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B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody

In individuals who have once developed humoral immunity to an infectious/foreign antigen, the antibodies present in their body can mediate instant protection when the antigen re-enters. Such antigen-specific antibodies can be readily detected in the serum. Long term humoral immunity is, however, als...

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Autores principales: Fecher, Philipp, Caspell, Richard, Naeem, Villian, Karulin, Alexey Y., Kuerten, Stefanie, Lehmann, Paul V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028916/
https://www.ncbi.nlm.nih.gov/pubmed/29857548
http://dx.doi.org/10.3390/cells7060050
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author Fecher, Philipp
Caspell, Richard
Naeem, Villian
Karulin, Alexey Y.
Kuerten, Stefanie
Lehmann, Paul V.
author_facet Fecher, Philipp
Caspell, Richard
Naeem, Villian
Karulin, Alexey Y.
Kuerten, Stefanie
Lehmann, Paul V.
author_sort Fecher, Philipp
collection PubMed
description In individuals who have once developed humoral immunity to an infectious/foreign antigen, the antibodies present in their body can mediate instant protection when the antigen re-enters. Such antigen-specific antibodies can be readily detected in the serum. Long term humoral immunity is, however, also critically dependent on the ability of memory B cells to engage in a secondary antibody response upon re-exposure to the antigen. Antibody molecules in the body are short lived, having a half-life of weeks, while memory B cells have a life span of decades. Therefore, the presence of serum antibodies is not always a reliable indicator of B cell memory and comprehensive monitoring of humoral immunity requires that both serum antibodies and memory B cells be assessed. The prevailing view is that resting memory B cells and B cell blasts in peripheral blood mononuclear cells (PBMC) cannot be cryopreserved without losing their antibody secreting function, and regulated high throughput immune monitoring of B cell immunity is therefore confined to—and largely limited by—the need to test freshly isolated PBMC. Using optimized protocols for freezing and thawing of PBMC, and four color ImmunoSpot(®) analysis for the simultaneous detection of all immunoglobulin classes/subclasses we show here that both resting memory B cells and B cell blasts retain their ability to secrete antibody after thawing, and thus demonstrate the feasibility of B cell immune monitoring using cryopreserved PBMC.
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spelling pubmed-60289162018-07-09 B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody Fecher, Philipp Caspell, Richard Naeem, Villian Karulin, Alexey Y. Kuerten, Stefanie Lehmann, Paul V. Cells Article In individuals who have once developed humoral immunity to an infectious/foreign antigen, the antibodies present in their body can mediate instant protection when the antigen re-enters. Such antigen-specific antibodies can be readily detected in the serum. Long term humoral immunity is, however, also critically dependent on the ability of memory B cells to engage in a secondary antibody response upon re-exposure to the antigen. Antibody molecules in the body are short lived, having a half-life of weeks, while memory B cells have a life span of decades. Therefore, the presence of serum antibodies is not always a reliable indicator of B cell memory and comprehensive monitoring of humoral immunity requires that both serum antibodies and memory B cells be assessed. The prevailing view is that resting memory B cells and B cell blasts in peripheral blood mononuclear cells (PBMC) cannot be cryopreserved without losing their antibody secreting function, and regulated high throughput immune monitoring of B cell immunity is therefore confined to—and largely limited by—the need to test freshly isolated PBMC. Using optimized protocols for freezing and thawing of PBMC, and four color ImmunoSpot(®) analysis for the simultaneous detection of all immunoglobulin classes/subclasses we show here that both resting memory B cells and B cell blasts retain their ability to secrete antibody after thawing, and thus demonstrate the feasibility of B cell immune monitoring using cryopreserved PBMC. MDPI 2018-05-31 /pmc/articles/PMC6028916/ /pubmed/29857548 http://dx.doi.org/10.3390/cells7060050 Text en © 2018 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
Fecher, Philipp
Caspell, Richard
Naeem, Villian
Karulin, Alexey Y.
Kuerten, Stefanie
Lehmann, Paul V.
B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title_full B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title_fullStr B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title_full_unstemmed B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title_short B Cells and B Cell Blasts Withstand Cryopreservation While Retaining Their Functionality for Producing Antibody
title_sort b cells and b cell blasts withstand cryopreservation while retaining their functionality for producing antibody
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6028916/
https://www.ncbi.nlm.nih.gov/pubmed/29857548
http://dx.doi.org/10.3390/cells7060050
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