Gregorova Pavlina, Heinonen Minna-Maria K, Sarin L Peter
RNAcious Laboratory, Molecular and Integrative Biosciences Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, Finland.
MethodsX. 2022 May 23;9:101737. doi: 10.1016/j.mex.2022.101737. eCollection 2022.
Reverse transcription quantitative PCR (RT-qPCR) has emerged as the gold standard for virus detection and quantification, being utilized in numerous diagnostic and research applications. However, the direct detection of viruses has so far posed a challenge as the viral genome is often encapsidated by a proteinaceous layer surrounded by a lipid envelope. This necessitates an additional and undesired RNA extraction step prior to RT-qPCR amplification. To circumvent this limitation, we have developed a direct RT-qPCR method for the detection of RNA viruses. In our method, we provide a proof-of-concept using phage phi6, a safe-to-use proxy for pathogenic enveloped RNA viruses that is commonly utilized in e.g. aerosolization studies. First, the phage phi6 envelope is removed by 1% chloroform treatment and the virus is then directly quantified by RT-qPCR. To identify false negative results, firefly luciferase is included as a synthetic external control. Thanks to the duplex format, our direct RT-qPCR method reduces the reagents needed and provides an easy to implement and broadly applicable, fast, and cost-effective tool for the quantitative analysis of enveloped RNA viruses.•One-step direct RT-qPCR quantification of phage phi6 virus without prior RNA isolation.•Reduced reaction volume for sustainable and cost-effective analysis.
逆转录定量聚合酶链反应(RT-qPCR)已成为病毒检测和定量的金标准,被广泛应用于众多诊断和研究领域。然而,由于病毒基因组通常被包裹在由脂质包膜包围的蛋白质层中,直接检测病毒至今仍是一项挑战。这就需要在RT-qPCR扩增之前进行额外且不必要的RNA提取步骤。为了克服这一限制,我们开发了一种用于检测RNA病毒的直接RT-qPCR方法。在我们的方法中,我们以噬菌体phi6为例进行了概念验证,phi6是一种用于模拟致病性包膜RNA病毒的安全替代物,常用于例如雾化研究等。首先,通过1%氯仿处理去除噬菌体phi6的包膜,然后通过RT-qPCR直接对病毒进行定量。为了识别假阴性结果,加入萤火虫荧光素酶作为合成外部对照。由于采用了双链形式,我们的直接RT-qPCR方法减少了所需试剂,并为包膜RNA病毒的定量分析提供了一种易于实施、广泛适用、快速且经济高效的工具。
•无需事先分离RNA即可对噬菌体phi6病毒进行一步直接RT-qPCR定量。
•减少反应体积以实现可持续且经济高效的分析。