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Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7

Qb bacteriophage virus-like particles (Qb-VLP) are utilized as carriers to enhance immune responses to weakly or non-immunogenic antigens such as peptides and haptens. Qb-VLPs are formed through the self-assembly of multiple Qb capsid protein monomers, a process which traps a large amount of bacteri...

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Autores principales: Akache, Bassel, Weeratna, Risini D., Deora, Aparna, Thorn, Jennifer M., Champion, Brian, Merson, James R., Davis, Heather L., McCluskie, Michael J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4810055/
https://www.ncbi.nlm.nih.gov/pubmed/26805897
http://dx.doi.org/10.3390/vaccines4010003
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author Akache, Bassel
Weeratna, Risini D.
Deora, Aparna
Thorn, Jennifer M.
Champion, Brian
Merson, James R.
Davis, Heather L.
McCluskie, Michael J.
author_facet Akache, Bassel
Weeratna, Risini D.
Deora, Aparna
Thorn, Jennifer M.
Champion, Brian
Merson, James R.
Davis, Heather L.
McCluskie, Michael J.
author_sort Akache, Bassel
collection PubMed
description Qb bacteriophage virus-like particles (Qb-VLP) are utilized as carriers to enhance immune responses to weakly or non-immunogenic antigens such as peptides and haptens. Qb-VLPs are formed through the self-assembly of multiple Qb capsid protein monomers, a process which traps a large amount of bacterial RNA in the core of the VLP. Bacterial RNA is known to activate the innate immune system via TLR 7 and 8 found within the endosomes of certain immune cells and has been shown to contribute to the immunogenicity of Qb-VLP vaccines. Herein, we evaluated an anti-IgE vaccine comprised of two IgE peptides (Y and P) conjugated to Qb-VLP (Qb-Y and Qb-P, respectively) for in vitro stimulation of human PBMCs and in vivo immunogenicity in mice. The in vitro secretion of IFN-α from human PBMCs exposed to Qb-Y is consistent with TLR7 activation. Immunization of mice with the IgE peptide Qb-VLP conjugates induced high titers of anti-IgE antibodies in wild-type mice, but significantly lower titers in TLR7 knockout mice, supporting the self-adjuvanting role of the RNA. Inclusion of alum and alum/CpG as adjuvants partially or completely compensated for the lack of TLR7 activation in TLR7-deficient mice. Our study demonstrates the key role that TLR7 plays in the immunogenicity of the IgE peptide Qb-VLP conjugate vaccine.
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spelling pubmed-48100552016-04-04 Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7 Akache, Bassel Weeratna, Risini D. Deora, Aparna Thorn, Jennifer M. Champion, Brian Merson, James R. Davis, Heather L. McCluskie, Michael J. Vaccines (Basel) Communication Qb bacteriophage virus-like particles (Qb-VLP) are utilized as carriers to enhance immune responses to weakly or non-immunogenic antigens such as peptides and haptens. Qb-VLPs are formed through the self-assembly of multiple Qb capsid protein monomers, a process which traps a large amount of bacterial RNA in the core of the VLP. Bacterial RNA is known to activate the innate immune system via TLR 7 and 8 found within the endosomes of certain immune cells and has been shown to contribute to the immunogenicity of Qb-VLP vaccines. Herein, we evaluated an anti-IgE vaccine comprised of two IgE peptides (Y and P) conjugated to Qb-VLP (Qb-Y and Qb-P, respectively) for in vitro stimulation of human PBMCs and in vivo immunogenicity in mice. The in vitro secretion of IFN-α from human PBMCs exposed to Qb-Y is consistent with TLR7 activation. Immunization of mice with the IgE peptide Qb-VLP conjugates induced high titers of anti-IgE antibodies in wild-type mice, but significantly lower titers in TLR7 knockout mice, supporting the self-adjuvanting role of the RNA. Inclusion of alum and alum/CpG as adjuvants partially or completely compensated for the lack of TLR7 activation in TLR7-deficient mice. Our study demonstrates the key role that TLR7 plays in the immunogenicity of the IgE peptide Qb-VLP conjugate vaccine. MDPI 2016-01-21 /pmc/articles/PMC4810055/ /pubmed/26805897 http://dx.doi.org/10.3390/vaccines4010003 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Akache, Bassel
Weeratna, Risini D.
Deora, Aparna
Thorn, Jennifer M.
Champion, Brian
Merson, James R.
Davis, Heather L.
McCluskie, Michael J.
Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title_full Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title_fullStr Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title_full_unstemmed Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title_short Anti-IgE Qb-VLP Conjugate Vaccine Self-Adjuvants through Activation of TLR7
title_sort anti-ige qb-vlp conjugate vaccine self-adjuvants through activation of tlr7
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4810055/
https://www.ncbi.nlm.nih.gov/pubmed/26805897
http://dx.doi.org/10.3390/vaccines4010003
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