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Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA

Please cite this paper as: Verity et al. (2011) Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA. Influenza and Other Respiratory Viruses DOI:10.1111/j.1750‐2659.2011.00273.x. Background  Vaccination is considered the most effective means of reducing influen...

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Autores principales: Verity, Erin E., Camuglia, Sarina, Agius, Catherine T., Ong, Chi, Shaw, Robert, Barr, Ian, Middleton, Deborah, Rockman, Steven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4942080/
https://www.ncbi.nlm.nih.gov/pubmed/21771285
http://dx.doi.org/10.1111/j.1750-2659.2011.00273.x
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author Verity, Erin E.
Camuglia, Sarina
Agius, Catherine T.
Ong, Chi
Shaw, Robert
Barr, Ian
Middleton, Deborah
Rockman, Steven
author_facet Verity, Erin E.
Camuglia, Sarina
Agius, Catherine T.
Ong, Chi
Shaw, Robert
Barr, Ian
Middleton, Deborah
Rockman, Steven
author_sort Verity, Erin E.
collection PubMed
description Please cite this paper as: Verity et al. (2011) Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA. Influenza and Other Respiratory Viruses DOI:10.1111/j.1750‐2659.2011.00273.x. Background  Vaccination is considered the most effective means of reducing influenza burden. The emergence of H5N1 and pandemic spread of novel H1N1/2009 viruses reinforces the need to have strategies in place to rapidly develop seed viruses for vaccine manufacture. Methods  Candidate pandemic vaccine strains consisting of the circulating strain haemagglutinin (HA) and neuraminidase (NA) in an A/PR/8/34 backbone were generated using alternative synthetic DNA approaches, including site‐directed mutagenesis of DNA encoding related virus strains, and rapid generation of virus using synthetic DNA cloned into plasmid vectors. Results  Firstly, synthetic A/Bar Headed Goose/Qinghai/1A/2005 (H5N1) virus was generated from an A/Vietnam/1194/2004 template using site‐directed mutagenesis. Secondly, A/Whooper Swan/Mongolia/244/2005 (H5N1) and A/California/04/09 (H1N1) viruses were generated using synthetic DNA encoding the viral HA and NA genes. Replication and antigenicity of the synthetic viruses were comparable to that of the corresponding non‐synthetic viruses. Conclusions  In the event of an influenza pandemic, the use of these approaches may significantly reduce the time required to generate and distribute the vaccine seed virus and vaccine manufacture. These approaches also offer the advantage of not needing to handle wild‐type virus, potentially diminishing biocontainment requirements.
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spelling pubmed-49420802016-07-18 Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA Verity, Erin E. Camuglia, Sarina Agius, Catherine T. Ong, Chi Shaw, Robert Barr, Ian Middleton, Deborah Rockman, Steven Influenza Other Respir Viruses Original Articles Please cite this paper as: Verity et al. (2011) Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA. Influenza and Other Respiratory Viruses DOI:10.1111/j.1750‐2659.2011.00273.x. Background  Vaccination is considered the most effective means of reducing influenza burden. The emergence of H5N1 and pandemic spread of novel H1N1/2009 viruses reinforces the need to have strategies in place to rapidly develop seed viruses for vaccine manufacture. Methods  Candidate pandemic vaccine strains consisting of the circulating strain haemagglutinin (HA) and neuraminidase (NA) in an A/PR/8/34 backbone were generated using alternative synthetic DNA approaches, including site‐directed mutagenesis of DNA encoding related virus strains, and rapid generation of virus using synthetic DNA cloned into plasmid vectors. Results  Firstly, synthetic A/Bar Headed Goose/Qinghai/1A/2005 (H5N1) virus was generated from an A/Vietnam/1194/2004 template using site‐directed mutagenesis. Secondly, A/Whooper Swan/Mongolia/244/2005 (H5N1) and A/California/04/09 (H1N1) viruses were generated using synthetic DNA encoding the viral HA and NA genes. Replication and antigenicity of the synthetic viruses were comparable to that of the corresponding non‐synthetic viruses. Conclusions  In the event of an influenza pandemic, the use of these approaches may significantly reduce the time required to generate and distribute the vaccine seed virus and vaccine manufacture. These approaches also offer the advantage of not needing to handle wild‐type virus, potentially diminishing biocontainment requirements. Blackwell Publishing Ltd 2011-07-19 2012-03 /pmc/articles/PMC4942080/ /pubmed/21771285 http://dx.doi.org/10.1111/j.1750-2659.2011.00273.x Text en © 2011 Blackwell Publishing Ltd
spellingShingle Original Articles
Verity, Erin E.
Camuglia, Sarina
Agius, Catherine T.
Ong, Chi
Shaw, Robert
Barr, Ian
Middleton, Deborah
Rockman, Steven
Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title_full Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title_fullStr Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title_full_unstemmed Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title_short Rapid generation of pandemic influenza virus vaccine candidate strains using synthetic DNA
title_sort rapid generation of pandemic influenza virus vaccine candidate strains using synthetic dna
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4942080/
https://www.ncbi.nlm.nih.gov/pubmed/21771285
http://dx.doi.org/10.1111/j.1750-2659.2011.00273.x
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