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Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy

BACKGROUND: Antigen (Ag)-specific T helper (Th)2 cells play a central role in food allergy (FA) pathogenesis. Methods can be used to eliminate Ag-specific Th2 cells that are currently lacking. This study aims to eliminate the Ag-specific Th2 cells with a novel nanoparticle, the mEV (modified extrace...

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Autores principales: Zhang, Yuan-Yi, Mo, Li-Hua, Yang, Gui, Liu, Jiang-Qi, Liu, Zhi-Qiang, Yang, Li-Teng, Ran, Pi-Xin, Liu, Zhi-Gang, Yang, Ping-Chang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: World Allergy Organization 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918277/
https://www.ncbi.nlm.nih.gov/pubmed/33717398
http://dx.doi.org/10.1016/j.waojou.2021.100522
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author Zhang, Yuan-Yi
Mo, Li-Hua
Yang, Gui
Liu, Jiang-Qi
Liu, Zhi-Qiang
Yang, Li-Teng
Ran, Pi-Xin
Liu, Zhi-Gang
Yang, Ping-Chang
author_facet Zhang, Yuan-Yi
Mo, Li-Hua
Yang, Gui
Liu, Jiang-Qi
Liu, Zhi-Qiang
Yang, Li-Teng
Ran, Pi-Xin
Liu, Zhi-Gang
Yang, Ping-Chang
author_sort Zhang, Yuan-Yi
collection PubMed
description BACKGROUND: Antigen (Ag)-specific T helper (Th)2 cells play a central role in food allergy (FA) pathogenesis. Methods can be used to eliminate Ag-specific Th2 cells that are currently lacking. This study aims to eliminate the Ag-specific Th2 cells with a novel nanoparticle, the mEV (modified extracellular vesicles, that carry a chimeric antigen peptide, MHC II and caspase 3) in a murine FA model. METHODS: mEVs were generated by exposing dendritic cells (DC) to ovalbumin (OVA, a specific Ag) and recombinant caspase 3 (Casp3) in the culture overnight. Exosomes were purified from culture supernatant by the magnetic antibody approach. A murine FA model was developed with OVA as the specific Ag. RESULTS: Purified mEVs had the molecular markers of extracellular vesicle, CD81, CD63, and CD9, cleaved Casp3 and MHC II/OVA complexes. mEVs specifically bound to the surface of Ag-specific CD4(+) T cells, induced Ag-specific CD4(+) T cell apoptosis both in vitro and in vivo as well as increased regulatory T cells in the intestinal tissues. Administration of mEV efficiently suppressed experimental FA. CONCLUSIONS: mEVs carry Ag/MHC II complexes and Casp3, that can induce Ag-specific Th2 cell apoptosis. Administration of mEV can efficiently suppress experimental FA. The results suggest that the mEVs have the translational potential to be used in the treatment of FA and other allergic diseases.
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spelling pubmed-79182772021-03-12 Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy Zhang, Yuan-Yi Mo, Li-Hua Yang, Gui Liu, Jiang-Qi Liu, Zhi-Qiang Yang, Li-Teng Ran, Pi-Xin Liu, Zhi-Gang Yang, Ping-Chang World Allergy Organ J Article BACKGROUND: Antigen (Ag)-specific T helper (Th)2 cells play a central role in food allergy (FA) pathogenesis. Methods can be used to eliminate Ag-specific Th2 cells that are currently lacking. This study aims to eliminate the Ag-specific Th2 cells with a novel nanoparticle, the mEV (modified extracellular vesicles, that carry a chimeric antigen peptide, MHC II and caspase 3) in a murine FA model. METHODS: mEVs were generated by exposing dendritic cells (DC) to ovalbumin (OVA, a specific Ag) and recombinant caspase 3 (Casp3) in the culture overnight. Exosomes were purified from culture supernatant by the magnetic antibody approach. A murine FA model was developed with OVA as the specific Ag. RESULTS: Purified mEVs had the molecular markers of extracellular vesicle, CD81, CD63, and CD9, cleaved Casp3 and MHC II/OVA complexes. mEVs specifically bound to the surface of Ag-specific CD4(+) T cells, induced Ag-specific CD4(+) T cell apoptosis both in vitro and in vivo as well as increased regulatory T cells in the intestinal tissues. Administration of mEV efficiently suppressed experimental FA. CONCLUSIONS: mEVs carry Ag/MHC II complexes and Casp3, that can induce Ag-specific Th2 cell apoptosis. Administration of mEV can efficiently suppress experimental FA. The results suggest that the mEVs have the translational potential to be used in the treatment of FA and other allergic diseases. World Allergy Organization 2021-02-24 /pmc/articles/PMC7918277/ /pubmed/33717398 http://dx.doi.org/10.1016/j.waojou.2021.100522 Text en © 2021 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Zhang, Yuan-Yi
Mo, Li-Hua
Yang, Gui
Liu, Jiang-Qi
Liu, Zhi-Qiang
Yang, Li-Teng
Ran, Pi-Xin
Liu, Zhi-Gang
Yang, Ping-Chang
Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title_full Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title_fullStr Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title_full_unstemmed Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title_short Chimeric antigen-guiding extracellular vesicles eliminate antigen-specific Th2 cells in subjects with food allergy
title_sort chimeric antigen-guiding extracellular vesicles eliminate antigen-specific th2 cells in subjects with food allergy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918277/
https://www.ncbi.nlm.nih.gov/pubmed/33717398
http://dx.doi.org/10.1016/j.waojou.2021.100522
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