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Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells

Selection of single antigen-specific B cells to identify their expressed antibodies is of considerable interest for evaluating human immune responses. Here, we present a method to identify single antibody-expressing cells using antigen-conjugated fluorescent beads. To establish this, we selected Fol...

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Autores principales: Correa, Isabel, Ilieva, Kristina M., Crescioli, Silvia, Lombardi, Sara, Figini, Mariangela, Cheung, Anthony, Spicer, James F., Tutt, Andrew N. J., Nestle, Frank O., Karagiannis, Panagiotis, Lacy, Katie E., Karagiannis, Sophia N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5876289/
https://www.ncbi.nlm.nih.gov/pubmed/29628923
http://dx.doi.org/10.3389/fimmu.2018.00493
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author Correa, Isabel
Ilieva, Kristina M.
Crescioli, Silvia
Lombardi, Sara
Figini, Mariangela
Cheung, Anthony
Spicer, James F.
Tutt, Andrew N. J.
Nestle, Frank O.
Karagiannis, Panagiotis
Lacy, Katie E.
Karagiannis, Sophia N.
author_facet Correa, Isabel
Ilieva, Kristina M.
Crescioli, Silvia
Lombardi, Sara
Figini, Mariangela
Cheung, Anthony
Spicer, James F.
Tutt, Andrew N. J.
Nestle, Frank O.
Karagiannis, Panagiotis
Lacy, Katie E.
Karagiannis, Sophia N.
author_sort Correa, Isabel
collection PubMed
description Selection of single antigen-specific B cells to identify their expressed antibodies is of considerable interest for evaluating human immune responses. Here, we present a method to identify single antibody-expressing cells using antigen-conjugated fluorescent beads. To establish this, we selected Folate Receptor alpha (FRα) as a model antigen and a mouse B cell line, expressing both the soluble and the membrane-bound forms of a human/mouse chimeric antibody (MOv18 IgG1) specific for FRα, as test antibody-expressing cells. Beads were conjugated to FRα using streptavidin/avidin-biotin bridges and used to select single cells expressing the membrane-bound form of anti-FRα. Bead-bound cells were single cell-sorted and processed for single cell RNA retrotranscription and PCR to isolate antibody heavy and light chain variable regions. Variable regions were then cloned and expressed as human IgG1/k antibodies. Like the original clone, engineered antibodies from single cells recognized native FRα. To evaluate whether antigen-coated beads could identify specific antibody-expressing cells in mixed immune cell populations, human peripheral blood mononuclear cells (PBMCs) were spiked with test antibody-expressing cells. Antigen-specific cells could comprise up to 75% of cells selected with antigen-conjugated beads when the frequency of the antigen-positive cells was 1:100 or higher. In PBMC pools, beads conjugated to recombinant antigens FRα and HER2 bound antigen-specific anti-FRα MOv18 and anti-HER2 Trastuzumab antibody-expressing cells, respectively. From melanoma patient-derived B cells selected with melanoma cell line-derived protein-coated fluorescent beads, we generated a monoclonal antibody that recognized melanoma antigen-coated beads. This approach may be further developed to facilitate analysis of B cells and their antibody profiles at the single cell level and to help unravel humoral immune repertoires.
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spelling pubmed-58762892018-04-06 Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells Correa, Isabel Ilieva, Kristina M. Crescioli, Silvia Lombardi, Sara Figini, Mariangela Cheung, Anthony Spicer, James F. Tutt, Andrew N. J. Nestle, Frank O. Karagiannis, Panagiotis Lacy, Katie E. Karagiannis, Sophia N. Front Immunol Immunology Selection of single antigen-specific B cells to identify their expressed antibodies is of considerable interest for evaluating human immune responses. Here, we present a method to identify single antibody-expressing cells using antigen-conjugated fluorescent beads. To establish this, we selected Folate Receptor alpha (FRα) as a model antigen and a mouse B cell line, expressing both the soluble and the membrane-bound forms of a human/mouse chimeric antibody (MOv18 IgG1) specific for FRα, as test antibody-expressing cells. Beads were conjugated to FRα using streptavidin/avidin-biotin bridges and used to select single cells expressing the membrane-bound form of anti-FRα. Bead-bound cells were single cell-sorted and processed for single cell RNA retrotranscription and PCR to isolate antibody heavy and light chain variable regions. Variable regions were then cloned and expressed as human IgG1/k antibodies. Like the original clone, engineered antibodies from single cells recognized native FRα. To evaluate whether antigen-coated beads could identify specific antibody-expressing cells in mixed immune cell populations, human peripheral blood mononuclear cells (PBMCs) were spiked with test antibody-expressing cells. Antigen-specific cells could comprise up to 75% of cells selected with antigen-conjugated beads when the frequency of the antigen-positive cells was 1:100 or higher. In PBMC pools, beads conjugated to recombinant antigens FRα and HER2 bound antigen-specific anti-FRα MOv18 and anti-HER2 Trastuzumab antibody-expressing cells, respectively. From melanoma patient-derived B cells selected with melanoma cell line-derived protein-coated fluorescent beads, we generated a monoclonal antibody that recognized melanoma antigen-coated beads. This approach may be further developed to facilitate analysis of B cells and their antibody profiles at the single cell level and to help unravel humoral immune repertoires. Frontiers Media S.A. 2018-03-23 /pmc/articles/PMC5876289/ /pubmed/29628923 http://dx.doi.org/10.3389/fimmu.2018.00493 Text en Copyright © 2018 Correa, Ilieva, Crescioli, Lombardi, Figini, Cheung, Spicer, Tutt, Nestle, Karagiannis, Lacy and Karagiannis. 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 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 Immunology
Correa, Isabel
Ilieva, Kristina M.
Crescioli, Silvia
Lombardi, Sara
Figini, Mariangela
Cheung, Anthony
Spicer, James F.
Tutt, Andrew N. J.
Nestle, Frank O.
Karagiannis, Panagiotis
Lacy, Katie E.
Karagiannis, Sophia N.
Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title_full Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title_fullStr Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title_full_unstemmed Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title_short Evaluation of Antigen-Conjugated Fluorescent Beads to Identify Antigen-Specific B Cells
title_sort evaluation of antigen-conjugated fluorescent beads to identify antigen-specific b cells
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5876289/
https://www.ncbi.nlm.nih.gov/pubmed/29628923
http://dx.doi.org/10.3389/fimmu.2018.00493
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