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Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy

The role of Foxp3-expressing regulatory T (T(reg)) cells in tolerance and autoimmunity is well-established. However, although of considerable clinical interest, the role of T(reg) cells in the regulation of hematopoietic homeostasis remains poorly understood. Thus, we analysed B and T lymphopoiesis...

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Autores principales: Riewaldt, Julia, Düber, Sandra, Boernert, Marie, Krey, Martina, Dembinski, Marcin, Weiss, Siegfried, Garbe, Annette I., Kretschmer, Karsten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3367401/
https://www.ncbi.nlm.nih.gov/pubmed/22679447
http://dx.doi.org/10.3389/fimmu.2012.00141
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author Riewaldt, Julia
Düber, Sandra
Boernert, Marie
Krey, Martina
Dembinski, Marcin
Weiss, Siegfried
Garbe, Annette I.
Kretschmer, Karsten
author_facet Riewaldt, Julia
Düber, Sandra
Boernert, Marie
Krey, Martina
Dembinski, Marcin
Weiss, Siegfried
Garbe, Annette I.
Kretschmer, Karsten
author_sort Riewaldt, Julia
collection PubMed
description The role of Foxp3-expressing regulatory T (T(reg)) cells in tolerance and autoimmunity is well-established. However, although of considerable clinical interest, the role of T(reg) cells in the regulation of hematopoietic homeostasis remains poorly understood. Thus, we analysed B and T lymphopoiesis in the scurfy (Sf) mouse model of T(reg) cell deficiency. In these experiments, the near-complete block of B lymphopoiesis in the BM of adolescent Sf mice was attributed to autoimmune T cells. We could exclude a constitutive lympho-hematopoietic defect or a B cell-intrinsic function of Foxp3. Efficient B cell development in the BM early in ontogeny and pronounced extramedullary B lymphopoietic activity resulted in a peripheral pool of mature B cells in adolescent Sf mice. However, marginal zone B and B-1a cells were absent throughout ontogeny. Developmental B lymphopoietic defects largely correlated with defective thymopoiesis. Importantly, neonatal adoptive T(reg) cell therapy suppressed exacerbated production of inflammatory cytokines and restored thymopoiesis but was ineffective in recovering defective B lymphopoiesis, probably due to a failure to compensate production of stroma cell-derived IL-7 and CXCL12. Our observations on autoimmune-mediated incapacitation of the BM environment in Foxp3-deficient mice will have direct implications for the rational design of BM transplantation protocols for patients with severe genetic deficiencies in functional Foxp3(+) T(reg) cells.
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spelling pubmed-33674012012-06-07 Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy Riewaldt, Julia Düber, Sandra Boernert, Marie Krey, Martina Dembinski, Marcin Weiss, Siegfried Garbe, Annette I. Kretschmer, Karsten Front Immunol Immunology The role of Foxp3-expressing regulatory T (T(reg)) cells in tolerance and autoimmunity is well-established. However, although of considerable clinical interest, the role of T(reg) cells in the regulation of hematopoietic homeostasis remains poorly understood. Thus, we analysed B and T lymphopoiesis in the scurfy (Sf) mouse model of T(reg) cell deficiency. In these experiments, the near-complete block of B lymphopoiesis in the BM of adolescent Sf mice was attributed to autoimmune T cells. We could exclude a constitutive lympho-hematopoietic defect or a B cell-intrinsic function of Foxp3. Efficient B cell development in the BM early in ontogeny and pronounced extramedullary B lymphopoietic activity resulted in a peripheral pool of mature B cells in adolescent Sf mice. However, marginal zone B and B-1a cells were absent throughout ontogeny. Developmental B lymphopoietic defects largely correlated with defective thymopoiesis. Importantly, neonatal adoptive T(reg) cell therapy suppressed exacerbated production of inflammatory cytokines and restored thymopoiesis but was ineffective in recovering defective B lymphopoiesis, probably due to a failure to compensate production of stroma cell-derived IL-7 and CXCL12. Our observations on autoimmune-mediated incapacitation of the BM environment in Foxp3-deficient mice will have direct implications for the rational design of BM transplantation protocols for patients with severe genetic deficiencies in functional Foxp3(+) T(reg) cells. Frontiers Research Foundation 2012-06-05 /pmc/articles/PMC3367401/ /pubmed/22679447 http://dx.doi.org/10.3389/fimmu.2012.00141 Text en Copyright © 2012 Riewaldt, Düber, Boernert, Krey, Dembinski, Weiss, Garbe and Kretschmer. http://www.frontiersin.org/licenseagreement This is an open-access article distributed under the terms of the Creative Commons Attribution Non Commercial License, which permits non-commercial use, distribution, and reproduction in other forums, provided the original authors and source are credited.
spellingShingle Immunology
Riewaldt, Julia
Düber, Sandra
Boernert, Marie
Krey, Martina
Dembinski, Marcin
Weiss, Siegfried
Garbe, Annette I.
Kretschmer, Karsten
Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title_full Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title_fullStr Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title_full_unstemmed Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title_short Severe Developmental B Lymphopoietic Defects in Foxp3-Deficient Mice are Refractory to Adoptive Regulatory T Cell Therapy
title_sort severe developmental b lymphopoietic defects in foxp3-deficient mice are refractory to adoptive regulatory t cell therapy
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3367401/
https://www.ncbi.nlm.nih.gov/pubmed/22679447
http://dx.doi.org/10.3389/fimmu.2012.00141
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