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Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada

INTRODUCTION: Detection of community respiratory syncytial virus (RSV) infections informs the timing of immunoprophylaxis programs and hospital preparedness for surging pediatric volumes. In many jurisdictions, this relies upon RSV clinical test positivity and hospitalization (RSVH) trends, which ar...

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Autores principales: Mercier, Elisabeth, Pisharody, Lakshmi, Guy, Fiona, Wan, Shen, Hegazy, Nada, D’Aoust, Patrick M., Kabir, Md Pervez, Nguyen, Tram Bich, Eid, Walaa, Harvey, Bart, Rodenburg, Erin, Rutherford, Candy, Mackenzie, Alex E., Willmore, Jacqueline, Hui, Charles, Paes, Bosco, Delatolla, Robert, Thampi, Nisha
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10566629/
https://www.ncbi.nlm.nih.gov/pubmed/37829087
http://dx.doi.org/10.3389/fpubh.2023.1261165
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author Mercier, Elisabeth
Pisharody, Lakshmi
Guy, Fiona
Wan, Shen
Hegazy, Nada
D’Aoust, Patrick M.
Kabir, Md Pervez
Nguyen, Tram Bich
Eid, Walaa
Harvey, Bart
Rodenburg, Erin
Rutherford, Candy
Mackenzie, Alex E.
Willmore, Jacqueline
Hui, Charles
Paes, Bosco
Delatolla, Robert
Thampi, Nisha
author_facet Mercier, Elisabeth
Pisharody, Lakshmi
Guy, Fiona
Wan, Shen
Hegazy, Nada
D’Aoust, Patrick M.
Kabir, Md Pervez
Nguyen, Tram Bich
Eid, Walaa
Harvey, Bart
Rodenburg, Erin
Rutherford, Candy
Mackenzie, Alex E.
Willmore, Jacqueline
Hui, Charles
Paes, Bosco
Delatolla, Robert
Thampi, Nisha
author_sort Mercier, Elisabeth
collection PubMed
description INTRODUCTION: Detection of community respiratory syncytial virus (RSV) infections informs the timing of immunoprophylaxis programs and hospital preparedness for surging pediatric volumes. In many jurisdictions, this relies upon RSV clinical test positivity and hospitalization (RSVH) trends, which are lagging indicators. Wastewater-based surveillance (WBS) may be a novel strategy to accurately identify the start of the RSV season and guide immunoprophylaxis administration and hospital preparedness. METHODS: We compared citywide wastewater samples and pediatric RSVH in Ottawa and Hamilton between August 1, 2022, and March 5, 2023. 24-h composite wastewater samples were collected daily and 5 days a week at the wastewater treatment facilities in Ottawa and Hamilton, Ontario, Canada, respectively. RSV WBS samples were analyzed in real-time for RSV by RT-qPCR. RESULTS: RSV WBS measurements in both Ottawa and Hamilton showed a lead time of 12 days when comparing the WBS data set to pediatric RSVH data set (Spearman’s ρ = 0.90). WBS identify early RSV community transmission and declared the start of the RSV season 36 and 12 days in advance of the provincial RSV season start (October 31) for the city of Ottawa and Hamilton, respectively. The differing RSV start dates in the two cities is likely associated with geographical and regional variation in the incidence of RSV between the cities. DISCUSSION: Quantifying RSV in municipal wastewater forecasted a 12-day lead time of the pediatric RSVH surge and an earlier season start date compared to the provincial start date. These findings suggest an important role for RSV WBS to inform regional health system preparedness, reduce RSV burden, and understand variations in community-related illness as novel RSV vaccines and monoclonal antibodies become available.
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spelling pubmed-105666292023-10-12 Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada Mercier, Elisabeth Pisharody, Lakshmi Guy, Fiona Wan, Shen Hegazy, Nada D’Aoust, Patrick M. Kabir, Md Pervez Nguyen, Tram Bich Eid, Walaa Harvey, Bart Rodenburg, Erin Rutherford, Candy Mackenzie, Alex E. Willmore, Jacqueline Hui, Charles Paes, Bosco Delatolla, Robert Thampi, Nisha Front Public Health Public Health INTRODUCTION: Detection of community respiratory syncytial virus (RSV) infections informs the timing of immunoprophylaxis programs and hospital preparedness for surging pediatric volumes. In many jurisdictions, this relies upon RSV clinical test positivity and hospitalization (RSVH) trends, which are lagging indicators. Wastewater-based surveillance (WBS) may be a novel strategy to accurately identify the start of the RSV season and guide immunoprophylaxis administration and hospital preparedness. METHODS: We compared citywide wastewater samples and pediatric RSVH in Ottawa and Hamilton between August 1, 2022, and March 5, 2023. 24-h composite wastewater samples were collected daily and 5 days a week at the wastewater treatment facilities in Ottawa and Hamilton, Ontario, Canada, respectively. RSV WBS samples were analyzed in real-time for RSV by RT-qPCR. RESULTS: RSV WBS measurements in both Ottawa and Hamilton showed a lead time of 12 days when comparing the WBS data set to pediatric RSVH data set (Spearman’s ρ = 0.90). WBS identify early RSV community transmission and declared the start of the RSV season 36 and 12 days in advance of the provincial RSV season start (October 31) for the city of Ottawa and Hamilton, respectively. The differing RSV start dates in the two cities is likely associated with geographical and regional variation in the incidence of RSV between the cities. DISCUSSION: Quantifying RSV in municipal wastewater forecasted a 12-day lead time of the pediatric RSVH surge and an earlier season start date compared to the provincial start date. These findings suggest an important role for RSV WBS to inform regional health system preparedness, reduce RSV burden, and understand variations in community-related illness as novel RSV vaccines and monoclonal antibodies become available. Frontiers Media S.A. 2023-09-26 /pmc/articles/PMC10566629/ /pubmed/37829087 http://dx.doi.org/10.3389/fpubh.2023.1261165 Text en Copyright © 2023 Mercier, Pisharody, Guy, Wan, Hegazy, D’Aoust, Kabir, Nguyen, Eid, Harvey, Rodenburg, Rutherford, Mackenzie, Willmore, Hui, Paes, Delatolla and Thampi. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Public Health
Mercier, Elisabeth
Pisharody, Lakshmi
Guy, Fiona
Wan, Shen
Hegazy, Nada
D’Aoust, Patrick M.
Kabir, Md Pervez
Nguyen, Tram Bich
Eid, Walaa
Harvey, Bart
Rodenburg, Erin
Rutherford, Candy
Mackenzie, Alex E.
Willmore, Jacqueline
Hui, Charles
Paes, Bosco
Delatolla, Robert
Thampi, Nisha
Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title_full Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title_fullStr Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title_full_unstemmed Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title_short Wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in Ontario, Canada
title_sort wastewater-based surveillance identifies start to the pediatric respiratory syncytial virus season in two cities in ontario, canada
topic Public Health
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10566629/
https://www.ncbi.nlm.nih.gov/pubmed/37829087
http://dx.doi.org/10.3389/fpubh.2023.1261165
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