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Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection

Attenuated strains of invasive enteric bacteria, such as Salmonella, represent promising gene delivery agents for nucleic acid-based vaccines as they can be administrated orally. In this study, we constructed a novel attenuated strain of Salmonella for the delivery and expression of the hemagglutini...

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Autores principales: Pei, Zenglin, Jiang, Xiaohong, Yang, Zhu, Ren, Xiaoguang, Gong, Hao, Reeves, Michael, Sheng, Jingxue, Wang, Yu, Pan, Zishu, Liu, Fenyong, Wu, Jianguo, Lu, Sangwei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4471199/
https://www.ncbi.nlm.nih.gov/pubmed/26083421
http://dx.doi.org/10.1371/journal.pone.0129276
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author Pei, Zenglin
Jiang, Xiaohong
Yang, Zhu
Ren, Xiaoguang
Gong, Hao
Reeves, Michael
Sheng, Jingxue
Wang, Yu
Pan, Zishu
Liu, Fenyong
Wu, Jianguo
Lu, Sangwei
author_facet Pei, Zenglin
Jiang, Xiaohong
Yang, Zhu
Ren, Xiaoguang
Gong, Hao
Reeves, Michael
Sheng, Jingxue
Wang, Yu
Pan, Zishu
Liu, Fenyong
Wu, Jianguo
Lu, Sangwei
author_sort Pei, Zenglin
collection PubMed
description Attenuated strains of invasive enteric bacteria, such as Salmonella, represent promising gene delivery agents for nucleic acid-based vaccines as they can be administrated orally. In this study, we constructed a novel attenuated strain of Salmonella for the delivery and expression of the hemagglutinin (HA) and neuraminidase (NA) of a highly pathogenic H5N1 influenza virus. We showed that the constructed Salmonella strain exhibited efficient gene transfer activity for HA and NA expression and little cytotoxicity and pathogenicity in mice. Using BALB/c mice as the model, we evaluated the immune responses and protection induced by the constructed Salmonella-based vaccine. Our study showed that the Salmonella-based vaccine induced significant production of anti-HA serum IgG and mucosal IgA, and of anti-HA interferon-γ producing T cells in orally vaccinated mice. Furthermore, mice orally vaccinated with the Salmonella vaccine expressing viral HA and NA proteins were completely protected from lethal challenge of highly pathogenic H5N1 as well as H1N1 influenza viruses while none of the animals treated with the Salmonella vaccine carrying the empty expression vector with no viral antigen expression was protected. These results suggest that the Salmonella-based vaccine elicits strong antigen-specific humoral and cellular immune responses and provides effective immune protection against multiple strains of influenza viruses. Furthermore, our study demonstrates the feasibility of developing novel attenuated Salmonella strains as new oral vaccine vectors against influenza viruses.
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spelling pubmed-44711992015-06-29 Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection Pei, Zenglin Jiang, Xiaohong Yang, Zhu Ren, Xiaoguang Gong, Hao Reeves, Michael Sheng, Jingxue Wang, Yu Pan, Zishu Liu, Fenyong Wu, Jianguo Lu, Sangwei PLoS One Research Article Attenuated strains of invasive enteric bacteria, such as Salmonella, represent promising gene delivery agents for nucleic acid-based vaccines as they can be administrated orally. In this study, we constructed a novel attenuated strain of Salmonella for the delivery and expression of the hemagglutinin (HA) and neuraminidase (NA) of a highly pathogenic H5N1 influenza virus. We showed that the constructed Salmonella strain exhibited efficient gene transfer activity for HA and NA expression and little cytotoxicity and pathogenicity in mice. Using BALB/c mice as the model, we evaluated the immune responses and protection induced by the constructed Salmonella-based vaccine. Our study showed that the Salmonella-based vaccine induced significant production of anti-HA serum IgG and mucosal IgA, and of anti-HA interferon-γ producing T cells in orally vaccinated mice. Furthermore, mice orally vaccinated with the Salmonella vaccine expressing viral HA and NA proteins were completely protected from lethal challenge of highly pathogenic H5N1 as well as H1N1 influenza viruses while none of the animals treated with the Salmonella vaccine carrying the empty expression vector with no viral antigen expression was protected. These results suggest that the Salmonella-based vaccine elicits strong antigen-specific humoral and cellular immune responses and provides effective immune protection against multiple strains of influenza viruses. Furthermore, our study demonstrates the feasibility of developing novel attenuated Salmonella strains as new oral vaccine vectors against influenza viruses. Public Library of Science 2015-06-17 /pmc/articles/PMC4471199/ /pubmed/26083421 http://dx.doi.org/10.1371/journal.pone.0129276 Text en © 2015 Pei et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Pei, Zenglin
Jiang, Xiaohong
Yang, Zhu
Ren, Xiaoguang
Gong, Hao
Reeves, Michael
Sheng, Jingxue
Wang, Yu
Pan, Zishu
Liu, Fenyong
Wu, Jianguo
Lu, Sangwei
Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title_full Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title_fullStr Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title_full_unstemmed Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title_short Oral Delivery of a Novel Attenuated Salmonella Vaccine Expressing Influenza A Virus Proteins Protects Mice against H5N1 and H1N1 Viral Infection
title_sort oral delivery of a novel attenuated salmonella vaccine expressing influenza a virus proteins protects mice against h5n1 and h1n1 viral infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4471199/
https://www.ncbi.nlm.nih.gov/pubmed/26083421
http://dx.doi.org/10.1371/journal.pone.0129276
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