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Methods to Detect MHC-Specific IgE in Mice and Men

Humoral immunity is a major barrier limiting long-term outcome after organ transplantation. Especially, the production of antibodies directed against donor HLA/MHC antigens (i.e. donor-specific antibodies (DSA)) leading to antibody-mediated rejection (ABMR) is considered to be a major factor negativ...

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Autores principales: Weijler, Anna Marianne, Mucha, Jasmin, Farkas, Andreas Michael, Baranyi, Ulrike, Pilat, Nina, Cho, Ara, Muckenhuber, Moritz, Hopf, Stefan, Wahrmann, Markus, Linhart, Birgit, Valenta, Rudolf, Wekerle, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753192/
https://www.ncbi.nlm.nih.gov/pubmed/33363535
http://dx.doi.org/10.3389/fimmu.2020.586856
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author Weijler, Anna Marianne
Mucha, Jasmin
Farkas, Andreas Michael
Baranyi, Ulrike
Pilat, Nina
Cho, Ara
Muckenhuber, Moritz
Hopf, Stefan
Wahrmann, Markus
Linhart, Birgit
Valenta, Rudolf
Wekerle, Thomas
author_facet Weijler, Anna Marianne
Mucha, Jasmin
Farkas, Andreas Michael
Baranyi, Ulrike
Pilat, Nina
Cho, Ara
Muckenhuber, Moritz
Hopf, Stefan
Wahrmann, Markus
Linhart, Birgit
Valenta, Rudolf
Wekerle, Thomas
author_sort Weijler, Anna Marianne
collection PubMed
description Humoral immunity is a major barrier limiting long-term outcome after organ transplantation. Especially, the production of antibodies directed against donor HLA/MHC antigens (i.e. donor-specific antibodies (DSA)) leading to antibody-mediated rejection (ABMR) is considered to be a major factor negatively affecting allograft survival. DSAs of the IgG isotype are routinely measured in transplant patients. However, not all patients diagnosed with IgG-DSA develop ABMR events. Therefore, research in better understanding the mechanisms of ABMR is of great importance. We recently demonstrated the production of MHC-specific IgE upon allograft rejection in mice and in transplant patients. IgE is classically connected with allergy and is known to be important for the humoral defense against helminths and worms. However, its role in autoimmune diseases and cancer has been reported recently as well. The concentration of IgE in blood is extremely low compared to other antibody isotypes. Therefore, detection of MHC-specific IgE from serum requires methods of high sensitivity. Since MHC-specific IgG—typically present at much higher serum levels—develops as well, high specificity is also required of IgE detection methods. In the murine model we developed an enzyme linked immunosorbent assay (ELISA) using MHC monomers for measurement of MHC-specific IgE, allowing us to distinguish between specificities of antibodies against different class I and class II antigens. For measurement of functional activity of MHC-specific IgE in vitro, a release assay using a rat basophil cell line (RBL-2H3) was established. For functional analysis of MHC-specific IgE in vivo, a cutaneous hypersensitivity reaction assay was adapted for this purpose using MHC monomers. Humanized RBL-2H3 cells transfected with cDNA coding for the human-high affinity IgE receptor were used for functionality measurement of donor-specific IgE in sensitized transplant patients. For detection of HLA-specific IgE, a bead assay was adapted, using beads expressing single HLA antigens. The aim of this publication is to demonstrate currently established methods for the detection and characterization of MHC-specific IgE in the murine and human setting.
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spelling pubmed-77531922020-12-23 Methods to Detect MHC-Specific IgE in Mice and Men Weijler, Anna Marianne Mucha, Jasmin Farkas, Andreas Michael Baranyi, Ulrike Pilat, Nina Cho, Ara Muckenhuber, Moritz Hopf, Stefan Wahrmann, Markus Linhart, Birgit Valenta, Rudolf Wekerle, Thomas Front Immunol Immunology Humoral immunity is a major barrier limiting long-term outcome after organ transplantation. Especially, the production of antibodies directed against donor HLA/MHC antigens (i.e. donor-specific antibodies (DSA)) leading to antibody-mediated rejection (ABMR) is considered to be a major factor negatively affecting allograft survival. DSAs of the IgG isotype are routinely measured in transplant patients. However, not all patients diagnosed with IgG-DSA develop ABMR events. Therefore, research in better understanding the mechanisms of ABMR is of great importance. We recently demonstrated the production of MHC-specific IgE upon allograft rejection in mice and in transplant patients. IgE is classically connected with allergy and is known to be important for the humoral defense against helminths and worms. However, its role in autoimmune diseases and cancer has been reported recently as well. The concentration of IgE in blood is extremely low compared to other antibody isotypes. Therefore, detection of MHC-specific IgE from serum requires methods of high sensitivity. Since MHC-specific IgG—typically present at much higher serum levels—develops as well, high specificity is also required of IgE detection methods. In the murine model we developed an enzyme linked immunosorbent assay (ELISA) using MHC monomers for measurement of MHC-specific IgE, allowing us to distinguish between specificities of antibodies against different class I and class II antigens. For measurement of functional activity of MHC-specific IgE in vitro, a release assay using a rat basophil cell line (RBL-2H3) was established. For functional analysis of MHC-specific IgE in vivo, a cutaneous hypersensitivity reaction assay was adapted for this purpose using MHC monomers. Humanized RBL-2H3 cells transfected with cDNA coding for the human-high affinity IgE receptor were used for functionality measurement of donor-specific IgE in sensitized transplant patients. For detection of HLA-specific IgE, a bead assay was adapted, using beads expressing single HLA antigens. The aim of this publication is to demonstrate currently established methods for the detection and characterization of MHC-specific IgE in the murine and human setting. Frontiers Media S.A. 2020-12-08 /pmc/articles/PMC7753192/ /pubmed/33363535 http://dx.doi.org/10.3389/fimmu.2020.586856 Text en Copyright © 2020 Weijler, Mucha, Farkas, Baranyi, Pilat, Cho, Muckenhuber, Hopf, Wahrmann, Linhart, Valenta and Wekerle http://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(s) 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
Weijler, Anna Marianne
Mucha, Jasmin
Farkas, Andreas Michael
Baranyi, Ulrike
Pilat, Nina
Cho, Ara
Muckenhuber, Moritz
Hopf, Stefan
Wahrmann, Markus
Linhart, Birgit
Valenta, Rudolf
Wekerle, Thomas
Methods to Detect MHC-Specific IgE in Mice and Men
title Methods to Detect MHC-Specific IgE in Mice and Men
title_full Methods to Detect MHC-Specific IgE in Mice and Men
title_fullStr Methods to Detect MHC-Specific IgE in Mice and Men
title_full_unstemmed Methods to Detect MHC-Specific IgE in Mice and Men
title_short Methods to Detect MHC-Specific IgE in Mice and Men
title_sort methods to detect mhc-specific ige in mice and men
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7753192/
https://www.ncbi.nlm.nih.gov/pubmed/33363535
http://dx.doi.org/10.3389/fimmu.2020.586856
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