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Great Lakes Institute for Environmental Research Publications

2021

COVID-19

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Comparison Of Approaches To Quantify Sars-Cov-2 In Wastewater Using Rt-Qpcr: Results And Implications From A Collaborative Inter-Laboratory Study In Canada, Alex H.S. Chik, Melissa B. Glier, Mark Servos, Chand S. Mangat, Xiao Li Pang, Yuanyuan Qiu, Patrick M. D'Aoust, Jean Baptiste Burnet, Robert Delatolla, Sarah Dorner, Qiudi Geng, John P. Giesy, Robert Mike Mckay, Michael R. Mulvey, Natalie Prystajecky, Nivetha Srikanthan, Yuwei Xie, Bernadette Conant Sep 2021

Comparison Of Approaches To Quantify Sars-Cov-2 In Wastewater Using Rt-Qpcr: Results And Implications From A Collaborative Inter-Laboratory Study In Canada, Alex H.S. Chik, Melissa B. Glier, Mark Servos, Chand S. Mangat, Xiao Li Pang, Yuanyuan Qiu, Patrick M. D'Aoust, Jean Baptiste Burnet, Robert Delatolla, Sarah Dorner, Qiudi Geng, John P. Giesy, Robert Mike Mckay, Michael R. Mulvey, Natalie Prystajecky, Nivetha Srikanthan, Yuwei Xie, Bernadette Conant

Great Lakes Institute for Environmental Research Publications

Detection of SARS-CoV-2 RNA in wastewater is a promising tool for informing public health decisions during the COVID-19 pandemic. However, approaches for its analysis by use of reverse transcription quantitative polymerase chain reaction (RT-qPCR) are still far from standardized globally. To characterize inter- and intra-laboratory variability among results when using various methods deployed across Canada, aliquots from a real wastewater sample were spiked with surrogates of SARS-CoV-2 (gamma-radiation inactivated SARS-CoV-2 and human coronavirus strain 229E [HCoV-229E]) at low and high levels then provided “blind” to eight laboratories. Concentration estimates reported by individual laboratories were consistently within a 1.0-log10 range for …