Literature DB >> 11520813

Radiosensitivity of thymic interleukin-7 production and thymopoiesis after bone marrow transplantation.

B Chung1, L Barbara-Burnham, L Barsky, K Weinberg.   

Abstract

Interleukin-7 (IL-7) is the major thymopoietic cytokine. Injections of IL-7 after murine bone marrow transplantation (BMT) correct defects in thymic differentiation, including thymic hypocellularity, abnormal differentiation of CD3- CD4- CD8- (triple-negative [TN]) thymocytes into CD4+ CD8+ (double-positive [DP]) cells, and antigen-specific mature T-lymphocyte proliferation. To determine whether IL-7 production is decreased in BMT recipients, BMT was performed with congenic murine donor-recipient strains and escalating doses of pre-BMT conditioning. Increasing doses of radiation resulted in decreased thymic cellularity and maturation from the TN to the DP stage. Quantitative reverse transcription-polymerase chain reaction analyses demonstrated that intrathymic production of IL-7 was significantly decreased in irradiated mice than in nonirradiated controls. Decline in IL-7 transcript levels was correlated with the dose of radiation administered. Analyses of the numbers of CD45- major histocompatibility complex class II+ thymic stromal cells suggested that the mechanism for the decreased IL-7 production was loss of IL-7-producing thymic stromal cells. Experiments indicated that pre-BMT conditioning with radiation led to decreased stromal production of IL-7 and consequent blocks in the maturation of thymocytes. They provided a mechanism for both the abnormal thymopoiesis observed after BMT and the previously observed beneficial effects of IL-7 administration in murine models. Impaired production of IL-7 by thymic stroma may be a general model for the clinically observed adverse effects of cytotoxic therapy on thymopoiesis.

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Year:  2001        PMID: 11520813     DOI: 10.1182/blood.v98.5.1601

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  30 in total

1.  Donor B-cell alloantibody deposition and germinal center formation are required for the development of murine chronic GVHD and bronchiolitis obliterans.

Authors:  Mathangi Srinivasan; Ryan Flynn; Andrew Price; Ann Ranger; Jeffrey L Browning; Patricia A Taylor; Jerome Ritz; Joseph H Antin; William J Murphy; Leo Luznik; Mark J Shlomchik; Angela Panoskaltsis-Mortari; Bruce R Blazar
Journal:  Blood       Date:  2011-11-09       Impact factor: 22.113

2.  In vitro culture during retroviral transduction improves thymic repopulation and output after total body irradiation and autologous peripheral blood progenitor cell transplantation in rhesus macaques.

Authors:  Karin Loré; Ruth Seggewiss; F Javier Guenaga; Stefania Pittaluga; Robert E Donahue; Allen Krouse; Mark E Metzger; Richard A Koup; Cavan Reilly; Daniel C Douek; Cynthia E Dunbar
Journal:  Stem Cells       Date:  2006-02-23       Impact factor: 6.277

Review 3.  Strategies for reconstituting and boosting T cell-based immunity following haematopoietic stem cell transplantation: pre-clinical and clinical approaches.

Authors:  Ann P Chidgey; Natalie Seach; Jarrod Dudakov; Maree V Hammett; Richard L Boyd
Journal:  Semin Immunopathol       Date:  2008-11-04       Impact factor: 9.623

Review 4.  Thymic T-cell development in allogeneic stem cell transplantation.

Authors:  Werner Krenger; Bruce R Blazar; Georg A Holländer
Journal:  Blood       Date:  2011-03-22       Impact factor: 22.113

5.  Delivery of progenitors to the thymus limits T-lineage reconstitution after bone marrow transplantation.

Authors:  Daniel A Zlotoff; Shirley L Zhang; Maria Elena De Obaldia; Paul R Hess; Sarah P Todd; Theodore D Logan; Avinash Bhandoola
Journal:  Blood       Date:  2011-06-09       Impact factor: 22.113

6.  T cell progenitor therapy-facilitated thymopoiesis depends upon thymic input and continued thymic microenvironment interaction.

Authors:  Michelle J Smith; Dawn K Reichenbach; Sarah L Parker; Megan J Riddle; Jason Mitchell; Kevin C Osum; Mahmood Mohtashami; Heather E Stefanski; Brian T Fife; Avinash Bhandoola; Kristin A Hogquist; Georg A Holländer; Juan Carlos Zúñiga-Pflücker; Jakub Tolar; Bruce R Blazar
Journal:  JCI Insight       Date:  2017-05-18

7.  T-cell reconstitution after allogeneic stem cell transplantation: assessment by measurement of the sjTREC/βTREC ratio and thymic naive T cells.

Authors:  Simone Ringhoffer; Markus Rojewski; Hartmut Döhner; Donald Bunjes; Mark Ringhoffer
Journal:  Haematologica       Date:  2013-04-12       Impact factor: 9.941

8.  Short-term inhibition of p53 combined with keratinocyte growth factor improves thymic epithelial cell recovery and enhances T-cell reconstitution after murine bone marrow transplantation.

Authors:  Ryan M Kelly; Emily M Goren; Patricia A Taylor; Scott N Mueller; Heather E Stefanski; Mark J Osborn; Hamish S Scott; Elena A Komarova; Andrei V Gudkov; Georg A Holländer; Bruce R Blazar
Journal:  Blood       Date:  2009-12-04       Impact factor: 22.113

9.  Engineering the human thymic microenvironment to support thymopoiesis in vivo.

Authors:  Brile Chung; Amélie Montel-Hagen; Shundi Ge; Garrett Blumberg; Kenneth Kim; Sam Klein; Yuhua Zhu; Chintan Parekh; Arumugam Balamurugan; Otto O Yang; Gay M Crooks
Journal:  Stem Cells       Date:  2014-09       Impact factor: 6.277

Review 10.  Modulating T-cell homeostasis with IL-7: preclinical and clinical studies.

Authors:  C M Capitini; A A Chisti; C L Mackall
Journal:  J Intern Med       Date:  2009-08       Impact factor: 8.989

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