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Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling

Allergen immunotherapy (AIT) is the only modality that can modify immune responses to allergen exposure, but therapeutic coverage is low. One strategy to improve AIT safety and efficacy is the use of new or improved adjuvants. This study investigates immune responses produced by microcrystalline tyr...

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Autores principales: Leuthard, Deborah S., Duda, Agathe, Freiberger, Sandra N., Weiss, Sina, Dommann, Isabella, Fenini, Gabriele, Contassot, Emmanuel, Kramer, Matthias F., Skinner, Murray A., Kündig, Thomas M., Heath, Matthew D., Johansen, Pål
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5911931/
https://www.ncbi.nlm.nih.gov/pubmed/29592962
http://dx.doi.org/10.4049/jimmunol.1800035
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author Leuthard, Deborah S.
Duda, Agathe
Freiberger, Sandra N.
Weiss, Sina
Dommann, Isabella
Fenini, Gabriele
Contassot, Emmanuel
Kramer, Matthias F.
Skinner, Murray A.
Kündig, Thomas M.
Heath, Matthew D.
Johansen, Pål
author_facet Leuthard, Deborah S.
Duda, Agathe
Freiberger, Sandra N.
Weiss, Sina
Dommann, Isabella
Fenini, Gabriele
Contassot, Emmanuel
Kramer, Matthias F.
Skinner, Murray A.
Kündig, Thomas M.
Heath, Matthew D.
Johansen, Pål
author_sort Leuthard, Deborah S.
collection PubMed
description Allergen immunotherapy (AIT) is the only modality that can modify immune responses to allergen exposure, but therapeutic coverage is low. One strategy to improve AIT safety and efficacy is the use of new or improved adjuvants. This study investigates immune responses produced by microcrystalline tyrosine (MCT)–based vaccines as compared with conventional aluminum hydroxide (alum). Wild-type, immune-signaling–deficient, and TCR-transgenic mice were treated with different Ags (e.g., OVA and cat dander Fel d 1), plus MCT or alum as depot adjuvants. Specific Ab responses in serum were measured by ELISA, whereas cytokine secretion was measured both in culture supernatants by ELISA or by flow cytometry of spleen cells. Upon initiation of AIT in allergic mice, body temperature and further clinical signs were used as indicators for anaphylaxis. Overall, MCT and alum induced comparable B and T cell responses, which were independent of TLR signaling. Alum induced stronger IgE and IL-4 secretion than MCT. MCT and alum induced caspase-dependent IL-1β secretion in human monocytes in vitro, but inflammasome activation had no functional effect on inflammatory and Ab responses measured in vivo. In sensitized mice, AIT with MCT-adjuvanted allergens caused fewer anaphylactic reactions compared with alum-adjuvanted allergens. As depot adjuvants, MCT and alum are comparably effective in strength and mechanism of Ag-specific IgG induction and induction of T cell responses. The biocompatible and biodegradable MCT seems therefore a suitable alternative adjuvant to alum-based vaccines and AIT.
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spelling pubmed-59119312018-04-24 Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling Leuthard, Deborah S. Duda, Agathe Freiberger, Sandra N. Weiss, Sina Dommann, Isabella Fenini, Gabriele Contassot, Emmanuel Kramer, Matthias F. Skinner, Murray A. Kündig, Thomas M. Heath, Matthew D. Johansen, Pål J Immunol Immunotherapy and Vaccines Allergen immunotherapy (AIT) is the only modality that can modify immune responses to allergen exposure, but therapeutic coverage is low. One strategy to improve AIT safety and efficacy is the use of new or improved adjuvants. This study investigates immune responses produced by microcrystalline tyrosine (MCT)–based vaccines as compared with conventional aluminum hydroxide (alum). Wild-type, immune-signaling–deficient, and TCR-transgenic mice were treated with different Ags (e.g., OVA and cat dander Fel d 1), plus MCT or alum as depot adjuvants. Specific Ab responses in serum were measured by ELISA, whereas cytokine secretion was measured both in culture supernatants by ELISA or by flow cytometry of spleen cells. Upon initiation of AIT in allergic mice, body temperature and further clinical signs were used as indicators for anaphylaxis. Overall, MCT and alum induced comparable B and T cell responses, which were independent of TLR signaling. Alum induced stronger IgE and IL-4 secretion than MCT. MCT and alum induced caspase-dependent IL-1β secretion in human monocytes in vitro, but inflammasome activation had no functional effect on inflammatory and Ab responses measured in vivo. In sensitized mice, AIT with MCT-adjuvanted allergens caused fewer anaphylactic reactions compared with alum-adjuvanted allergens. As depot adjuvants, MCT and alum are comparably effective in strength and mechanism of Ag-specific IgG induction and induction of T cell responses. The biocompatible and biodegradable MCT seems therefore a suitable alternative adjuvant to alum-based vaccines and AIT. AAI 2018-05-01 2018-03-28 /pmc/articles/PMC5911931/ /pubmed/29592962 http://dx.doi.org/10.4049/jimmunol.1800035 Text en Copyright © 2018 The Authors https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the CC BY 4.0 Unported license.
spellingShingle Immunotherapy and Vaccines
Leuthard, Deborah S.
Duda, Agathe
Freiberger, Sandra N.
Weiss, Sina
Dommann, Isabella
Fenini, Gabriele
Contassot, Emmanuel
Kramer, Matthias F.
Skinner, Murray A.
Kündig, Thomas M.
Heath, Matthew D.
Johansen, Pål
Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title_full Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title_fullStr Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title_full_unstemmed Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title_short Microcrystalline Tyrosine and Aluminum as Adjuvants in Allergen-Specific Immunotherapy Protect from IgE-Mediated Reactivity in Mouse Models and Act Independently of Inflammasome and TLR Signaling
title_sort microcrystalline tyrosine and aluminum as adjuvants in allergen-specific immunotherapy protect from ige-mediated reactivity in mouse models and act independently of inflammasome and tlr signaling
topic Immunotherapy and Vaccines
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5911931/
https://www.ncbi.nlm.nih.gov/pubmed/29592962
http://dx.doi.org/10.4049/jimmunol.1800035
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