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Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation

INTRODUCTION: Antibody mediated rejection (ABMR) is the most common cause of long-term allograft loss in kidney transplantation (KT). Therefore, a low human leukocyte antigen (HLA) mismatch (MM) load is favorable for KT outcomes. Hitherto, serological or low-resolution molecular HLA typing have been...

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Autores principales: Lehmann, Claudia, Pehnke, Sarah, Weimann, Antje, Bachmann, Anette, Dittrich, Katalin, Petzold, Friederike, Fürst, Daniel, de Fallois, Jonathan, Landgraf, Ramona, Henschler, Reinhard, Lindner, Tom H., Halbritter, Jan, Doxiadis, Ilias, Popp, Bernt, Münch, Johannes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9911689/
https://www.ncbi.nlm.nih.gov/pubmed/36776892
http://dx.doi.org/10.3389/fimmu.2023.1094862
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author Lehmann, Claudia
Pehnke, Sarah
Weimann, Antje
Bachmann, Anette
Dittrich, Katalin
Petzold, Friederike
Fürst, Daniel
de Fallois, Jonathan
Landgraf, Ramona
Henschler, Reinhard
Lindner, Tom H.
Halbritter, Jan
Doxiadis, Ilias
Popp, Bernt
Münch, Johannes
author_facet Lehmann, Claudia
Pehnke, Sarah
Weimann, Antje
Bachmann, Anette
Dittrich, Katalin
Petzold, Friederike
Fürst, Daniel
de Fallois, Jonathan
Landgraf, Ramona
Henschler, Reinhard
Lindner, Tom H.
Halbritter, Jan
Doxiadis, Ilias
Popp, Bernt
Münch, Johannes
author_sort Lehmann, Claudia
collection PubMed
description INTRODUCTION: Antibody mediated rejection (ABMR) is the most common cause of long-term allograft loss in kidney transplantation (KT). Therefore, a low human leukocyte antigen (HLA) mismatch (MM) load is favorable for KT outcomes. Hitherto, serological or low-resolution molecular HLA typing have been adapted in parallel. Here, we aimed to identify previously missed HLA mismatches and corresponding antibodies by high resolution HLA genotyping in a living-donor KT cohort. METHODS: 103 donor/recipient pairs transplanted at the University of Leipzig Medical Center between 1998 and 2018 were re-typed using next generation sequencing (NGS) of the HLA loci -A, -B, -C, -DRB1, -DRB345, -DQA1, -DQB1, -DPA1, and -DPB1. Based on these data, we compiled HLA MM counts for each pair and comparatively evaluated genomic HLA-typing with pre-transplant obtained serological/low-resolution HLA (=one-field) typing results. NGS HLA typing (=two-field) data was further used for reclassification of de novo HLA antibodies as “donor-specific”. RESULTS: By two-field HLA re-typing, we were able to identify additional MM in 64.1% (n=66) of cases for HLA loci -A, -B, -C, -DRB1 and -DQB1 that were not observed by one-field HLA typing. In patients with biopsy proven ABMR, two-field calculated MM count was significantly higher than by one-field HLA typing. For additional typed HLA loci -DRB345, -DQA1, -DPA1, and -DPB1 we observed 2, 26, 3, and 23 MM, respectively. In total, 37.3% (69/185) of de novo donor specific antibodies (DSA) formation was directed against these loci (DRB345 ➔ n=33, DQA1 ➔ n=33, DPA1 ➔ n=1, DPB1 ➔ n=10). CONCLUSION: Our results indicate that two-field HLA typing is feasible and provides significantly more sensitive HLA MM recognition in living-donor KT. Furthermore, accurate HLA typing plays an important role in graft management as it can improve discrimination between donor and non-donor HLA directed cellular and humoral alloreactivity in the long range. The inclusion of additional HLA loci against which antibodies can be readily detected, HLA-DRB345, -DQA1, -DQB1, -DPA1, and -DPB1, will allow a more precise virtual crossmatch and better prediction of potential DSA. Furthermore, in living KT, two-field HLA typing could contribute to the selection of the immunologically most suitable donors.
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spelling pubmed-99116892023-02-11 Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation Lehmann, Claudia Pehnke, Sarah Weimann, Antje Bachmann, Anette Dittrich, Katalin Petzold, Friederike Fürst, Daniel de Fallois, Jonathan Landgraf, Ramona Henschler, Reinhard Lindner, Tom H. Halbritter, Jan Doxiadis, Ilias Popp, Bernt Münch, Johannes Front Immunol Immunology INTRODUCTION: Antibody mediated rejection (ABMR) is the most common cause of long-term allograft loss in kidney transplantation (KT). Therefore, a low human leukocyte antigen (HLA) mismatch (MM) load is favorable for KT outcomes. Hitherto, serological or low-resolution molecular HLA typing have been adapted in parallel. Here, we aimed to identify previously missed HLA mismatches and corresponding antibodies by high resolution HLA genotyping in a living-donor KT cohort. METHODS: 103 donor/recipient pairs transplanted at the University of Leipzig Medical Center between 1998 and 2018 were re-typed using next generation sequencing (NGS) of the HLA loci -A, -B, -C, -DRB1, -DRB345, -DQA1, -DQB1, -DPA1, and -DPB1. Based on these data, we compiled HLA MM counts for each pair and comparatively evaluated genomic HLA-typing with pre-transplant obtained serological/low-resolution HLA (=one-field) typing results. NGS HLA typing (=two-field) data was further used for reclassification of de novo HLA antibodies as “donor-specific”. RESULTS: By two-field HLA re-typing, we were able to identify additional MM in 64.1% (n=66) of cases for HLA loci -A, -B, -C, -DRB1 and -DQB1 that were not observed by one-field HLA typing. In patients with biopsy proven ABMR, two-field calculated MM count was significantly higher than by one-field HLA typing. For additional typed HLA loci -DRB345, -DQA1, -DPA1, and -DPB1 we observed 2, 26, 3, and 23 MM, respectively. In total, 37.3% (69/185) of de novo donor specific antibodies (DSA) formation was directed against these loci (DRB345 ➔ n=33, DQA1 ➔ n=33, DPA1 ➔ n=1, DPB1 ➔ n=10). CONCLUSION: Our results indicate that two-field HLA typing is feasible and provides significantly more sensitive HLA MM recognition in living-donor KT. Furthermore, accurate HLA typing plays an important role in graft management as it can improve discrimination between donor and non-donor HLA directed cellular and humoral alloreactivity in the long range. The inclusion of additional HLA loci against which antibodies can be readily detected, HLA-DRB345, -DQA1, -DQB1, -DPA1, and -DPB1, will allow a more precise virtual crossmatch and better prediction of potential DSA. Furthermore, in living KT, two-field HLA typing could contribute to the selection of the immunologically most suitable donors. Frontiers Media S.A. 2023-01-27 /pmc/articles/PMC9911689/ /pubmed/36776892 http://dx.doi.org/10.3389/fimmu.2023.1094862 Text en Copyright © 2023 Lehmann, Pehnke, Weimann, Bachmann, Dittrich, Petzold, Fürst, de Fallois, Landgraf, Henschler, Lindner, Halbritter, Doxiadis, Popp and Münch 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(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
Lehmann, Claudia
Pehnke, Sarah
Weimann, Antje
Bachmann, Anette
Dittrich, Katalin
Petzold, Friederike
Fürst, Daniel
de Fallois, Jonathan
Landgraf, Ramona
Henschler, Reinhard
Lindner, Tom H.
Halbritter, Jan
Doxiadis, Ilias
Popp, Bernt
Münch, Johannes
Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title_full Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title_fullStr Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title_full_unstemmed Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title_short Extended genomic HLA typing identifies previously unrecognized mismatches in living kidney transplantation
title_sort extended genomic hla typing identifies previously unrecognized mismatches in living kidney transplantation
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9911689/
https://www.ncbi.nlm.nih.gov/pubmed/36776892
http://dx.doi.org/10.3389/fimmu.2023.1094862
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