Cargando…
Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains
We previously discovered suppressor T cell-derived, antigen (Ag)-specific exosomes inhibiting mouse hapten-induced contact sensitivity effector T cells by targeting antigen-presenting cells (APCs). These suppressive exosomes acted Ag-specifically due to a coating of antibody free light chains (FLC)...
Autores principales: | , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432818/ https://www.ncbi.nlm.nih.gov/pubmed/32748889 http://dx.doi.org/10.3390/ijms21155540 |
_version_ | 1783571882039050240 |
---|---|
author | Nazimek, Katarzyna Bryniarski, Krzysztof Ptak, Wlodzimierz Groot Kormelink, Tom Askenase, Philip W. |
author_facet | Nazimek, Katarzyna Bryniarski, Krzysztof Ptak, Wlodzimierz Groot Kormelink, Tom Askenase, Philip W. |
author_sort | Nazimek, Katarzyna |
collection | PubMed |
description | We previously discovered suppressor T cell-derived, antigen (Ag)-specific exosomes inhibiting mouse hapten-induced contact sensitivity effector T cells by targeting antigen-presenting cells (APCs). These suppressive exosomes acted Ag-specifically due to a coating of antibody free light chains (FLC) from Ag-activated B1a cells. Current studies are aimed at determining if similar immune tolerance could be induced in cutaneous delayed-type hypersensitivity (DTH) to the protein Ag (ovalbumin, OVA). Intravenous administration of a high dose of OVA-coupled, syngeneic erythrocytes similarly induced CD3(+)CD8(+) suppressor T cells producing suppressive, miRNA-150-carrying exosomes, also coated with B1a cell-derived, OVA-specific FLC. Simultaneously, OVA-immunized B1a cells produced an exosome subpopulation, originally coated with Ag-specific FLC, that could be rendered suppressive by in vitro association with miRNA-150. Importantly, miRNA-150-carrying exosomes from both suppressor T cells and B1a cells efficiently induced prolonged DTH suppression after single systemic administration into actively immunized mice, with the strongest effect observed after oral treatment. Current studies also showed that OVA-specific FLC on suppressive exosomes bind OVA peptides suggesting that exosome-coating FLC target APCs by binding to peptide-Ag-major histocompatibility complexes. This renders APCs capable of inhibiting DTH effector T cells. Thus, our studies describe a novel immune tolerance mechanism mediated by FLC-coated, Ag-specific, miRNA-150-carrying exosomes that act on the APC and are particularly effective after oral administration. |
format | Online Article Text |
id | pubmed-7432818 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-74328182020-08-27 Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains Nazimek, Katarzyna Bryniarski, Krzysztof Ptak, Wlodzimierz Groot Kormelink, Tom Askenase, Philip W. Int J Mol Sci Article We previously discovered suppressor T cell-derived, antigen (Ag)-specific exosomes inhibiting mouse hapten-induced contact sensitivity effector T cells by targeting antigen-presenting cells (APCs). These suppressive exosomes acted Ag-specifically due to a coating of antibody free light chains (FLC) from Ag-activated B1a cells. Current studies are aimed at determining if similar immune tolerance could be induced in cutaneous delayed-type hypersensitivity (DTH) to the protein Ag (ovalbumin, OVA). Intravenous administration of a high dose of OVA-coupled, syngeneic erythrocytes similarly induced CD3(+)CD8(+) suppressor T cells producing suppressive, miRNA-150-carrying exosomes, also coated with B1a cell-derived, OVA-specific FLC. Simultaneously, OVA-immunized B1a cells produced an exosome subpopulation, originally coated with Ag-specific FLC, that could be rendered suppressive by in vitro association with miRNA-150. Importantly, miRNA-150-carrying exosomes from both suppressor T cells and B1a cells efficiently induced prolonged DTH suppression after single systemic administration into actively immunized mice, with the strongest effect observed after oral treatment. Current studies also showed that OVA-specific FLC on suppressive exosomes bind OVA peptides suggesting that exosome-coating FLC target APCs by binding to peptide-Ag-major histocompatibility complexes. This renders APCs capable of inhibiting DTH effector T cells. Thus, our studies describe a novel immune tolerance mechanism mediated by FLC-coated, Ag-specific, miRNA-150-carrying exosomes that act on the APC and are particularly effective after oral administration. MDPI 2020-08-02 /pmc/articles/PMC7432818/ /pubmed/32748889 http://dx.doi.org/10.3390/ijms21155540 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Nazimek, Katarzyna Bryniarski, Krzysztof Ptak, Wlodzimierz Groot Kormelink, Tom Askenase, Philip W. Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title | Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title_full | Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title_fullStr | Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title_full_unstemmed | Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title_short | Orally Administered Exosomes Suppress Mouse Delayed-Type Hypersensitivity by Delivering miRNA-150 to Antigen-Primed Macrophage APC Targeted by Exosome-Surface Anti-Peptide Antibody Light Chains |
title_sort | orally administered exosomes suppress mouse delayed-type hypersensitivity by delivering mirna-150 to antigen-primed macrophage apc targeted by exosome-surface anti-peptide antibody light chains |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7432818/ https://www.ncbi.nlm.nih.gov/pubmed/32748889 http://dx.doi.org/10.3390/ijms21155540 |
work_keys_str_mv | AT nazimekkatarzyna orallyadministeredexosomessuppressmousedelayedtypehypersensitivitybydeliveringmirna150toantigenprimedmacrophageapctargetedbyexosomesurfaceantipeptideantibodylightchains AT bryniarskikrzysztof orallyadministeredexosomessuppressmousedelayedtypehypersensitivitybydeliveringmirna150toantigenprimedmacrophageapctargetedbyexosomesurfaceantipeptideantibodylightchains AT ptakwlodzimierz orallyadministeredexosomessuppressmousedelayedtypehypersensitivitybydeliveringmirna150toantigenprimedmacrophageapctargetedbyexosomesurfaceantipeptideantibodylightchains AT grootkormelinktom orallyadministeredexosomessuppressmousedelayedtypehypersensitivitybydeliveringmirna150toantigenprimedmacrophageapctargetedbyexosomesurfaceantipeptideantibodylightchains AT askenasephilipw orallyadministeredexosomessuppressmousedelayedtypehypersensitivitybydeliveringmirna150toantigenprimedmacrophageapctargetedbyexosomesurfaceantipeptideantibodylightchains |