| Literature DB >> 33320856 |
Martin A M Reijns1, Louise Thompson2, Juan Carlos Acosta3, Holly A Black2,4, Francisco J Sanchez-Luque1,5, Austin Diamond2, David A Parry1, Alison Daniels6, Marie O'Shea7, Carolina Uggenti4, Maria C Sanchez6, Alan O'Callaghan1, Michelle L L McNab6, Martyna Adamowicz4, Elias T Friman1, Toby Hurd1, Edward J Jarman1, Frederic Li Mow Chee3, Jacqueline K Rainger1, Marion Walker3, Camilla Drake1, Dasa Longman1, Christine Mordstein1,8, Sophie J Warlow4, Stewart McKay1, Louise Slater2, Morad Ansari2, Ian P M Tomlinson3, David Moore2, Nadine Wilkinson9, Jill Shepherd9, Kate Templeton9, Ingolfur Johannessen9, Christine Tait-Burkard7, Jürgen G Haas6, Nick Gilbert1, Ian R Adams1, Andrew P Jackson1.
Abstract
With the ongoing COVID-19 (Coronavirus Disease 2019) pandemic, caused by the novel coronavirus SARS-CoV-2 (Severe Acute Respiratory Syndrome Coronavirus 2), there is a need for sensitive, specific, and affordable diagnostic tests to identify infected individuals, not all of whom are symptomatic. The most sensitive test involves the detection of viral RNA using RT-qPCR (quantitative reverse transcription PCR), with many commercial kits now available for this purpose. However, these are expensive, and supply of such kits in sufficient numbers cannot always be guaranteed. We therefore developed a multiplex assay using well-established SARS-CoV-2 targets alongside a human cellular control (RPP30) and a viral spike-in control (Phocine Herpes Virus 1 [PhHV-1]), which monitor sample quality and nucleic acid extraction efficiency, respectively. Here, we establish that this test performs as well as widely used commercial assays, but at substantially reduced cost. Furthermore, we demonstrate >1,000-fold variability in material routinely collected by combined nose and throat swabbing and establish a statistically significant correlation between the detected level of human and SARS-CoV-2 nucleic acids. The inclusion of the human control probe in our assay therefore provides a quantitative measure of sample quality that could help reduce false-negative rates. We demonstrate the feasibility of establishing a robust RT-qPCR assay at approximately 10% of the cost of equivalent commercial assays, which could benefit low-resource environments and make high-volume testing affordable.Entities:
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Year: 2020 PMID: 33320856 PMCID: PMC7771873 DOI: 10.1371/journal.pbio.3001030
Source DB: PubMed Journal: PLoS Biol ISSN: 1544-9173 Impact factor: 8.029