Home > Research > Publications & Outputs > EFSA Panel on Animal Health and Welfare (AHAW);...

Links

Text available via DOI:

View graph of relations

EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983

Research output: Contribution to specialist publicationArticle

Published

Standard

EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983. / Botner, Anette; Capua, Ilaria; Gatherer, Derek et al.
In: EFSA Journal, No. 2109, 17.03.2011.

Research output: Contribution to specialist publicationArticle

Harvard

Botner, A, Capua, I, Gatherer, D, Katz, J, Lemay, P, Lopez, V, Monne, I, Mumford, E, Nicoll, A, Salman, M, Sharp, M, Stegeman, JA, Have, P & Correia, S 2011, 'EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983' EFSA Journal, no. 2109. https://doi.org/10.2903/j.efsa.2011.2109

APA

Botner, A., Capua, I., Gatherer, D., Katz, J., Lemay, P., Lopez, V., Monne, I., Mumford, E., Nicoll, A., Salman, M., Sharp, M., Stegeman, J. A., Have, P., & Correia, S. (2011). EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983. EFSA Journal, (2109). https://doi.org/10.2903/j.efsa.2011.2109

Vancouver

Author

Bibtex

@misc{d59a7e2cd7864c1abc6cf5b5fb496686,
title = "EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983",
abstract = "Following the emergence in 2009 of the new pandemic H1N1 influenza virus, which contained gene segments from pig, bird and human influenza viruses, it was apparent that a better scientific understanding is required of influenza viruses to protect public and animal health. The latest scientific data on biological properties of the virus, transmissibility, host susceptibility and epidemiology has been evaluated in order to identify factors that could be monitored in animals and that would suggest a risk of emergence of a new pandemic influenza strains. Virological studies and animal models have highlighted the importance of individual virus proteins but virulence and transmissibility are polygenic effects and no single genetic marker can be reliably associated with increased pathogenicity or transmissibility. It was concluded that current monitoring of the influenza gene pool in humans has been able to provide an alert for the emergence of new human influenza strains of public health significance. In contrast, there is an incomplete view of the influenza virus strains circulating among pigs and birds at the global level. Interpretation of the origins and pandemic potential of influenza viruses do require knowledge of the influenza gene pools in both pigs and birds, as well as other animal species. It is recommended that there should be long term support for a passive monitoring network in pigs and birds in order to promote greater understanding of the evolution of influenza viruses at the global level. Maximum benefit can only be obtained by applying an integrated approach involving the medical and veterinary networks including development of harmonised tools and approaches, exchange of virus strains and sequence data and enhancing the coordination and dissemination of the findings from the human, swine and avian networks.",
keywords = "influenza, food safety",
author = "Anette Botner and Ilaria Capua and Derek Gatherer and Jackie Katz and Philippe Lemay and Vicente Lopez and Isabella Monne and Elizabeth Mumford and Angus Nicoll and Mo Salman and Mike Sharp and Stegeman, {Jan Arend} and Per Have and Sandra Correia",
year = "2011",
month = mar,
day = "17",
doi = "10.2903/j.efsa.2011.2109",
language = "English",
journal = "EFSA Journal",
issn = "1831-4732",
publisher = "John Wiley & Sons, Ltd",

}

RIS

TY - GEN

T1 - EFSA Panel on Animal Health and Welfare (AHAW); Scientific Opinion on monitoring for the emergence of possible new pandemic strains of influenza in animals: EFSA-Q-2009-00983

AU - Botner, Anette

AU - Capua, Ilaria

AU - Gatherer, Derek

AU - Katz, Jackie

AU - Lemay, Philippe

AU - Lopez, Vicente

AU - Monne, Isabella

AU - Mumford, Elizabeth

AU - Nicoll, Angus

AU - Salman, Mo

AU - Sharp, Mike

AU - Stegeman, Jan Arend

AU - Have, Per

AU - Correia, Sandra

PY - 2011/3/17

Y1 - 2011/3/17

N2 - Following the emergence in 2009 of the new pandemic H1N1 influenza virus, which contained gene segments from pig, bird and human influenza viruses, it was apparent that a better scientific understanding is required of influenza viruses to protect public and animal health. The latest scientific data on biological properties of the virus, transmissibility, host susceptibility and epidemiology has been evaluated in order to identify factors that could be monitored in animals and that would suggest a risk of emergence of a new pandemic influenza strains. Virological studies and animal models have highlighted the importance of individual virus proteins but virulence and transmissibility are polygenic effects and no single genetic marker can be reliably associated with increased pathogenicity or transmissibility. It was concluded that current monitoring of the influenza gene pool in humans has been able to provide an alert for the emergence of new human influenza strains of public health significance. In contrast, there is an incomplete view of the influenza virus strains circulating among pigs and birds at the global level. Interpretation of the origins and pandemic potential of influenza viruses do require knowledge of the influenza gene pools in both pigs and birds, as well as other animal species. It is recommended that there should be long term support for a passive monitoring network in pigs and birds in order to promote greater understanding of the evolution of influenza viruses at the global level. Maximum benefit can only be obtained by applying an integrated approach involving the medical and veterinary networks including development of harmonised tools and approaches, exchange of virus strains and sequence data and enhancing the coordination and dissemination of the findings from the human, swine and avian networks.

AB - Following the emergence in 2009 of the new pandemic H1N1 influenza virus, which contained gene segments from pig, bird and human influenza viruses, it was apparent that a better scientific understanding is required of influenza viruses to protect public and animal health. The latest scientific data on biological properties of the virus, transmissibility, host susceptibility and epidemiology has been evaluated in order to identify factors that could be monitored in animals and that would suggest a risk of emergence of a new pandemic influenza strains. Virological studies and animal models have highlighted the importance of individual virus proteins but virulence and transmissibility are polygenic effects and no single genetic marker can be reliably associated with increased pathogenicity or transmissibility. It was concluded that current monitoring of the influenza gene pool in humans has been able to provide an alert for the emergence of new human influenza strains of public health significance. In contrast, there is an incomplete view of the influenza virus strains circulating among pigs and birds at the global level. Interpretation of the origins and pandemic potential of influenza viruses do require knowledge of the influenza gene pools in both pigs and birds, as well as other animal species. It is recommended that there should be long term support for a passive monitoring network in pigs and birds in order to promote greater understanding of the evolution of influenza viruses at the global level. Maximum benefit can only be obtained by applying an integrated approach involving the medical and veterinary networks including development of harmonised tools and approaches, exchange of virus strains and sequence data and enhancing the coordination and dissemination of the findings from the human, swine and avian networks.

KW - influenza

KW - food safety

U2 - 10.2903/j.efsa.2011.2109

DO - 10.2903/j.efsa.2011.2109

M3 - Article

JO - EFSA Journal

JF - EFSA Journal

SN - 1831-4732

ER -