Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.

The emergence of H5, H7, and H9 avian influenza virus subtypes in humans reveals their pandemic potential. Although human-to-human transmission has been limited, the genetic reassortment of the avian and human/porcine influenza viruses or mutations in some of the genes resulting in virus replication...

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Main Authors: Ahmed O Hassan, Omar Amen, Ekramy E Sayedahmed, Sai V Vemula, Samuel Amoah, Ian York, Shivaprakash Gangappa, Suryaprakash Sambhara, Suresh K Mittal
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5638338?pdf=render
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spelling doaj-936c9f21692d406392e34f68afebf5d22020-11-24T21:52:12ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011210e018624410.1371/journal.pone.0186244Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.Ahmed O HassanOmar AmenEkramy E SayedahmedSai V VemulaSamuel AmoahIan YorkShivaprakash GangappaSuryaprakash SambharaSuresh K MittalThe emergence of H5, H7, and H9 avian influenza virus subtypes in humans reveals their pandemic potential. Although human-to-human transmission has been limited, the genetic reassortment of the avian and human/porcine influenza viruses or mutations in some of the genes resulting in virus replication in the upper respiratory tract of humans could generate novel pandemic influenza viruses. Current vaccines do not provide cross protection against antigenically distinct strains of the H5, H7, and H9 influenza viruses. Therefore, newer vaccine approaches are needed to overcome these potential threats. We developed an egg-independent, adenovirus vector-based, multi-epitope (ME) vaccine approach using the relatively conserved immunogenic domains of the H5N1 influenza virus [M2 ectodomain (M2e), hemagglutinin (HA) fusion domain (HFD), T-cell epitope of nucleoprotein (TNP). and HA α-helix domain (HαD)]. Our ME vaccine induced humoral and cell-mediated immune responses and caused a significant reduction in the viral loads in the lungs of vaccinated mice that were challenged with antigenically distinct H5, H7, or H9 avian influenza viruses. These results suggest that our ME vaccine approach provided broad protection against the avian influenza viruses. Further improvement of this vaccine will lead to a pre-pandemic vaccine that may lower morbidity, hinder transmission, and prevent mortality in a pandemic situation before a strain-matched vaccine becomes available.http://europepmc.org/articles/PMC5638338?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ahmed O Hassan
Omar Amen
Ekramy E Sayedahmed
Sai V Vemula
Samuel Amoah
Ian York
Shivaprakash Gangappa
Suryaprakash Sambhara
Suresh K Mittal
spellingShingle Ahmed O Hassan
Omar Amen
Ekramy E Sayedahmed
Sai V Vemula
Samuel Amoah
Ian York
Shivaprakash Gangappa
Suryaprakash Sambhara
Suresh K Mittal
Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
PLoS ONE
author_facet Ahmed O Hassan
Omar Amen
Ekramy E Sayedahmed
Sai V Vemula
Samuel Amoah
Ian York
Shivaprakash Gangappa
Suryaprakash Sambhara
Suresh K Mittal
author_sort Ahmed O Hassan
title Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
title_short Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
title_full Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
title_fullStr Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
title_full_unstemmed Adenovirus vector-based multi-epitope vaccine provides partial protection against H5, H7, and H9 avian influenza viruses.
title_sort adenovirus vector-based multi-epitope vaccine provides partial protection against h5, h7, and h9 avian influenza viruses.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The emergence of H5, H7, and H9 avian influenza virus subtypes in humans reveals their pandemic potential. Although human-to-human transmission has been limited, the genetic reassortment of the avian and human/porcine influenza viruses or mutations in some of the genes resulting in virus replication in the upper respiratory tract of humans could generate novel pandemic influenza viruses. Current vaccines do not provide cross protection against antigenically distinct strains of the H5, H7, and H9 influenza viruses. Therefore, newer vaccine approaches are needed to overcome these potential threats. We developed an egg-independent, adenovirus vector-based, multi-epitope (ME) vaccine approach using the relatively conserved immunogenic domains of the H5N1 influenza virus [M2 ectodomain (M2e), hemagglutinin (HA) fusion domain (HFD), T-cell epitope of nucleoprotein (TNP). and HA α-helix domain (HαD)]. Our ME vaccine induced humoral and cell-mediated immune responses and caused a significant reduction in the viral loads in the lungs of vaccinated mice that were challenged with antigenically distinct H5, H7, or H9 avian influenza viruses. These results suggest that our ME vaccine approach provided broad protection against the avian influenza viruses. Further improvement of this vaccine will lead to a pre-pandemic vaccine that may lower morbidity, hinder transmission, and prevent mortality in a pandemic situation before a strain-matched vaccine becomes available.
url http://europepmc.org/articles/PMC5638338?pdf=render
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