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Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model

High-affinity antigen-specific B cells are generated within specialized structures, germinal centers (GCs), inside lymphoid organs. In GCs, follicular dendritic cells (FDCs) present antigens on their membrane surface to cognate B cells, inducing rapid proliferation and differentiation of the B cells...

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Autores principales: Kramer, Liana, Song, Hannah W., Mitchell, Kaiya, Kartik, Mythili, Jain, Ritika, Escarra, Victoria Lozano, Quiros, Enrique, Fu, Harrison, Singh, Ankur, Roy, Krishnendu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9351594/
https://www.ncbi.nlm.nih.gov/pubmed/35937779
http://dx.doi.org/10.1002/anbr.202100137
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author Kramer, Liana
Song, Hannah W.
Mitchell, Kaiya
Kartik, Mythili
Jain, Ritika
Escarra, Victoria Lozano
Quiros, Enrique
Fu, Harrison
Singh, Ankur
Roy, Krishnendu
author_facet Kramer, Liana
Song, Hannah W.
Mitchell, Kaiya
Kartik, Mythili
Jain, Ritika
Escarra, Victoria Lozano
Quiros, Enrique
Fu, Harrison
Singh, Ankur
Roy, Krishnendu
author_sort Kramer, Liana
collection PubMed
description High-affinity antigen-specific B cells are generated within specialized structures, germinal centers (GCs), inside lymphoid organs. In GCs, follicular dendritic cells (FDCs) present antigens on their membrane surface to cognate B cells, inducing rapid proliferation and differentiation of the B cells toward antibody-secreting cells. The FDC’s fluid membrane surface allows B cells to “pull” the antigens into clusters and internalize them, a process that frequently involves tearing off and internalizing FDC membrane fragments. To study this process ex vivo, liposomal membranes are used as the antigen-presenting FDC-like fluid lipid surface to activate B cells. In a fully synthetic in vitro GC model (sGC), which uses the microbead-based presentation of the CD40 Ligand and a cytokine cocktail to mimic T follicular helper cell signals to B cells, liposomes presenting a model antigen mimic effectively engage B cell receptors (BCRs) and induce greater BCR clustering compared to soluble antigens, resulting in rapid antigen internalization and proliferation of the B cells. B cells showed GC-like reactions and undergo efficient IgG1 class-switching. Taken together, the results suggest that fluid membrane-bound antigen induces a strong GC response and provides a novel synthetic in vitro system for studying GC biology in health and diseases, and for expanding therapeutic B cells ex vivo.
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spelling pubmed-93515942023-07-01 Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model Kramer, Liana Song, Hannah W. Mitchell, Kaiya Kartik, Mythili Jain, Ritika Escarra, Victoria Lozano Quiros, Enrique Fu, Harrison Singh, Ankur Roy, Krishnendu Adv Nanobiomed Res Article High-affinity antigen-specific B cells are generated within specialized structures, germinal centers (GCs), inside lymphoid organs. In GCs, follicular dendritic cells (FDCs) present antigens on their membrane surface to cognate B cells, inducing rapid proliferation and differentiation of the B cells toward antibody-secreting cells. The FDC’s fluid membrane surface allows B cells to “pull” the antigens into clusters and internalize them, a process that frequently involves tearing off and internalizing FDC membrane fragments. To study this process ex vivo, liposomal membranes are used as the antigen-presenting FDC-like fluid lipid surface to activate B cells. In a fully synthetic in vitro GC model (sGC), which uses the microbead-based presentation of the CD40 Ligand and a cytokine cocktail to mimic T follicular helper cell signals to B cells, liposomes presenting a model antigen mimic effectively engage B cell receptors (BCRs) and induce greater BCR clustering compared to soluble antigens, resulting in rapid antigen internalization and proliferation of the B cells. B cells showed GC-like reactions and undergo efficient IgG1 class-switching. Taken together, the results suggest that fluid membrane-bound antigen induces a strong GC response and provides a novel synthetic in vitro system for studying GC biology in health and diseases, and for expanding therapeutic B cells ex vivo. 2022-07 2022-04-28 /pmc/articles/PMC9351594/ /pubmed/35937779 http://dx.doi.org/10.1002/anbr.202100137 Text en https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Article
Kramer, Liana
Song, Hannah W.
Mitchell, Kaiya
Kartik, Mythili
Jain, Ritika
Escarra, Victoria Lozano
Quiros, Enrique
Fu, Harrison
Singh, Ankur
Roy, Krishnendu
Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title_full Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title_fullStr Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title_full_unstemmed Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title_short Lipid Membrane-Based Antigen Presentation to B Cells Using a Fully Synthetic Ex Vivo Germinal Center Model
title_sort lipid membrane-based antigen presentation to b cells using a fully synthetic ex vivo germinal center model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9351594/
https://www.ncbi.nlm.nih.gov/pubmed/35937779
http://dx.doi.org/10.1002/anbr.202100137
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