Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif

Introduction<p>There is an urgent need for influenza vaccine strategies that enhance protection against influenza virus drift and across different subtypes. The conserved viral nucleoprotein (NP) is the most abundant viral protein during replication, and a target for broadly protective cellula...

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Tác giả chính: Ebony N. Gary (2019478) (author)
Tác giả khác: Abigail R. Trachtman (21841544) (author), Dan Wang (34472) (author), Suman Bharti (9990011) (author), Ying Ye (72583) (author), Nicholas J. Tursi (10166063) (author), Martina Tomirotti (22686932) (author), Jillian Eisenhauer (21841538) (author), Jacqueline D. Chu (21841547) (author), David Custodio Zegarra (22686935) (author), Casey E. Hojecki (22686959) (author), Micki Zheng (22686962) (author), Jayamanna Wickramasinghe (4782693) (author), David B. Weiner (9579320) (author), Ami Patel (139999) (author)
Được phát hành: 2025
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author Ebony N. Gary (2019478)
author2 Abigail R. Trachtman (21841544)
Dan Wang (34472)
Suman Bharti (9990011)
Ying Ye (72583)
Nicholas J. Tursi (10166063)
Martina Tomirotti (22686932)
Jillian Eisenhauer (21841538)
Jacqueline D. Chu (21841547)
David Custodio Zegarra (22686935)
Casey E. Hojecki (22686959)
Micki Zheng (22686962)
Jayamanna Wickramasinghe (4782693)
David B. Weiner (9579320)
Ami Patel (139999)
author2_role author
author
author
author
author
author
author
author
author
author
author
author
author
author
author_facet Ebony N. Gary (2019478)
Abigail R. Trachtman (21841544)
Dan Wang (34472)
Suman Bharti (9990011)
Ying Ye (72583)
Nicholas J. Tursi (10166063)
Martina Tomirotti (22686932)
Jillian Eisenhauer (21841538)
Jacqueline D. Chu (21841547)
David Custodio Zegarra (22686935)
Casey E. Hojecki (22686959)
Micki Zheng (22686962)
Jayamanna Wickramasinghe (4782693)
David B. Weiner (9579320)
Ami Patel (139999)
author_role author
dc.creator.none.fl_str_mv Ebony N. Gary (2019478)
Abigail R. Trachtman (21841544)
Dan Wang (34472)
Suman Bharti (9990011)
Ying Ye (72583)
Nicholas J. Tursi (10166063)
Martina Tomirotti (22686932)
Jillian Eisenhauer (21841538)
Jacqueline D. Chu (21841547)
David Custodio Zegarra (22686935)
Casey E. Hojecki (22686959)
Micki Zheng (22686962)
Jayamanna Wickramasinghe (4782693)
David B. Weiner (9579320)
Ami Patel (139999)
dc.date.none.fl_str_mv 2025-11-26T06:27:53Z
dc.identifier.none.fl_str_mv 10.3389/fimmu.2025.1632121.s009
dc.relation.none.fl_str_mv https://figshare.com/articles/figure/Image_3_Synthetic_DNA_co-immunization_with_vaccine-aligned_common_consensus_nucleoprotein_and_hemagglutinin_protects_mice_against_lethal_influenza_infection_with_a_single_immunization_tif/30718427
dc.rights.none.fl_str_mv CC BY 4.0
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Genetic Immunology
influenza A virus
nucleoprotein
hemagglutinin
synthetic DNA
multivalent vaccine
dc.title.none.fl_str_mv Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
dc.type.none.fl_str_mv Image
Figure
info:eu-repo/semantics/publishedVersion
image
description Introduction<p>There is an urgent need for influenza vaccine strategies that enhance protection against influenza virus drift and across different subtypes. The conserved viral nucleoprotein (NP) is the most abundant viral protein during replication, and a target for broadly protective cellular immune responses.</p>Methods<p>Guided by annual WHO-recommended seasonal vaccine strains, we engineered synthetic DNA vaccine candidates encoding vaccine-aligned common consensus (VACC) immunogens designed to represent the immune diversity of seasonal H1N1 and H3N2 virus NP proteins (pVACC-NPH1; pVACC-NPH3).</p>Results<p>Both pVACC-NPH1 and pVACC-NPH3 DNA vaccines induced robust cellular immune responses in mice, including the induction of durable responses. Immunization with a single dose of either DNA vaccine 14 days prior to lethal A/California/2009 H1N1 virus challenge provided protection against mortality. Single dose co-administration of pVACC-NPH3 with an HA-expressing DNA vaccine (pHAH1) and plasmid-encoded adjuvant pIL-12 afforded improved protection against morbidity and mortality in a high-dose challenge model.</p>Discussion<p>These data highlight the potential of heterologous cellular immunity induced by engineered NP immunogens to complement HA-based approaches to significantly improve challenge outcomes.</p>
eu_rights_str_mv openAccess
id Manara_f65d8f3c6735ce556427e4871bbb63c3
identifier_str_mv 10.3389/fimmu.2025.1632121.s009
network_acronym_str Manara
network_name_str ManaraRepo
oai_identifier_str oai:figshare.com:article/30718427
publishDate 2025
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
rights_invalid_str_mv CC BY 4.0
spelling Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tifEbony N. Gary (2019478)Abigail R. Trachtman (21841544)Dan Wang (34472)Suman Bharti (9990011)Ying Ye (72583)Nicholas J. Tursi (10166063)Martina Tomirotti (22686932)Jillian Eisenhauer (21841538)Jacqueline D. Chu (21841547)David Custodio Zegarra (22686935)Casey E. Hojecki (22686959)Micki Zheng (22686962)Jayamanna Wickramasinghe (4782693)David B. Weiner (9579320)Ami Patel (139999)Genetic Immunologyinfluenza A virusnucleoproteinhemagglutininsynthetic DNAmultivalent vaccineIntroduction<p>There is an urgent need for influenza vaccine strategies that enhance protection against influenza virus drift and across different subtypes. The conserved viral nucleoprotein (NP) is the most abundant viral protein during replication, and a target for broadly protective cellular immune responses.</p>Methods<p>Guided by annual WHO-recommended seasonal vaccine strains, we engineered synthetic DNA vaccine candidates encoding vaccine-aligned common consensus (VACC) immunogens designed to represent the immune diversity of seasonal H1N1 and H3N2 virus NP proteins (pVACC-NPH1; pVACC-NPH3).</p>Results<p>Both pVACC-NPH1 and pVACC-NPH3 DNA vaccines induced robust cellular immune responses in mice, including the induction of durable responses. Immunization with a single dose of either DNA vaccine 14 days prior to lethal A/California/2009 H1N1 virus challenge provided protection against mortality. Single dose co-administration of pVACC-NPH3 with an HA-expressing DNA vaccine (pHAH1) and plasmid-encoded adjuvant pIL-12 afforded improved protection against morbidity and mortality in a high-dose challenge model.</p>Discussion<p>These data highlight the potential of heterologous cellular immunity induced by engineered NP immunogens to complement HA-based approaches to significantly improve challenge outcomes.</p>2025-11-26T06:27:53ZImageFigureinfo:eu-repo/semantics/publishedVersionimage10.3389/fimmu.2025.1632121.s009https://figshare.com/articles/figure/Image_3_Synthetic_DNA_co-immunization_with_vaccine-aligned_common_consensus_nucleoprotein_and_hemagglutinin_protects_mice_against_lethal_influenza_infection_with_a_single_immunization_tif/30718427CC BY 4.0info:eu-repo/semantics/openAccessoai:figshare.com:article/307184272025-11-26T06:27:53Z
spellingShingle Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
Ebony N. Gary (2019478)
Genetic Immunology
influenza A virus
nucleoprotein
hemagglutinin
synthetic DNA
multivalent vaccine
status_str publishedVersion
title Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
title_full Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
title_fullStr Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
title_full_unstemmed Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
title_short Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
title_sort Image 3_Synthetic DNA co-immunization with vaccine-aligned common consensus nucleoprotein and hemagglutinin protects mice against lethal influenza infection with a single immunization.tif
topic Genetic Immunology
influenza A virus
nucleoprotein
hemagglutinin
synthetic DNA
multivalent vaccine