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1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses

BACKGROUND: Traditional influenza vaccine production often leads to mismatch due to antigenic drift, thereby reducing protection. Alternate vaccine strategies that are peptide-based, nanoparticle-based or nucleic acid-based are being developed. Composite multi-epitope peptides provide a cost-effecti...

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Autores principales: Rikhi, Nimisha, Sei, Clara J, Rao, Mangala, Schuman, Richard F, Kroscher, Kellie, Matyas, Gary R, Muema, Kevin, Lange, Camille, Assiaw-Dufu, Aba, Hussin, Elizabeth, Jobe, Ousman, Alving, Carl R, Fischer, Gerald W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10677396/
http://dx.doi.org/10.1093/ofid/ofad500.1009
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author Rikhi, Nimisha
Sei, Clara J
Rao, Mangala
Schuman, Richard F
Kroscher, Kellie
Matyas, Gary R
Muema, Kevin
Lange, Camille
Assiaw-Dufu, Aba
Hussin, Elizabeth
Jobe, Ousman
Alving, Carl R
Fischer, Gerald W
author_facet Rikhi, Nimisha
Sei, Clara J
Rao, Mangala
Schuman, Richard F
Kroscher, Kellie
Matyas, Gary R
Muema, Kevin
Lange, Camille
Assiaw-Dufu, Aba
Hussin, Elizabeth
Jobe, Ousman
Alving, Carl R
Fischer, Gerald W
author_sort Rikhi, Nimisha
collection PubMed
description BACKGROUND: Traditional influenza vaccine production often leads to mismatch due to antigenic drift, thereby reducing protection. Alternate vaccine strategies that are peptide-based, nanoparticle-based or nucleic acid-based are being developed. Composite multi-epitope peptides provide a cost-effective and easily scalable strategy towards a universal influenza vaccine. In this study, we demonstrate that unconjugated, multi-epitope peptides formulated with the highly potent adjuvant Army Liposome Formulation with QS-21 (ALFQ) generate broadly reactive durable antibodies to human and avian influenza viruses when administered intramuscularly or intradermally. METHODS: ICR mice were immunized with an unconjugated composite influenza peptide vaccine comprising HA+NA (Flu Pep11) and Matrix (M1/M2/M2e)+T-cell epitope (Flu Pep5906) formulated with ALFQ. A low-dose (1 µg) and high-dose (20 µg) of vaccine was administered intramuscularly or intradermally. Isotype-specific IgG titers to composite peptides, individual epitopes, and multiple strains of influenza A (H1N1, H3N2, H5N1), and B (Yamagata, Victoria) were analyzed by ELISA. Neutralizing titers against Group 1 and Group 2 viruses were determined using microneutralization assay. RESULTS: A robust IgG1 and IgG2b antibody response was seen at day 21 post primary immunization and remained steady for all groups up to day 200 (duration of study). IgG2a and IgG3 titers were also generated. Antibodies recognized multiple strains each of human and avian influenza A and influenza B virus subtypes, 200 days post primary immunization, and were comparable between doses and routes. Strong neutralizing titers were shown against Group 1 and 2 influenza viruses. CONCLUSION: An unconjugated peptide vaccine comprising multiple highly conserved epitopes of HA, NA and Matrix formulated with ALFQ adjuvant and administered intramuscularly or intradermally, generated broad and durable antibodies to human and avian influenza viruses. Induced antibodies neutralized seasonal and pandemic influenza strains. These composite peptides adjuvanted with ALFQ generate durable and broad immunity and provide a cost-effective and easily scalable strategy that moves us closer to a universal influenza vaccine. DISCLOSURES: All Authors: No reported disclosures
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spelling pubmed-106773962023-11-27 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses Rikhi, Nimisha Sei, Clara J Rao, Mangala Schuman, Richard F Kroscher, Kellie Matyas, Gary R Muema, Kevin Lange, Camille Assiaw-Dufu, Aba Hussin, Elizabeth Jobe, Ousman Alving, Carl R Fischer, Gerald W Open Forum Infect Dis Abstract BACKGROUND: Traditional influenza vaccine production often leads to mismatch due to antigenic drift, thereby reducing protection. Alternate vaccine strategies that are peptide-based, nanoparticle-based or nucleic acid-based are being developed. Composite multi-epitope peptides provide a cost-effective and easily scalable strategy towards a universal influenza vaccine. In this study, we demonstrate that unconjugated, multi-epitope peptides formulated with the highly potent adjuvant Army Liposome Formulation with QS-21 (ALFQ) generate broadly reactive durable antibodies to human and avian influenza viruses when administered intramuscularly or intradermally. METHODS: ICR mice were immunized with an unconjugated composite influenza peptide vaccine comprising HA+NA (Flu Pep11) and Matrix (M1/M2/M2e)+T-cell epitope (Flu Pep5906) formulated with ALFQ. A low-dose (1 µg) and high-dose (20 µg) of vaccine was administered intramuscularly or intradermally. Isotype-specific IgG titers to composite peptides, individual epitopes, and multiple strains of influenza A (H1N1, H3N2, H5N1), and B (Yamagata, Victoria) were analyzed by ELISA. Neutralizing titers against Group 1 and Group 2 viruses were determined using microneutralization assay. RESULTS: A robust IgG1 and IgG2b antibody response was seen at day 21 post primary immunization and remained steady for all groups up to day 200 (duration of study). IgG2a and IgG3 titers were also generated. Antibodies recognized multiple strains each of human and avian influenza A and influenza B virus subtypes, 200 days post primary immunization, and were comparable between doses and routes. Strong neutralizing titers were shown against Group 1 and 2 influenza viruses. CONCLUSION: An unconjugated peptide vaccine comprising multiple highly conserved epitopes of HA, NA and Matrix formulated with ALFQ adjuvant and administered intramuscularly or intradermally, generated broad and durable antibodies to human and avian influenza viruses. Induced antibodies neutralized seasonal and pandemic influenza strains. These composite peptides adjuvanted with ALFQ generate durable and broad immunity and provide a cost-effective and easily scalable strategy that moves us closer to a universal influenza vaccine. DISCLOSURES: All Authors: No reported disclosures Oxford University Press 2023-11-27 /pmc/articles/PMC10677396/ http://dx.doi.org/10.1093/ofid/ofad500.1009 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Infectious Diseases Society of America. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Abstract
Rikhi, Nimisha
Sei, Clara J
Rao, Mangala
Schuman, Richard F
Kroscher, Kellie
Matyas, Gary R
Muema, Kevin
Lange, Camille
Assiaw-Dufu, Aba
Hussin, Elizabeth
Jobe, Ousman
Alving, Carl R
Fischer, Gerald W
1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title_full 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title_fullStr 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title_full_unstemmed 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title_short 1169. Unconjugated Multi-epitope Peptides Adjuvanted with ALFQ Induce Durable and Broadly Reactive Antibodies to Human and Avian Influenza Viruses
title_sort 1169. unconjugated multi-epitope peptides adjuvanted with alfq induce durable and broadly reactive antibodies to human and avian influenza viruses
topic Abstract
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10677396/
http://dx.doi.org/10.1093/ofid/ofad500.1009
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