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Bone marrow transplantation improves the outcome of Atm-deficient mice through the migration of ATM-competent cells

Authors :
Julia Pietzner
C. Satzger-Prodinger
C. Doering
M. B. Merscher
Ingo Bechmann
Sophie Schirmer
Ralf Schubert
Stefan Zielen
R. P. Duecker
Astrid Wietelmann
Peter Bader
D. Del Turco
Patrick C. Baer
Selim Kuçi
Source :
Human Molecular Genetics. 22:493-507
Publication Year :
2012
Publisher :
Oxford University Press (OUP), 2012.

Abstract

Ataxia telangiectasia (A-T) is a highly pleiotropic disorder. Patients suffer from progressive neurodegeneration, severe bronchial complications, immunodeficiency, hypersensitivity to radiotherapy and elevated risk of malignancies. Leukemia and lymphoma, along with lung failure, are the main causes of morbidity and mortality in A-T patients. At present, no effective therapy for A-T exists. One promising therapeutic approach is bone marrow transplantation (BMT) that is already used as a curative therapy for other genomic instability syndromes. We used an established clinically relevant non-myeloablative host-conditioning regimen and transplanted green fluorescent protein (GFP)-expressing ataxia telangiectasia mutated (ATM)-competent bone marrow-derived cells (BMDCs) into Atm-deficient mice. GFP expression allowed tracking of the potential migration of the cells into the tissues of recipient animals. Donor BMDCs migrated into the bone marrow, blood, thymus, spleen and lung tissue of Atm-deficient mice showing an ATM-competent phenotype. BMT inhibited thymic lymphomas, normalized T-lymphocyte populations, improved weight gain and rearing activity of Atm-deficient mice. In contrast, no GFP(+) cells were found in the cerebellum or cerebrum, and we detected decreased size index in MRI imaging of the cerebellum in 8-month-old transplanted Atm-deficient mice in comparison to wild-type mice. The repopulation with ATM-competent BMDCs is associated with a prolonged lifespan and significantly improved the phenotype of Atm-deficient mice.

Details

ISSN :
14602083 and 09646906
Volume :
22
Database :
OpenAIRE
Journal :
Human Molecular Genetics
Accession number :
edsair.doi.dedup.....3806611ff4596f60fd59b4f03506208e
Full Text :
https://doi.org/10.1093/hmg/dds448