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Review
. 2009 Jul;39(3):167-177.
doi: 10.1111/j.1365-2907.2009.00144.x. Epub 2009 Jun 15.

Monitoring exposure to avian influenza viruses in wild mammals

Affiliations
Review

Monitoring exposure to avian influenza viruses in wild mammals

Kaci K Vandalen et al. Mamm Rev. 2009 Jul.

Abstract

1Avian influenza (AI) viruses primarily circulate in wild waterfowl populations and are occasionally transmitted to domestic poultry flocks. However, the possible roles of other wildlife species, such as wild mammals, in AI virus ecology have not been adequately addressed.2Due to their habitat and behaviour, many wild mammals may be capable of transmitting pathogens among wild and domestic populations. Exposure to AI viruses has been reported in an array of wild and domestic animals. The presence of wild mammals on farms has been identified as a risk factor for at least one poultry AI outbreak in North America. These reports suggest the need for seroprevalence studies examining the exposure of wild mammals to AI viruses.3Serological tests are routinely used to assess domestic poultry, domestic swine and human exposure to influenza A viruses, but these tests have not been validated for use in wild mammals. As such, some of these protocols may require adjustments or may be inappropriate for use in serology testing of wild mammals. Herein, we review these serological techniques and evaluate their potential usefulness in AI surveillance of wild mammals. We call for care to be taken when applying serological tests outside their original area of validation, and for continued assay verification for multiple species and virus strains.

Keywords: avian influenza viruses; disease ecology; laboratory protocols; seroprevalence; virus transmission; wild mammals.

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References

    1. Abraham, A. , Sivanandan, V. , Karunakaran, D. , Halvorson, D.A. & Newman, J.A. (1988) Comparative serological evaluation of avian influenza vaccine in turkeys. Avian Diseases, 32, 659–662. - PubMed
    1. Adair, B.M. , Todd, D. , McKillop, E.R. & McNulty, M.S. (1989) Detection of influenza A type‐specific antibodies in chicken and turkey sera by enzyme linked immunosorbent assay. Avian Pathology, 18, 455–463. - PubMed
    1. Alexander, D.J. (2000) A review of avian influenza in different bird species. Veterinary Microbiology, 74, 3–13. - PubMed
    1. Bailey, C.F. (1983) Experimental Infection of Raccoon, Skunk and Thirteen‐lined Ground Squirrels with Avian Derived Influenza A Viruses. MSc Thesis. University of Minnesota, USA. pp. 28.
    1. Berg, M. , Englund, L. , Abusugra, I.A. , Klingeborn, B. & Linné, T. (1990) Close relationship between mink influenza (H10N4) and concomitantly circulating avian influenza viruses. Archives of Virology, 113, 61–71. - PubMed

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