Cargando…
A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models
Background In recent years, several avian influenza subtypes (H5, H7 and H9) have transmitted directly from birds to man, posing a pandemic threat. Objectives We have investigated the immunogenicity and protective efficacy of a cell based candidate pandemic influenza H7 vaccine in pre‐clinical ani...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Blackwell Publishing Ltd
2009
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4634691/ https://www.ncbi.nlm.nih.gov/pubmed/19453487 http://dx.doi.org/10.1111/j.1750-2659.2009.00082.x |
_version_ | 1782399400490827776 |
---|---|
author | Cox, Rebecca J. Major, Diane Hauge, Solveig Madhun, Abdullah S. Brokstad, Karl A. Kuhne, Mirjam Smith, Jon Vogel, Frederick R. Zambon, Maria Haaheim, Lars R. Wood, John |
author_facet | Cox, Rebecca J. Major, Diane Hauge, Solveig Madhun, Abdullah S. Brokstad, Karl A. Kuhne, Mirjam Smith, Jon Vogel, Frederick R. Zambon, Maria Haaheim, Lars R. Wood, John |
author_sort | Cox, Rebecca J. |
collection | PubMed |
description | Background In recent years, several avian influenza subtypes (H5, H7 and H9) have transmitted directly from birds to man, posing a pandemic threat. Objectives We have investigated the immunogenicity and protective efficacy of a cell based candidate pandemic influenza H7 vaccine in pre‐clinical animal models. Methods Mice and ferrets were immunised with two doses of the split virus vaccine (12–24 μg haemagglutinin) with or without aluminium hydroxide adjuvant and challenged 3 weeks after second dose with the highly pathogenic A/chicken/Italy/13474/99 (H7N1) virus. The H7N1‐specific serum antibody response was also measured. After challenge, viral shedding, weight loss, disease signs and death (only mice) were recorded. Results Low‐to‐modest serum antibody titres were detected after vaccination. Nevertheless, the vaccine induced significant protection from disease after challenge with the wild‐type virus. In the murine lethal challenge model, vaccination effectively prevented death and, furthermore, formulation with adjuvant reduced excessive weight loss and viral shedding. In ferrets, vaccination reduced viral shedding and protected against systemic spread of the virus. Conclusions We have extended to the H7 subtype the finding that protective efficacy may not be directly correlated with the pre‐challenge levels of serum antibodies, a finding which could be of great importance in assessing the potential effectiveness of pandemic influenza vaccines. |
format | Online Article Text |
id | pubmed-4634691 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2009 |
publisher | Blackwell Publishing Ltd |
record_format | MEDLINE/PubMed |
spelling | pubmed-46346912015-11-27 A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models Cox, Rebecca J. Major, Diane Hauge, Solveig Madhun, Abdullah S. Brokstad, Karl A. Kuhne, Mirjam Smith, Jon Vogel, Frederick R. Zambon, Maria Haaheim, Lars R. Wood, John Influenza Other Respir Viruses Original Articles Background In recent years, several avian influenza subtypes (H5, H7 and H9) have transmitted directly from birds to man, posing a pandemic threat. Objectives We have investigated the immunogenicity and protective efficacy of a cell based candidate pandemic influenza H7 vaccine in pre‐clinical animal models. Methods Mice and ferrets were immunised with two doses of the split virus vaccine (12–24 μg haemagglutinin) with or without aluminium hydroxide adjuvant and challenged 3 weeks after second dose with the highly pathogenic A/chicken/Italy/13474/99 (H7N1) virus. The H7N1‐specific serum antibody response was also measured. After challenge, viral shedding, weight loss, disease signs and death (only mice) were recorded. Results Low‐to‐modest serum antibody titres were detected after vaccination. Nevertheless, the vaccine induced significant protection from disease after challenge with the wild‐type virus. In the murine lethal challenge model, vaccination effectively prevented death and, furthermore, formulation with adjuvant reduced excessive weight loss and viral shedding. In ferrets, vaccination reduced viral shedding and protected against systemic spread of the virus. Conclusions We have extended to the H7 subtype the finding that protective efficacy may not be directly correlated with the pre‐challenge levels of serum antibodies, a finding which could be of great importance in assessing the potential effectiveness of pandemic influenza vaccines. Blackwell Publishing Ltd 2009-04-09 2009-05 /pmc/articles/PMC4634691/ /pubmed/19453487 http://dx.doi.org/10.1111/j.1750-2659.2009.00082.x Text en © 2009 The Authors. Journal Compilation © 2009 Blackwell Publishing Ltd |
spellingShingle | Original Articles Cox, Rebecca J. Major, Diane Hauge, Solveig Madhun, Abdullah S. Brokstad, Karl A. Kuhne, Mirjam Smith, Jon Vogel, Frederick R. Zambon, Maria Haaheim, Lars R. Wood, John A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title | A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title_full | A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title_fullStr | A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title_full_unstemmed | A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title_short | A cell‐based H7N1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
title_sort | cell‐based h7n1 split influenza virion vaccine confers protection in mouse and ferret challenge models |
topic | Original Articles |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4634691/ https://www.ncbi.nlm.nih.gov/pubmed/19453487 http://dx.doi.org/10.1111/j.1750-2659.2009.00082.x |
work_keys_str_mv | AT coxrebeccaj acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT majordiane acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT haugesolveig acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT madhunabdullahs acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT brokstadkarla acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT kuhnemirjam acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT smithjon acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT vogelfrederickr acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT zambonmaria acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT haaheimlarsr acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT woodjohn acellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT coxrebeccaj cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT majordiane cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT haugesolveig cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT madhunabdullahs cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT brokstadkarla cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT kuhnemirjam cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT smithjon cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT vogelfrederickr cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT zambonmaria cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT haaheimlarsr cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels AT woodjohn cellbasedh7n1splitinfluenzavirionvaccineconfersprotectioninmouseandferretchallengemodels |