Please use this identifier to cite or link to this item: http://hdl.handle.net/1942/33210
Title: Alteration of Cardiac Progenitor Cell Potency in GRMD Dogs
Authors: Cassano, M.
BERARDI, Emanuele 
Crippa, S.
Toelen, J.
Barthelemy, I.
Micheletti, R.
Chuah, M.
Vandendriessche, T.
Debyser, Z.
Blot, S.
Sampaolesi, M.
Issue Date: 2012
Publisher: SAGE PUBLICATIONS INC
Source: CELL TRANSPLANTATION, 21 (9) , p. 1945 -1967
Abstract: Among the animal models of Duchenne muscular dystrophy (DMD). the Golden Retriever muscular dystrophy (GRMD) dog is considered the best model in terms of size and pathological onset of the disease. As in human patients presenting with DMD or Becker muscular dystrophies (BMD), the GRMD is related to a spontaneous X-linked mutation of dystrophin and is characterized by myocardial lesions. In this respect. GRMD is a useful model to explore cardiac pathogenesis and for the development of therapeutic protocols. To investigate whether cardiac progenitor cells (CPCs) isolated from healthy and GRMD dogs may differentiate into myocardial cell types and to test the feasibility of cell therapy for cardiomyopathies in a preclinical model of DMD. CPCs were isolated from cardiac biopsies of healthy and GRMD dogs. Gene profile analysis revealed an active cardiac transcription network in both healthy and GRMD CPCs. However, GRMD CPCs showed impaired self-renewal and cardiac differentiation. Population doubling and telomerase analyses highlighted earlier senescence and proliferation impairment in progenitors isolated from GRMD cardiac biopsies. Immunofluorescence analysis revealed that only wt CPCs showed efficient although not terminal cardiac differentiation, consistent with the upregulation of cardiac-specific proteins and microRNAs. Thus, the pathological condition adversely influences the cardiomyogenic differentiation potential of cardiac progenitors. Using PiggyBac transposon technology we marked CPCs for nuclear dsRed expression, providing a stable nonviral gene marking method for in vivo tracing of CPCs. Xenotransplantation experiments in neonatal immunodeficient mice revealed a valuable contribution of CPCs to cardiomyogenesis with homing differences between wt and dystrophic progenitors. These results suggest that cardiac degeneration in dystrophinopathies may account for the progressive exhaustion of local cardiac progenitors and shed light on cardiac sternness in physiological and pathological conditions. Furthermore, we provide essential information that canine CPCs may he used to alleviate cardiac involvement in a large preclinical model of DMD.
Keywords: Cardiac progenitor;Muscular dystrophy;GRMD model;Cell therapy
Document URI: http://hdl.handle.net/1942/33210
ISSN: 0963-6897
e-ISSN: 1555-3892
DOI: 10.3727/096368912X638919
ISI #: WOS:000312431600011
Rights: 2012 Cognizant Comm. Corp.
Category: A1
Type: Journal Contribution
Appears in Collections:Research publications

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