们描述了如何在单个管中使用这种技术的无连接版本来提高 microRNA-375 的检测限,microRNA-375 是前列腺癌的重要血液生物标志物。内切酶的添加将线性过程改变为指数扩增反应,从而将检测限提高了 61 倍(5.9 fM),动态范围大于 5-log(10),反应时间更短。通过消除 microRNA 逆转录和热循环的需要,这种一步法、一锅法的方法为血液提取物中 microRNA 的超灵敏定量提供了比 qRT-PCR 更快速和简化的替代方法。