Microfluidic Nano-Scale qPCR Enables Ultra-Sensitive and Quantitative Detection of SARS-CoV-2

A major challenge in controlling the COVID-19 pandemic is the high false-negative rate of the commonly used RT-PCR methods for SARS-CoV-2 detection in clinical samples. Accurate detection is particularly challenging in samples with low viral loads that are below the limit of detection (LoD) of stand...

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Veröffentlicht in:Processes 2020-11, Vol.8 (11), p.1425
Hauptverfasser: Xie, Xin, Gjorgjieva, Tamara, Attieh, Zaynoun, Dieng, Mame Massar, Arnoux, Marc, Khair, Mostafa, Moussa, Yasmine, Al Jallaf, Fatima, Rahiman, Nabil, Jackson, Christopher A., Messery, Lobna El, Pamplona, Khristine, Victoria, Zyrone, Zafar, Mohammed, Ali, Raghib, Piano, Fabio, Gunsalus, Kristin C., Idaghdour, Youssef
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Sprache:eng
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Zusammenfassung:A major challenge in controlling the COVID-19 pandemic is the high false-negative rate of the commonly used RT-PCR methods for SARS-CoV-2 detection in clinical samples. Accurate detection is particularly challenging in samples with low viral loads that are below the limit of detection (LoD) of standard one- or two-step RT-PCR methods. In this study, we implemented a three-step approach for SARS-CoV-2 detection and quantification that employs reverse transcription, targeted cDNA preamplification, and nano-scale qPCR based on a commercially available microfluidic chip. Using SARS-CoV-2 synthetic RNA and plasmid controls, we demonstrate that the addition of a preamplification step enhances the LoD of this microfluidic RT-qPCR by 1000-fold, enabling detection below 1 copy/µL. We applied this method to analyze 182 clinical NP swab samples previously diagnosed using a standard RT-qPCR protocol (91 positive, 91 negative) and demonstrate reproducible and quantitative detection of SARS-CoV-2 over five orders of magnitude (
ISSN:2227-9717
2227-9717
DOI:10.3390/pr8111425