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Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth

The skin is an attractive alternative administration route for allergy vaccination, as the skin is rich in dendritic cells (DCs) and is easily accessible. In the skin multiple subsets of DCs with distinct roles reside at different depths. In this study antigen (=allergen for allergy) formulations we...

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Autores principales: Leboux, Romain J. T., Schipper, Pim, van Capel, Toni M. M., Kong, Lily, van der Maaden, Koen, Kros, Alexander, Jiskoot, Wim, de Jong, Esther C., Bouwstra, Joke A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8974696/
https://www.ncbi.nlm.nih.gov/pubmed/35386985
http://dx.doi.org/10.3389/falgy.2021.642788
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author Leboux, Romain J. T.
Schipper, Pim
van Capel, Toni M. M.
Kong, Lily
van der Maaden, Koen
Kros, Alexander
Jiskoot, Wim
de Jong, Esther C.
Bouwstra, Joke A.
author_facet Leboux, Romain J. T.
Schipper, Pim
van Capel, Toni M. M.
Kong, Lily
van der Maaden, Koen
Kros, Alexander
Jiskoot, Wim
de Jong, Esther C.
Bouwstra, Joke A.
author_sort Leboux, Romain J. T.
collection PubMed
description The skin is an attractive alternative administration route for allergy vaccination, as the skin is rich in dendritic cells (DCs) and is easily accessible. In the skin multiple subsets of DCs with distinct roles reside at different depths. In this study antigen (=allergen for allergy) formulations were injected in ex vivo human skin in a depth-controlled manner by using a hollow microneedle injection system. Biopsies were harvested at the injection site, which were then cultured for 72 h. Subsequently, the crawled-out cells were collected from the medium and analyzed with flow cytometry. Intradermal administration of ovalbumin (OVA, model antigen) solution at various depths in the skin did not affect the migration and maturation of DCs. OVA was taken up efficiently by the DCs, and this was not affected by the injection depth. In contrast, Bet v 1, the major allergen in birch pollen allergy, was barely taken up by dermal DCs (dDCs). Antigens were more efficiently taken up by CD14(+) dDCs than CD1a(+) dDCs, which in turn were more efficient at taken up antigen than Langerhans cells. Subsequently, both OVA and Bet v 1 were formulated in cationic and anionic liposomes, which altered antigen uptake drastically following intradermal microinjection. While OVA uptake was reduced by formulation in liposomes, Bet v 1 uptake in dDCs was increased by encapsulation in both cationic and anionic liposomes. This highlights the potential use of liposomes as adjuvant in intradermal allergy vaccine delivery. In conclusion, we observed that antigen uptake after intradermal injection was not affected by injection depth, but varied between different antigens and formulation.
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spelling pubmed-89746962022-04-05 Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth Leboux, Romain J. T. Schipper, Pim van Capel, Toni M. M. Kong, Lily van der Maaden, Koen Kros, Alexander Jiskoot, Wim de Jong, Esther C. Bouwstra, Joke A. Front Allergy Allergy The skin is an attractive alternative administration route for allergy vaccination, as the skin is rich in dendritic cells (DCs) and is easily accessible. In the skin multiple subsets of DCs with distinct roles reside at different depths. In this study antigen (=allergen for allergy) formulations were injected in ex vivo human skin in a depth-controlled manner by using a hollow microneedle injection system. Biopsies were harvested at the injection site, which were then cultured for 72 h. Subsequently, the crawled-out cells were collected from the medium and analyzed with flow cytometry. Intradermal administration of ovalbumin (OVA, model antigen) solution at various depths in the skin did not affect the migration and maturation of DCs. OVA was taken up efficiently by the DCs, and this was not affected by the injection depth. In contrast, Bet v 1, the major allergen in birch pollen allergy, was barely taken up by dermal DCs (dDCs). Antigens were more efficiently taken up by CD14(+) dDCs than CD1a(+) dDCs, which in turn were more efficient at taken up antigen than Langerhans cells. Subsequently, both OVA and Bet v 1 were formulated in cationic and anionic liposomes, which altered antigen uptake drastically following intradermal microinjection. While OVA uptake was reduced by formulation in liposomes, Bet v 1 uptake in dDCs was increased by encapsulation in both cationic and anionic liposomes. This highlights the potential use of liposomes as adjuvant in intradermal allergy vaccine delivery. In conclusion, we observed that antigen uptake after intradermal injection was not affected by injection depth, but varied between different antigens and formulation. Frontiers Media S.A. 2021-04-08 /pmc/articles/PMC8974696/ /pubmed/35386985 http://dx.doi.org/10.3389/falgy.2021.642788 Text en Copyright © 2021 Leboux, Schipper, van Capel, Kong, van der Maaden, Kros, Jiskoot, de Jong and Bouwstra. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Allergy
Leboux, Romain J. T.
Schipper, Pim
van Capel, Toni M. M.
Kong, Lily
van der Maaden, Koen
Kros, Alexander
Jiskoot, Wim
de Jong, Esther C.
Bouwstra, Joke A.
Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title_full Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title_fullStr Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title_full_unstemmed Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title_short Antigen Uptake After Intradermal Microinjection Depends on Antigen Nature and Formulation, but Not on Injection Depth
title_sort antigen uptake after intradermal microinjection depends on antigen nature and formulation, but not on injection depth
topic Allergy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8974696/
https://www.ncbi.nlm.nih.gov/pubmed/35386985
http://dx.doi.org/10.3389/falgy.2021.642788
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