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Journal article

Novel bivalent viral-vectored vaccines induce potent humoral and cellular immune responses conferring protection against stringent influenza a virus challenge

Abstract:
Seasonal influenza viruses are a common cause of acute respiratory illness worldwide and generate a significant socioeconomic burden. Influenza viruses mutate rapidly, necessitating annual vaccine reformulation because traditional vaccines do not typically induce broad-spectrum immunity. In addition to seasonal infections, emerging pandemic influenza viruses present a continued threat to global public health. Pandemic influenza viruses have consistently higher attack rates and are typically associated with greater mortality compared with seasonal strains. Ongoing strategies to improve vaccine efficacy typically focus on providing broad-spectrum immunity; although B and T cells can mediate heterosubtypic responses, typical vaccine development will augment either humoral or cellular immunity. However, multipronged approaches that target several Ags may limit the generation of viral escape mutants. There are few vaccine platforms that can deliver multiple Ags and generate robust cellular and humoral immunity. In this article, we describe a novel vaccination strategy, tested preclinically in mice, for the delivery of novel bivalent viral-vectored vaccines. We show this strategy elicits potent T cell responses toward highly conserved internal Ags while simultaneously inducing high levels of Abs toward hemagglutinin. Importantly, these humoral responses generate long-lived plasma cells and generate Abs capable of neutralizing variant hemagglutinin-expressing pseudotyped lentiviruses. Significantly, these novel viral-vectored vaccines induce strong immune responses capable of conferring protection in a stringent influenza A virus challenge. Thus, this vaccination regimen induces lasting efficacy toward influenza. Importantly, the simultaneous delivery of dual Ags may alleviate the selective pressure that is thought to potentiate antigenic diversity in avian influenza viruses.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.4049/jimmunol.1600939

Authors


More by this author
Institution:
University of Oxford
Division:
MSD
Department:
NDM
Sub department:
Jenner Institute
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MSD
Department:
NDM
Sub department:
NDM Experimental Medicine
Role:
Author
More by this author
Institution:
University of Oxford
Division:
MSD
Department:
NDM
Sub department:
Jenner Institute
Role:
Author


Publisher:
American Association of Immunologists
Journal:
Journal of Immunology More from this journal
Volume:
199
Issue:
4
Pages:
1333-1341
Publication date:
2017-07-19
Acceptance date:
2017-07-14
DOI:
EISSN:
1550-6606
ISSN:
0022-1767


Pubs id:
pubs:709672
UUID:
uuid:d9dd47ab-777b-406a-bcc8-7d7732aabb02
Local pid:
pubs:709672
Source identifiers:
709672
Deposit date:
2017-07-28

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