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Letters
Open Access

An expanded role for blood donor emerging pathogens surveillance

Sheila F. O’Brien, Mindy Goldman and Steven J. Drews
CMAJ January 09, 2023 195 (1) E16; DOI: https://doi.org/10.1503/cmaj.147635-l
Sheila F. O’Brien
Associate director, Epidemiology and Surveillance, Donation Policy and Studies, Canadian Blood Services, Ottawa, Ont.
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Mindy Goldman
Medical director, Donation Policy and Studies, Canadian Blood Services, Ottawa, Ont.
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Steven J. Drews
Associate director, Microbiology, Donation Policy and Studies, Canadian Blood Services, Edmonton, Alta.
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We agree with Berry and colleagues that reassessment of how we monitor emerging pathogens is needed.1

We note that the authors did not specifically mention blood donor surveillance in their article. From May 2020 (continuing until March 2023), Canadian Blood Services, in partnership with the COVID-19 Immunity Task Force, tested samples from all Canadian provinces (not Quebec and the territories) for SARS-CoV-2 antibodies.2,3 Monthly reports were openly and routinely distributed to provincial and national public health professionals, posted on the COVID-19 Immunity Task Force website (https://www.covid19immunitytaskforce.ca/seroprevalence-in-canada) and used to estimate the population prevalence of SARS-CoV-2 in mathematical models.

The authors note that wastewater surveillance provides an excellent immediate indicator of increased infections but not the proportion of people infected. We believe that blood donor serosurveillance can provide timely, geographically broad, regular measurement of nucleocapsid and spike antibodies.3

An ideal detection system for emerging pathogens would link health administration data (e.g., vaccine history and results of molecular testing). Canadian Blood Services is undertaking a pilot study to link SARS-CoV-2 seroprevalence data to administrative data from at least 1 province. Blood samples are collected from donors from most regions of Canada almost every day.4 Canadian Blood Services is responsible for blood collection in all regions except Quebec and the territories. About 850 000 donations per year are collected in all larger cities and many towns, and residual samples are available for public health surveillance from about 80% of these. Donors must be at least 17 years old, in good general health and at low risk of blood-borne infections. However, donor health criteria are less restrictive than many realize.4,5 For example, people may donate if they have a history of cardiovascular disease, hypertension or diabetes, as long as these are under control. Most people who have had cancer are also eligible after successful treatment. Many donors take prescription medications. Although donors are not fully representative of the general population, they have been valuable for SARS-CoV-2 seroprevalence during the pandemic and yield similar seroprevalence estimates to randomized general population studies.6

Berry and colleagues focus on surveillance for emerging and re-emerging respiratory pathogens but point out the value of wastewater surveillance for a broad range of other pathogens. We agree with this viewpoint and, in the past, have collaborated with wastewater researchers. Canadian Blood Services has a long history of contributing to public health surveillance for vectorborne pathogens such as West Nile virus and Babesia microti, and food-borne illnesses such as hepatitis E.4 We believe it makes sense for blood donor surveillance to take on an expanded role in surveillance for emerging and re-emerging pathogens.

Footnotes

  • Competing interests: None declared.

This is an Open Access article distributed in accordance with the terms of the Creative Commons Attribution (CC BY-NC-ND 4.0) licence, which permits use, distribution and reproduction in any medium, provided that the original publication is properly cited, the use is noncommercial (i.e., research or educational use), and no modifications or adaptations are made. See: https://creativecommons.org/licenses/by-nc-nd/4.0/

References

  1. ↵
    1. Berry I,
    2. Brown KA,
    3. Buchanet SA,
    4. et al
    . A better normal in Canada will need a better detection system for emerging and re-emerging respiratory pathogens. CMAJ 2022;194:E1250–4.
    OpenUrlFREE Full Text
  2. ↵
    1. Reedman CN,
    2. Drews SJ,
    3. Yi QL,
    4. et al
    . Changing patterns of SARS-CoV-2 seroprevalence among Canadian blood donors during the vaccine era. Microbiol Spectr 2022;10:e0033922.
    OpenUrl
  3. ↵
    1. O’Brien SF,
    2. Caffrey N,
    3. Yi QL,
    4. et al
    . SARS-CoV-2 seroprevalence among Canadian blood donors: the advance of Omicron. Viruses 2022;14:2336.
    OpenUrl
  4. ↵
    1. O’Brien SF,
    2. Drews SJ,
    3. Lewin A,
    4. et al
    . Canadian blood suppliers: an expanding role in public health surveillance? Can Commun Dis Rep 2022;48:124–30.
    OpenUrl
  5. ↵
    1. O’Brien SF,
    2. Drews SJ,
    3. Lewin A,
    4. et al
    . How do we decide how representative our donors are for public health surveillance? Transfusion 2022 Oct. 4. doi: 10.1111/trf.17140. [Epub ahead of print].
    OpenUrlCrossRef
  6. ↵
    1. Grant R,
    2. Dub T,
    3. Andrianou X,
    4. et al
    . SARS-CoV-2 population-based seroprevalence studies in Europe: a scoping review. BMJ Open 2021;11: e045425.
    OpenUrlAbstract/FREE Full Text
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An expanded role for blood donor emerging pathogens surveillance
Sheila F. O’Brien, Mindy Goldman, Steven J. Drews
CMAJ Jan 2023, 195 (1) E16; DOI: 10.1503/cmaj.147635-l

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An expanded role for blood donor emerging pathogens surveillance
Sheila F. O’Brien, Mindy Goldman, Steven J. Drews
CMAJ Jan 2023, 195 (1) E16; DOI: 10.1503/cmaj.147635-l
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