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Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD

Bone marrow transplantation (BMT) is a widely used therapy for blood cancers and primary immunodeficiency. Following transplant, the thymus plays a key role in immune reconstitution by generating a naive αβT cell pool from transplant-derived progenitors. While donor-derived thymopoiesis during the e...

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Autores principales: Alawam, Abdullah S., Cosway, Emilie J., James, Kieran D., Lucas, Beth, Bacon, Andrea, Parnell, Sonia M., White, Andrea J., Jenkinson, William E., Anderson, Graham
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8679781/
https://www.ncbi.nlm.nih.gov/pubmed/34910105
http://dx.doi.org/10.1084/jem.20211239
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author Alawam, Abdullah S.
Cosway, Emilie J.
James, Kieran D.
Lucas, Beth
Bacon, Andrea
Parnell, Sonia M.
White, Andrea J.
Jenkinson, William E.
Anderson, Graham
author_facet Alawam, Abdullah S.
Cosway, Emilie J.
James, Kieran D.
Lucas, Beth
Bacon, Andrea
Parnell, Sonia M.
White, Andrea J.
Jenkinson, William E.
Anderson, Graham
author_sort Alawam, Abdullah S.
collection PubMed
description Bone marrow transplantation (BMT) is a widely used therapy for blood cancers and primary immunodeficiency. Following transplant, the thymus plays a key role in immune reconstitution by generating a naive αβT cell pool from transplant-derived progenitors. While donor-derived thymopoiesis during the early post-transplant period is well studied, the ability of the thymus to synchronize T cell development with essential tolerance mechanisms is poorly understood. Using a syngeneic mouse transplant model, we analyzed T cell recovery alongside the regeneration and function of intrathymic microenvironments. We report a specific and prolonged failure in the post-transplant recovery of medullary thymic epithelial cells (mTECs). This manifests as loss of medulla-dependent tolerance mechanisms, including failures in Foxp3(+) regulatory T cell development and formation of the intrathymic dendritic cell pool. In addition, defective negative selection enables escape of self-reactive conventional αβT cells that promote autoimmunity. Collectively, we show that post-transplant T cell recovery involves an uncoupling of thymopoiesis from thymic tolerance, which results in autoimmune reconstitution caused by failures in thymic medulla regeneration.
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spelling pubmed-86797812022-01-12 Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD Alawam, Abdullah S. Cosway, Emilie J. James, Kieran D. Lucas, Beth Bacon, Andrea Parnell, Sonia M. White, Andrea J. Jenkinson, William E. Anderson, Graham J Exp Med Brief Definitive Report Bone marrow transplantation (BMT) is a widely used therapy for blood cancers and primary immunodeficiency. Following transplant, the thymus plays a key role in immune reconstitution by generating a naive αβT cell pool from transplant-derived progenitors. While donor-derived thymopoiesis during the early post-transplant period is well studied, the ability of the thymus to synchronize T cell development with essential tolerance mechanisms is poorly understood. Using a syngeneic mouse transplant model, we analyzed T cell recovery alongside the regeneration and function of intrathymic microenvironments. We report a specific and prolonged failure in the post-transplant recovery of medullary thymic epithelial cells (mTECs). This manifests as loss of medulla-dependent tolerance mechanisms, including failures in Foxp3(+) regulatory T cell development and formation of the intrathymic dendritic cell pool. In addition, defective negative selection enables escape of self-reactive conventional αβT cells that promote autoimmunity. Collectively, we show that post-transplant T cell recovery involves an uncoupling of thymopoiesis from thymic tolerance, which results in autoimmune reconstitution caused by failures in thymic medulla regeneration. Rockefeller University Press 2021-12-15 /pmc/articles/PMC8679781/ /pubmed/34910105 http://dx.doi.org/10.1084/jem.20211239 Text en © 2021 Alawam et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Brief Definitive Report
Alawam, Abdullah S.
Cosway, Emilie J.
James, Kieran D.
Lucas, Beth
Bacon, Andrea
Parnell, Sonia M.
White, Andrea J.
Jenkinson, William E.
Anderson, Graham
Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title_full Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title_fullStr Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title_full_unstemmed Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title_short Failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-GVHD
title_sort failures in thymus medulla regeneration during immune recovery cause tolerance loss and prime recipients for auto-gvhd
topic Brief Definitive Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8679781/
https://www.ncbi.nlm.nih.gov/pubmed/34910105
http://dx.doi.org/10.1084/jem.20211239
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