Publication | Open Access
Site Specific Relationships between COVID-19 Cases and SARS-CoV-2 Viral Load in Wastewater Treatment Plant Influent
60
Citations
28
References
2021
Year
Sars-cov-2 Viral LoadVirus EpidemiologyViral DiagnosticsViral DynamicCovid-19 EpidemiologyVirus TransmissionNational Wbe ProgramWastewater TreatmentCovid-19Pathogen DiscoverySite Specific RelationshipsWater TreatmentSars-cov-2 RnaInfection ControlPublic HealthNeurovirologyCovid-19 PandemicVirologyCovid-19 CasesEpidemiologyEmerging Infectious DiseasesWwtp Catchment AreaMicrobiologyMedicine
Wastewater based epidemiology (WBE) has become an important tool during the COVID-19 pandemic, however the relationship between SARS-CoV-2 RNA in wastewater treatment plant influent (WWTP) and cases in the community is not well-defined. We report here the development of a national WBE program across 28 WWTPs serving 50% of the population of Scotland, including large conurbations, as well as low-density rural and remote island communities. For each WWTP catchment area, we quantified spatial and temporal relationships between SARS-CoV-2 RNA in wastewater and COVID-19 cases. Daily WWTP SARS-CoV-2 influent viral RNA load, calculated using daily influent flow rates, had the strongest correlation (ρ > 0.9) with COVID-19 cases within a catchment. As the incidence of COVID-19 cases within a community increased, a linear relationship emerged between cases and influent viral RNA load. There were significant differences between WWTPs in their capacity to predict case numbers based on influent viral RNA load, with the limit of detection ranging from 25 cases for larger plants to a single case in smaller plants. SARS-CoV-2 viral RNA load can be used to predict the number of cases detected in the WWTP catchment area, with a clear statistically significant relationship observed above site-specific case thresholds.
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