V. F. Gnocchi, R. B. White, and Y. Ono, Further characterisation of the molecular signature of quiescent and activated mouse muscle satellite cells, PLoS ONE, vol.4, p.5205, 2009.

T. A. Partridge, J. E. Morgan, and G. R. Coulton, Conversion of mdx myofibres from dystrophin-negative to -positive by injection of normal myoblasts, Nature, vol.337, pp.176-185, 1989.

E. Gussoni, H. M. Blau, and L. M. Kunkel, The fate of individual myoblasts after transplantation into muscles of DMD patients, Nat Med, vol.3, pp.970-977, 1997.

B. Peault, M. Rudnicki, and Y. Torrente, Stem and progenitor cells in skeletal muscle development, maintenance, and therapy, Mol Ther, vol.15, pp.867-77, 2007.

J. R. Mendell, J. T. Kissel, and A. A. Amato, Myoblast transfer in the treatment of Duchenne's muscular dystrophy, N Engl J Med, vol.333, pp.832-840, 1995.

J. P. Tremblay, F. Malouin, and R. Roy, Results of a triple blind clinical study of myoblast transplantations without immunosuppressive treatment in young boys with Duchenne muscular dystrophy, Cell Transplant, vol.2, pp.99-112, 1993.

J. R. Beauchamp, J. E. Morgan, and C. N. Pagel, Dynamics of myoblast transplantation reveal a discrete minority of precursors with stem cell-like properties as the myogenic source, J Cell Biol, vol.144, pp.1113-1135, 1999.

I. Kinoshita, J. T. Vilquin, and B. Guerette, Very efficient myoblast allotransplantation in mice under FK506 immunosuppression, Muscle Nerve, vol.17, pp.1407-1422, 1994.

G. K. Pavlath, T. A. Rando, and H. M. Blau, Transient immunosuppressive treatment leads to long-term retention of allogeneic myoblasts in hybrid myofibers, J Cell Biol, vol.127, pp.1923-1955, 1994.

M. Bouchentouf, B. F. Benabdallah, and J. P. Tremblay, Myoblast survival enhancement and transplantation success improvement by heat-shock treatment in mdx mice, Transplantation, vol.77, pp.1349-56, 2004.

I. Kinoshita, J. T. Vilquin, and J. P. Tremblay, Pretreatment of myoblast cultures with basic fibroblast growth factor increases the efficacy of their transplantation in mdx mice, Muscle Nerve, vol.18, pp.834-875, 1995.

B. F. Benabdallah, M. Bouchentouf, and J. P. Tremblay, Improved success of myoblast transplantation in mdx mice by blocking the myostatin signal, Transplantation, vol.79, pp.1696-702, 2005.

M. Bouchentouf, B. F. Benabdallah, and P. Bigey, Vascular endothelial growth factor reduced hypoxia-induced death of human myoblasts and improved their engraftment in mouse muscles, Gene Ther, vol.15, pp.404-418, 2008.

M. Cerletti, S. Jurga, and C. A. Witczak, Highly efficient, functional engraftment of skeletal muscle stem cells in dystrophic muscles, Cell, vol.134, pp.37-47, 2008.

A. C. Sinanan, N. P. Hunt, and M. P. Lewis, Human adult craniofacial muscle-derived cells: neural-cell adhesion-molecule

, CD56)-expressing cells appear to contain multipotential stem cells, Biotechnol Appl Biochem, vol.40, pp.25-34, 2004.

M. Lindstrom and L. E. Thornell, New multiple labelling method for improved satellite cell identification in human muscle: application to a cohort of power-lifters and sedentary men, Histochem Cell Biol, vol.132, pp.141-57, 2009.

V. Vasiliou, A. Pappa, and T. Estey, Role of human aldehyde dehydrogenases in endobiotic and xenobiotic metabolism, Drug Metab Rev, vol.36, pp.279-99, 2004.

N. Lassen, A. Pappa, and W. J. Black, Antioxidant function of corneal ALDH3A1 in cultured stromal fibroblasts, Free Radic Biol Med, vol.41, pp.1459-69, 2006.

D. R. Soprano, B. W. Teets, and K. J. Soprano, Role of retinoic acid in the differentiation of embryonal carcinoma and embryonic stem cells, Vitam Horm, vol.75, pp.69-95, 2007.

R. W. Storms, A. P. Trujillo, and J. B. Springer, Isolation of primitive human hematopoietic progenitors on the basis of aldehyde dehydrogenase activity, Proc Natl Acad Sci USA, vol.96, pp.9118-9141, 1999.

D. A. Hess, L. Wirthlin, and T. P. Craft, Selection based on CD133 and high aldehyde dehydrogenase activity isolates long-term reconstituting human hematopoietic stem cells, Blood, vol.107, pp.2162-2171, 2006.

S. Corti, F. Locatelli, and D. Papadimitriou, Identification of a primitive brainderived neural stem cell population based on aldehyde dehydrogenase activity, Stem Cells, vol.24, pp.975-85, 2006.

C. Ginestier, M. H. Hur, C. , and E. , ALDH1 is a marker of normal and malignant human mammary stem cells and a predictor of poor clinical outcome, Cell Stem Cell, vol.1, pp.555-67, 2007.
URL : https://hal.archives-ouvertes.fr/hal-01431968

A. K. Croker, D. Goodale, and J. Chu, High aldehyde dehydrogenase and expression of cancer stem cell markers selects for breast cancer cells with enhanced malignant and metastatic ability, J Cell Mol Med, 2008.

S. Descamps, H. Arzouk, and F. Bacou, Inhibition of myoblast differentiation by Sfrp1 and Sfrp2, Cell Tissue Res, vol.332, pp.299-306, 2008.

J. M. Levin, R. A. El-andalousi, and J. Dainat, SFRP2 expression in rabbit myogenic progenitor cells and in adult skeletal muscles, J Muscle Res Cell Motil, vol.22, pp.361-370, 2001.

D. Marelli, C. Desrosiers, and M. El-alfy, Cell transplantation for myocardial repair: an experimental approach, Cell Transplant, vol.1, pp.383-90, 1992.

R. C. Chiu, A. Zibaitis, and R. L. Kao, Cellular cardiomyoplasty: myocardial regeneration with satellite cell implantation, Ann Thorac Surg, vol.60, pp.12-20, 1995.

W. Li, A. L. Sabater, and Y. T. Chen, A novel method of isolation, preservation, and expansion of human corneal endothelial cells, Invest Ophthalmol Vis Sci, vol.48, pp.614-634, 2007.

M. Royuela, D. Chazalette, and F. Rivier, Dystrophin and dystrophin-associated protein in muscles and nerves from monkey, Eur J Histochem, vol.47, pp.29-38, 2003.
URL : https://hal.archives-ouvertes.fr/hal-00358733

M. Barro, G. Carnac, and S. Flavier, Myoblasts from affected and non affected FSHD muscles exhibit morphological differentiation defects, J Cell Mol Med, vol.14, pp.275-89, 2010.
URL : https://hal.archives-ouvertes.fr/inserm-00284424

M. Kitzmann, A. Bonnieu, and C. Duret, Inhibition of Notch signaling induces myotube hypertrophy by recruiting a subpopulation of reserve cells, J Cell Physiol, vol.208, pp.538-586, 2006.

E. Sterrenburg, R. Turk, T. Hoen, and P. A. , Large-scale gene expression analysis of human skeletal myoblast differentiation, Neuromuscul Disord, vol.14, pp.507-525, 2004.

F. Gonnet, B. Bouazza, and G. A. Millot, Proteome analysis of differentiating human myoblasts by dialysis-assisted two-dimensional gel electrophoresis (DAGE), Proteomics, vol.8, pp.264-78, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00271318

V. Vasiliou and D. W. Nebert, Analysis and update of the human aldehyde dehydrogenase (ALDH) gene family, Hum Genomics, vol.2, pp.138-181, 2005.

N. G. Papadopoulos, G. V. Dedoussis, and G. Spanakos, An improved fluorescence assay for the determination of lymphocyte-mediated cytotoxicity using flow cytometry, J Immunol Methods, vol.177, pp.101-112, 1994.

P. Shan, J. Pu, and A. Yuan, RXR agonists inhibit oxidative stress-induced apoptosis in H9c2 rat ventricular cells, Biochem Biophys Res Commun, vol.375, pp.628-661, 2008.

H. Gulbins, S. Schrepfer, and A. Uhlig, Myoblasts survive intracardiac transfer and divide further after transplantation, Heart Surg Forum, vol.5, pp.340-344, 2002.

Y. Torrente, M. Belicchi, and M. Sampaolesi, Human circulating AC133(?) stem cells restore dystrophin expression and ameliorate function in dystrophic skeletal muscle, J Clin Invest, vol.114, pp.182-95, 2004.

P. S. Zammit, All muscle satellite cells are equal, but are some more equal than others?, J Cell Sci, vol.121, pp.2975-82, 2008.

J. Ehrhardt, K. Brimah, and C. Adkin, Human muscle precursor cells give rise to functional satellite cells in vivo, Neuromuscul Disord, vol.17, pp.631-639, 2007.

C. A. Collins, I. Olsen, and P. S. Zammit, Stem cell function, self-renewal, and behavioral heterogeneity of cells from the adult muscle satellite cell niche, Cell, vol.122, pp.289-301, 2005.

E. Dernbach, C. Urbich, and R. P. Brandes, Antioxidative stress-associated genes in circulating progenitor cells: evidence for enhanced resistance against oxidative stress, Blood, vol.104, pp.3591-3598, 2004.

T. He, T. E. Peterson, and E. L. Holmuhamedov, Human endothelial progenitor cells tolerate oxidative stress due to intrinsically high expression of manganese superoxide dismutase, Arterioscler Thromb Vasc Biol, vol.24, pp.2021-2028, 2004.

K. L. Urish, J. B. Vella, and M. Okada, Antioxidant levels represent a major determinant in the regenerative capacity of muscle stem cells, Mol Biol Cell, vol.20, pp.509-529, 2009.

D. J. Pearce and D. Bonnet, The combined use of Hoechst efflux ability and aldehyde dehydrogenase activity to identify murine and human hematopoietic stem cells, Exp Hematol, vol.35, pp.1437-1483, 2007.

B. P. Levi, O. H. Yilmaz, and G. Duester, Aldehyde dehydrogenase 1a1 is dispensable for stem cell function in the mouse hematopoietic and nervous systems, Blood, vol.113, pp.1670-80, 2009.

T. A. Linkhart, C. H. Clegg, and S. D. Hauschka, Control of mouse myoblast commitment to terminal differentiation by mitogens, J Supramol Struct, vol.14, pp.483-98, 1980.

H. C. Dreyer, C. E. Blanco, and F. R. Sattler, Satellite cell numbers in young and older men 24 hours after eccentric exercise, Muscle Nerve, vol.33, pp.242-53, 2006.

K. Suzuki, B. Murtuza, and J. R. Beauchamp, Dynamics and mediators of acute graft attrition after myoblast transplantation to the heart, FASEB J, vol.18, pp.1153-1158, 2004.

M. Stangel, U. K. Zettl, and E. Mix, H2O2 and nitric oxide-mediated oxidative stress induce apoptosis in rat skeletal muscle myoblasts, J Neuropathol Exp Neurol, vol.55, pp.36-43, 1996.

S. Kuang, K. Kuroda, L. Grand, and F. , Asymmetric self-renewal and commitment of satellite stem cells in muscle, Cell, vol.129, pp.999-1010, 2007.

A. Baroffio, M. Bochaton-piallat, and G. Gabbiani, Heterogeneity in the progeny of single human muscle satellite cells, Differentiation, vol.59, pp.259-68, 1995.

J. Reimann, K. Brimah, and R. Schroder, Pax7 distribution in human skeletal muscle biopsies and myogenic tissue cultures, Cell Tissue Res, vol.315, pp.233-275, 2004.

J. Gil, A. Stembalska, and K. A. Pesz, Cancer stem cells: the theory and perspectives in cancer therapy, J Appl Genet, vol.49, pp.193-202, 2008.