Ball Cameron S, Light Yooli K, Koh Chung-Yan, Wheeler Sarah S, Coffey Lark L, Meagher Robert J
Sandia National Laboratories , P.O. Box 969, MS 9291, Livermore, California 94551, United States.
University of California Davis , School of Veterinary Medicine, Department of Pathology, Microbiology and Immunology, One Shield Avenue, Davis, California 95616, United States.
Anal Chem. 2016 Apr 5;88(7):3562-8. doi: 10.1021/acs.analchem.5b04054. Epub 2016 Mar 24.
Reverse-transcription-loop-mediated isothermal amplification (RT-LAMP) has frequently been proposed as an enabling technology for simplified diagnostic tests for RNA viruses. However, common detection techniques used for LAMP and RT-LAMP have drawbacks, including poor discrimination capability, inability to multiplex targets, high rates of false positives, and (in some cases) the requirement of opening reaction tubes postamplification. Here, we present a simple technique that allows closed-tube, target-specific detection, based on inclusion of a dye-labeled primer that is incorporated into a target-specific amplicon if the target is present. A short, complementary quencher hybridizes to unincorporated primer upon cooling down at the end of the reaction, thereby quenching fluorescence of any unincorporated primer. Our technique, which we term QUASR (for quenching of unincorporated amplification signal reporters, read "quasar"), does not significantly reduce the amplification efficiency or sensitivity of RT-LAMP. Equipped with a simple LED excitation source and a colored plastic gel filter, the naked eye or a camera can easily discriminate between positive and negative QUASR reactions, which produce a difference in signal of approximately 10:1 without background subtraction. We demonstrate that QUASR detection is compatible with complex sample matrices such as human blood, using a novel LAMP primer set for bacteriophage MS2 (a model RNA virus particle). Furthermore, we demonstrate single-tube duplex detection of West Nile virus (WNV) and chikungunya virus (CHIKV) RNA.
逆转录环介导等温扩增技术(RT-LAMP)常被视为一种可用于简化RNA病毒诊断检测的技术。然而,用于LAMP和RT-LAMP的常见检测技术存在缺陷,包括鉴别能力差、无法对多个靶标进行多重检测、假阳性率高以及(某些情况下)扩增后需要打开反应管。在此,我们提出一种简单技术,基于加入一种染料标记引物,若存在靶标,该引物会掺入靶标特异性扩增子中,从而实现封闭管内的靶标特异性检测。在反应结束冷却时,一段短的互补淬灭剂与未掺入的引物杂交,从而淬灭任何未掺入引物的荧光。我们的技术,我们称之为QUASR(用于淬灭未掺入的扩增信号报告分子,读作“类星体”),不会显著降低RT-LAMP的扩增效率或灵敏度。配备简单的LED激发源和彩色塑料凝胶滤光片后,肉眼或相机可轻松区分阳性和阴性QUASR反应,无需背景扣除,两者信号差异约为10:1。我们使用一种针对噬菌体MS2(一种模型RNA病毒颗粒)的新型LAMP引物组,证明QUASR检测与复杂样本基质(如人血)兼容。此外,我们还展示了对西尼罗河病毒(WNV)和基孔肯雅病毒(CHIKV)RNA的单管双重检测。