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http://dx.doi.org/10.5713/ajas.2009.90042

Myogenic Satellite Cells and Its Application in Animals - A Review  

Singh, N.K. (Stem Cell Culture and Molecular Orthopaedic Laboratory, Division of Surgery, F.V.S.c & A.H, SKUAST-J, R.S.)
Lee, H.J. (Nutrition and Physiology, NLRI)
Jeong, D.K. (Dept. Animal Biotechnology, College of Applied Life Science, Jeju National University)
Arun, H.S. (Center for Research in Vascular biology, University of cork)
Sharma, L. (Stem Cell Culture and Molecular Orthopaedic Laboratory, Division of Surgery, F.V.S.c & A.H, SKUAST-J, R.S.)
Hwang, I.H. (Stem Cell Culture and Molecular Orthopaedic Laboratory, Division of Surgery, F.V.S.c & A.H, SKUAST-J, R.S.)
Publication Information
Asian-Australasian Journal of Animal Sciences / v.22, no.10, 2009 , pp. 1447-1460 More about this Journal
Abstract
Myogenic satellite cells have been isolated and identified by several recently elucidated molecular markers. Furthermore, knowledge about the precise function of these markers has provided insight into the early and terminal events of satellite cells during proliferation, differentiation, transdifferentiation, specification and activation. Recently, quiescent myogenic satellite cells have been associated with possession of Pax 3 and 7 that represent pluripotent stem cells capable of differentiating into other lineages. However, the mechanism by which myogenic satellite cells attain pluripotent potential remain elusive. Later, transdifferentiating ability of these cells to another lineage in the absence or presence of certain growth factor/ or agents has revolutionized the scope of these pluripotent myogenic satellite cells for manipulation of animal production (in terms of quality and quantity of muscle protein) and health (in terms of repair of skeletal muscle, cartilage or bone).
Keywords
Satellite Cells; Myogenesis; Plasticity; Transdifferentiation; Adipogenesis;
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1 Noll, M. 1993, Evolution and role of Pax genes, Curr. Opin. Genet. Dev 3:595-605   DOI   PUBMED   ScienceOn
2 Pennica, D., K. J. Shaw, T. A. Swanson, M. W. Moore, D. L. Shelton, K. A. Zioncheck, A. Rosenthal, T. Taga, N. F. Paoni and W. I. Wood. 1995, Cardiotrophin-1. Biological activities and binding to the leukemia inhibitory factor receptor/gp130 signaling complex, J. Biol. Chem 270:10915-10922   DOI   ScienceOn
3 Renault, V., L. E. Thornell, G. Butler-Browne and V. Mouly. 2002, Human skeletal muscle satellite cells: ageing oxidative stress, and the mitotic clock, Exp. Gerontol 37:1229-1236   DOI   ScienceOn
4 Rosenblatt, J. D., D. Yong and D. J. Perry. 1994, Satellite cell activity is required for hypertrophy of overloaded adult rat muscle, Muscle Nerve 17:608-613   DOI   ScienceOn
5 Schafer, B. W., T. Czemy, M. Bemasconi, M. Genini and M. Busslinger. 1994, Molecular cloning and Characterization of a human PAX-7-cDNA expressed in normal and neoplastic myocytes, Nucleic Acids Res 22:4574-4582   DOI   PUBMED
6 Seale, P. and M. A. Rudnicki. 2000, A new look at the origin, function, and "Stem-Cell" status of muscle satellite cells, Dev.Biol 218:115-124   DOI   ScienceOn
7 Sheehan, S. M. and R. E. Allen. 1999, Skeletal muscle satellite cell proliferation in response to members of the fibroblast growth factor family and hepatocyte growth factor, J. Cell Physiol 181:499-506   DOI   ScienceOn
8 Shefer, G., M. Wleiklinski,-Lee and Z. Yablonko-Reuveni. 2004, Skeketal muscle satellite cells can spontaneously enter an alternative mesenchymal pathway, J. Cell Sci 117:5393-5404   DOI   ScienceOn
9 Bansal, D. and K. P. Campbell. 2004, Dysferlin and the plasma membrane repair in muscular dystrophy, Trends Cell Biol 14:206-213   DOI   ScienceOn
10 Bischoff, R. 1994, The satellite cell and muscle regeneration, In: Myology (Ed. A. G. Engel and C. Franszini-Armstrong), NewYork: McGraw-Hill, pp. 97-118
11 Bockhold, K. J., J. D. Rosenblatt and T. A. Partridge. 1998, Aging normal and dystrophic mouse muscle: analysis of myogenecity in cultures of the living single fibres, Muscle Nerve 21:173-183   DOI   ScienceOn
12 Brand-Saberi, B. 2005, Genetic and epigenetic control of skeletal muscle development Ann. Anat 187:199-207   DOI   ScienceOn
13 Tajbaksh, S., D. Rocancourt, G. Cossu and M. Buckingham. 1997, Redefining the genetic hierarchies controlling skeletal myogenesis: Pax3 and Myf5 act upstream of MyoD, Cell 89:127-138   DOI   ScienceOn
14 Singh, N. K., G. R. Singh, Amarpal, P. Kinjavdekar, A. K. Sharma, S. Kumar, T. R. Mohanty, H. S. Chae, Y. M. Yoo and C. N. Ahn. 2007d, Articular cartilage repair with autografting unde rthe influence of insulin-like growth factor-1 in rabbits, J. Vet. Med. A 54:210-218   DOI   ScienceOn
15 Slack, J. M. M. and D. Tosh. 2001, Transdifferentiation and metaplasia -switching cell types, Curr. Opin. Genet. Dev 11:581-586   DOI   ScienceOn
16 Snow, M. H. 1977, The effects of aging on satellite cells in skeletal muscles of mice and rats, Cell Tissue Res 185:399-408   DOI   PUBMED   ScienceOn
17 Tamaki, T., A. Aksatuka, K. Ando, Y. Nakamura, H. Matsuzawa, T. Hotta, R. R. Roy and V. R. Edgerton. 2002a, Identification of myogenic-endothelial progenitor cells in the interstitial spacesof skeletal muscle, J. Cell Biol 157:571-577   DOI   ScienceOn
18 Tamaki, T., A. Aksatuka, S. Yoshimura, R. R. Roy and V. Edgerton. 2002b, New fibre formation in the interstitial spaces of rat skeletal muscle during postnatal growth, J. Histochem.Cytochem 50:1097-1111   DOI   ScienceOn
19 Thornell, L. E., M. Lindstom, V. Renault, V. Mouly and G. S. Butler-Browne. 2003, Satellite cells and training in the elderly, Scand. J. Med. Sci. Sport 13:48-55   DOI   ScienceOn
20 Whitman, M. 1998, Smads and early developmental signaling by the TGF$\beta$ superfamily, Genes Dev 12:2445-2462   DOI   PUBMED   ScienceOn
21 Conboy, I. M., M. J. Conboy, G. M. Smythe and T. A. Rando. 2003, Notch-mediated restoration of regenerative potential to aged muscle, Sci 302:1575-1577   DOI   PUBMED   ScienceOn
22 Brand-Saberi, B. and B. Christ. 1999, Genetic and epigenetic control of skeletal muscle development in vertebrates, CellTissue Res 296:199-212   DOI   ScienceOn
23 Cantini, M. and F. Carraro. 1996, Control of cell proliferation by macrophage-myoblast interactions, Basic Appl. Myol 6:485- 489
24 Chakravarthy, M. V., B. S. Davis and F. W. Booth. 2000a, IGF-I restores satellite cell proliferative potential in immobilized old skeletal muscle, J. Appl. Physiol 89:1365-1379
25 Cossu, G. and P. Bianco. 2003, Mesoangioblasts-vascular progenitors for extravascular mesodermal tissues, Curr. Opin. Genet. Dev 13:537-542   DOI   ScienceOn
26 Covault, J. and J. R. Sanes. 1986, Distribution of N-CAM in synaptic and extrasynaptic portions of developing and adult skeletal muscle, J. Cell Biol 102:716-730   DOI   ScienceOn
27 Csete, M., J. Walikonis, N. Slawny, Y. Wei, S. Korsnes, J. C. Doyle and B. Wold. 2001, Oxygen-mediated regulation of skeletal muscle satellite cell proliferation and adipogenesis in culture, J. Cell Physiol 189:189-196   DOI   ScienceOn
28 Englund, P., E. Lindroos, I. Nennesmo, L. Klareskog and I. E. Lundberg. 2001, Skeletal muscle fibers express major histocompatibility complex class II antigens independently of inflammatory infiltrates in inflammatory myopathies, Am. J. Pathol 159:1263-1273   DOI   ScienceOn
29 Floss, T., H. H. Arnold and T. Braun. 1997, A role for FGF-6 in skeletal muscle regeneration, Genes Dev 11:2040-2051   DOI   ScienceOn
30 Yablonka-Reuveni, Z. and A. J. Rivera. 1994,Temporal expression of regulatory and structural muscle proteins during myogenesis of satellite cells on isolated adult rat fibers,Dev. Biol 164:588-603   DOI   ScienceOn
31 Yang, Q., Y. Kong, B. Rothermel, D. J. Garry, R. Bassel-Duby and R. S. Williams. 2000, The winged-helix/forkhead protein myocyte nuclear factor beta (MNF-$\beta$) forms a co-repressor complex with mammalian sin3B, Biochem. J 345:335-343   DOI   ScienceOn
32 Zammit, E. and J. R. Beauchamp. 2001, The skeletal muscle satellite cells: stem cell or son of stem cell? Differentiation 68:193-204   DOI   ScienceOn
33 Irintchev, A., M. Zeschnigk, A. Starzinski-Powitz and A. Wernig. 1994, Expression pattern of M-cadherin in normal, denervated and regenerating mouse muscles, Dev. Dyn 199:326-337   DOI   ScienceOn
34 Garry, D. J., Q. R. Yang, R. Bassel-Duby and R. Sanders Williams. 1997, Persistent expression of MNF identifies myogenic stem cells in postnatal muscles, Dev. Biol 188:280-294   DOI   ScienceOn
35 Harison, B. C., M. L. Bell, D. L. Allen, W. C. Byrnes and L. A. Leinwand. 2002, Skeletal muscle adaptations in response to voluntary wheel running in myosin heavy chain null mice, J. Appl. Physiol 92:313-322
36 Hibi, M., K. Nakajima and T. Hirano. 1996, IL-6 cytokine family and signal transduction: a model of the cytokine system, J. Mol.Med 74:1-12   DOI   ScienceOn
37 Jankowski, R. J., C. Haluszczak, M. Trucco and J. Huard. 2001, flow cytometric characterization of myogenic cell population obtained by pre-plate technique: potential for rapid isolation of muscle derived stem cells, Hum. Gene Ther12:619-628   DOI   ScienceOn
38 Jejuriker, S. S. and W. W. Jr Kuzon. 2003, Satellite cell depletion in degenerative skeletal muscle, Apoptosis 8:573-578   DOI   ScienceOn
39 Karpati, G., E. E. Zubrzycka-Gaarn, S. Carpenter, D. E. Bulman, R. N. Ray and R. G. Worton. 1990, Age-related coversion of dystrophin-negative to positive fibre segments of skeletal but not cardiac muscle fibres in heterozygote mdx mice, J. Neuropathol, Exp. Neurol 49:96-105   DOI
40 Karpati, G., Y. Pouliot and S. Carpenter. 1988, Expression of immunoreactive major histocompatibility complex products in human skeletal muscles, Ann. Neurol 23:64-72   DOI   ScienceOn
41 Kuschel, R., Z. Yablonka-Reuveni and A. Bornemann. 1999, Satellite cells on isolated myofibre from normal and denervated adult rat muscle, J. Histochem Cytochem 47:1375-1384   DOI   ScienceOn
42 Katagiri, T., S. Akiyama, M. Namiki, M. Komaki, A. Yamaguchi, V. Rosen, J. M. Wozney, A. Fujisawa-Sehara and T. Suda. 1997, Bone morphogenetic protein-2 inhibits terminal differentiation of myogenic cells by suppressing the transcriptional activity of Myo D and myogenenin, Exp. Cell Res 230:342-351   DOI   ScienceOn
43 Koenig, M. and L. M. Kunkel. 1990, Detailed analysis of the repeat domain of dystrophin reveals four potential hinge segments that may confer flexibility, J. Biol. Chem 265:4560-4566   PUBMED
44 Koenig, M., A. P. Monaco and L. M. Kunkel. 1988, The complete sequence of dystrophin predicts a rod-shaped cytoskeletal protein, Cell 53:219-226   DOI   ScienceOn
45 Makitie, J. and H. Teravainen. 1977, Histochemical studies of striated muscle after temporary ischaemia in the rat, Acta Neuropathol 37:237-245   DOI   ScienceOn
46 McArdle, A., A. Vasilaki and M. Jackson. 2002, Exercise and skeletal muscle ageing: cellular and molecular mechanisms, Ageing Res. Rev 1:79-93   DOI   ScienceOn
47 McKinney-Freeman, S. L., K. A. Jackson, F. D. Camargo, G. Ferrari, F. Mavillo and M. A. Goodell. 2002, Muscle-derived hematopoietic stem cells are hematopoietic in origin, Proc. Natl. Acad. Sci. USA 99:1341-1346   DOI   ScienceOn
48 Musaro, A., K. J. McCullaga, F. J. Naya, E. N. Olson and N. Rosenthal. 1999, IGF-1 induces skeletal myocyte hypertrophy through calcineurin in association with GATA-2 and NF-ATc1, Nature 400:581-585   DOI   ScienceOn
49 Sakuma, K., K. Watanabe, M. Sano, S. Kitajima, K. Sakamoto, I. Uramoto and T. Totsuka T. 2000, The adaptive response of transforming growth factor-b2 and -bRII in the overloaded, regenerating and denervated muscles of rats, Acta Neuropathol(Berl) 99:177-185   DOI   ScienceOn
50 Conboy, I. M., M. J. Conboy, A. J. Wagers, E. R. Girma, L. L. Weissman and T. A. Rando. 2005, Rejuvination of aged progenitor cells by exposure to a young systemic environment,Nature 433:760-764   DOI   ScienceOn
51 Tatsumi, R., J. E. Anderson, C. J. Nevoret, O. Halevy and R. E. Allen. 1998, HGF/SF is present in normal adult skeletal muscle and is capable of activating satellite cells, Dev. Biol194:114-128   DOI   ScienceOn
52 Shefer, G. and Z. Yablonko-Reuveni. 2005, Isolation and culture of skeletal muscle myofibres as a means to analyze satellite cells Methods, Mol. Biol 290:281-304
53 Bansal, D., K. Miyake, S. S. Vogel, S. Groh, C. C. Chen, R. Williamson, P. L. McNeil and K. P. Campbell. 2003, Defective Membrane repair in dysferlin-deficient muscular dystrophy, Nature 423:168-172   DOI   ScienceOn
54 Bischoff, R. 1986b, Proliferation of muscle satellite cells on intact myofibre in culture, Dev. Biol 115:129-139   DOI   PUBMED   ScienceOn
55 Rudnicki, M. A., T. Braun, S. Hinuma and R. Jaenisch. 1992, Inactivation of MyoD in mice leads to up-regulation of the myogenic HLH gene Myf-5 and results in apparently normal muscle development. Cell 71:383-390   DOI   ScienceOn
56 Yan, Z., R. B. Biggs and F. W. Booth. 1993, Insulin-like growth factor immunoreactivity increases in muscle after acute eccentric contractions, J. Appl. Physiol 74:410-414
57 Appell, H. J., S. Forsberg and W. Hollman. 1988, Satellite cell activation in human skeletal muscle after training: evidence for muscle fibre neoformation, Int. J. Sports Med 9:297-299   DOI
58 Clarke, M. S., R. Khakee and P. L. McNeil. 1993, Loss of cytoplasmic basic fibroblast growth factor from physiologically wounded myofibers of normal and dystrophic muscle, J. Cell Sci 106:121-133   PUBMED
59 Geiger, B. and O. Ayalon. 1992, Cadherins. Annu. Rev. Cell Biol 8:307-332   DOI   ScienceOn
60 Hoffman, E. P., R. H. Brown and L. M. Kunkel. 1987, Dystrophin: the protein product of the Duchenne muscular dystrophy locus Cell 51:919-928   DOI   ScienceOn
61 Williams, B. A. and C. P. Ordahl. 2000, Fate restriction in limb muscle precursor cells precedes high level-expression of MyoD family member genes, Development 127:2523-2536   DOI   PUBMED   ScienceOn
62 Allen, D. L., B. C. Harison, A. Maass, M. L. Bell, W. C. Byrnes and L. A. Leinwand. 2001, Cardiac and skeletal muscle adaptations to voluntary wheel running in the mouse, J. Appl.Physiol 90:1900-1908
63 Bao, Z. Z., B. G. Bruneau, J. G. Seidman, C. E. Seidman and C. L. Cepko. 1999, Regulation of camber-specific gene expressionin the developing heart by lrx4. Sci 283:1161-1164   DOI   PUBMED   ScienceOn
64 Bottai, D., R. Flocco, F. Gelain, L. Defilippis, R. Galli, A. Gritti and L.A. Vescovi. 2003, Neural stem cells in the adult nervous system, J. Hematother. Stem Cell Res. 12:655-670   DOI   ScienceOn
65 McDonald, K. A., A. F. Horwitz and K.A. Knudsen. 1995, Adhesion molecules and skeletal myogenesis, Semin. Dev. Biol 6:105-116
66 Miller, J. B., L. Schaefer and J. A. Dominov. 1999, Seeking muscle stem cells, Curr. Top Dev. Biol 43:191-219   DOI   PUBMED
67 Cooper, R. N., S. Tajbaksh, V. Mouly, G. Cossu, M. Buckingham and G. S. Butler-Browne. 1999, In vivo satellite cell activation vai Myf5 and MyoD in regenerating mouse skeletal muscle, J. Cell Sci 112:2895-2901   PUBMED
68 Adams, G. R., F. Haddad and K. M. Baldwin. 1999, Time course of changes in markers of myogenesis in overloaded rat skeletal muscles, J. Appl. Physiol 87:1705-1712
69 Harris, J. B. 2003, Myotoxic phospholipases A2 and the regeneration of skeletal muscles, Toxicon 42:933-945   DOI   PUBMED   ScienceOn
70 Lefaucheur, J. P., C. Pastoret and A. Sebille. 1995, Phenotype of Dystrophinopathy in old mdx mice, Anat. Rec 242:70-76   DOI   ScienceOn
71 Lagord, C., L. Soulet, S. Bonavaud, Y. Bassaglia, C. Rey, G.Barlovatz-Meimon, J. Gautron and I. Martelly. 1998, Differential myogenecity of satellite cells isolated from extensor digitorum longus (EDL) and soleus rat muscles revealed in vitro, Cell Tissue Res 291:455-468   DOI   ScienceOn
72 Martino, G. 2004, How the brain repairs itself: new therapeutic strategies in inflammatory and degenerative CNS disorders, Lancet Neurol 3:372-378   DOI   ScienceOn
73 Penningtona, S. R., M. R. Wilkinsb, D. F. Hochstrasserb and M. J. Dunnc. 1997, Proteome analysis: from protein characterization to biological function, Trends Cell Biol 7:168-173   DOI   ScienceOn
74 Schubert, W., K. Zimmermann, M. Cramer and A. Starzinski- Powitz. 1989 ,Lymphocyte antigen Leu-19 as a molecular marker of regeneration in human skeletal muscle, Proc. Natl.Acad. Sci USA 86:307-311   DOI   ScienceOn
75 Strachen, T. and A. P. Read. 1994, PAX7 genes, Curr. Opin. Genet.Dev 4:427-438   DOI   ScienceOn
76 Blaivas, M. and B. M. Carlson. 1991, Muscle fibre branching difference between grafts in old and young rats, Mech. AgeingDev 60:43-53   DOI   ScienceOn
77 Darras, B. T., M. Koenig, L. M. Kunkel and U. Francke. 1988, Direct method for prenatal diagnosis and carrier detection in Duchenne/Becker muscular dystrophy using the entire dystrophin cDNA, Am. J. Med. Genet 29:713-726   DOI   ScienceOn
78 Hu, E., P. Tontonoz and B. M. Spiegelman. 1995, Transdifferentiation of myoblasts by the adipogenic transcription factors PPAR gamma and C/EBP$\alpha$, Proc. Natl. Acad. Sci. USA 92: 9856-9860   DOI   ScienceOn
79 Klose, J. 1975, Protein mapping by combined isoelectric focusing and electrophoresis of mouse tissues: A novel approach to testing for induced point mutations in mammals, Hum. Genet 26:231-243
80 Kosamis, H., D. C. McFarland and J. Killefer. 2001, Temporal expression of growth factor genes during myogenesis of satellite cells derived from the biceps femoris and pectoralis major muscles of the chicken, J. Cell Physiol 186:146-152   DOI   ScienceOn
81 Yang, Q., R. Bassel-Duby and R. S. Williams. 1997, Transient expression of a winged-helix protein, MNF-beta, during myogenesis, Mol. Cell Biol 17:5236-5243   DOI   PUBMED   ScienceOn
82 Sohn, R. L. and E. Gussoni. 2004, Stem cell therapy for muscular dystrophy, Expert Opin. Biol. Ther 4:1-9   DOI   ScienceOn
83 Allen, R. E., L. L. Rankin, E. A. Greene, L. K. Boxhorn, S. E. Johnson, L. G. Taylor and P. R. Pierce. 1991, Desmin is present in proliferating rat muscle satellite cells but not bovine muscle satellite cells, J. Cell. Physiol 149:525-535   DOI
84 Carlson, J. A. and S. E. Always. 1996, Stretch overload-induced satellite cell activation in slow tonic muscle from adult and aged Japanese quail, Am. J. Physiol 270:C578-C584
85 Cornelison, D. D., B. B. Olwin, M. A. Rudnicki and B. J. Wold. 2000, MyoD(-/-) satellite cells in single fibre culture are differentiation defective and MRF4 deficient, Dev. Biol 224:122-137   DOI   ScienceOn
86 Dnetclaw, W. F., E. Jr Berdougo, S. J. Venters and C. P. Ordahl. 2001, Morphogenetic cell movements in the middle region of the dermomyotome dorsomedial lip associated with patterning and growth of the primary epaxial myotome, Development 128:1745-1755   PUBMED
87 Smith, C. K., M. J. Janney and R. E. Allen. 1994, Temporal expression of myogenic regulatory genes during activation, proliferation, and differentiation of rat skeletal muscle satellitecells, J. Cell Physiol 159:379-385   DOI   ScienceOn
88 Goodell, M. A., K. A. Jackson, S. M. Majka, T. Mi, H. Wang, J. Pocius, C. J. Hartley, M. W. Majesky, M. L. Entman and L. H. Michael. 2001, Stem cell plasticity in muscle and bone marrow, Ann. NY Acad. Sci 938:208-218
89 Kikkawa, Y., H. Yu, E. Genersch, N. Sanzen, K. Sekiguchi, R. Fassler, K. P. Campbell, J. F. Talts and P. Ekbolm. 2004, Laminin isoforms differentially regulate adhesion, spreading, proliferation and ERK activation of beta 1 integrin-null cells, Exp. Cell Res 300:94-108   DOI   PUBMED   ScienceOn
90 Johnson, S. E. and R. E. Allen. 1995, Activation of skeletal muscle satellite cells and the role of fibroblast growth factor receptors, Exp. Cell Res 219:449-453   DOI   ScienceOn
91 Hanson-Smith, F. M. and B. M. Carlson. 1979, Cellular responses to free grafting of the exterior digitorum longus muscle of the rat, J. Neurol. Sci 41:149-173   DOI   ScienceOn
92 Authier, F. J., C. Mhiri, B. Chazaud, C. Christov, P. Cherin, G. Bartlovtz-Meimon and R. K. Gherardi. 1997, Interleukin-1 expression in inflammatory myopathies: evidences of marked immunoreactivity in sarcoid granulomas and muscle fibres showing ischaemic and regenerative changes, Neuropathol. Appl. Neurobiol 23:132-140   DOI   ScienceOn
93 Bischoff, R. 1986a, A satellite cell mitogen from crushed adult muscle, Dev. Biol 115:140-147   DOI   PUBMED   ScienceOn
94 Cooper, B. J. 1989, Animal models of Duchenne and Becker muscular dystrophy, Br. Med. Bull 45:703-718   PUBMED
95 Kami, K. and E. Senba. 1998, Localization of leukemia inhibitory factor and interleukin-6 messenger ribonucleic acids in regenerating rat skeletal muscle, Muscle Nerve 21:819-822   DOI   ScienceOn
96 Yablonka-Reuveni, Z., R. Seger and A. J. Rivera. 1999b, Fibroblast growth factor promotes recruitment of skeletal muscle satellite cells in young and old rats, J. Histochem.Cytochem 47:23-42   DOI   ScienceOn
97 Heslop, L., J. R. Beauchamp, S. Tajbaksh, M. E. Buckingham, T. A. Patridge and P. S. Zammit. 2001, Transplanted primary neonatal myoblasts can give rise to functional satellite cells as identified using the Myf5(nlacZl) mouse, Gene Ther 8:778-783   DOI   ScienceOn
98 Welle, S. 2002. Cellular and molecular basis of age-regulated sarcopenia, Can. J. Appl. Physiol 27:19-41   DOI   ScienceOn
99 Zentella, A. and J. Massague. 1992, Transforming growth factor beta induces myoblast differentiation in the presence ofmitogens, Proc. Natl. Acad. Sci. USA 89:5176-5180   DOI   ScienceOn
100 Cooper, R. N., D. Theisson, D. Furling, J. P. Di Santo, G. S. Butler-Browne and V. Mouly. 2003, Extended amplification in vitro and replicative senescence: key factors implicated in the success of human myoblast transplantation, Hum. Gene Ther 14:1169-1179   DOI   ScienceOn
101 Lawson-Smith, M. J. and J. K. McGeachie. 1998, The identification of myogenic cells in skeletal muscle, with emphasis on the use of tritiated thymidine autoradiography and desmin antibodies, J. Anat 192:161-171   DOI   ScienceOn
102 Schultz, E., D. L. Jaryszak and C. R. Valliere. 1985, Response of satellite cells to focal skeletal muscle injury, Muscle Nerve 8:217-222   DOI   ScienceOn
103 Cornelison, D. D. and B. J. Wold. 1997, Single-cell analysis of regulatory gene expression in quiescent and activated mouse skeletal muscle satellite cells, Dev. Biol 191:270-283   DOI   ScienceOn
104 Kauffman, U., B. Martin, D. Link, K. Witt, R. Zeitler, S. Reinhard and A. Starzinski-Powitz. 1999, M-cadherin and its sisters in development of striated muscle, Cell Tissue Res 296:191-198   DOI   ScienceOn
105 Muller-Ehmsen, J., L. H. H. Kedes, R. H. Schwinger and R. A. Kloner. 2002, Cellular cardiomyoplasty- a novel approach to treat heart disease, Congest. Heart Fail 220-227
106 Yablonka-Reuveni, Z., M. A. Rudnicki, A. J. Rivera, M. Primig, J. E. Anderson and P. Natanson. 1999a, The transition from proliferation to differentiation is delayed in satellite cells frommice lacking MyoD, Dev. Biol 210:440-455   DOI   ScienceOn
107 Brooks, S. V. and J. A. Faulkner. 1994, Isomeric, shortening and lengthening contractions of muscle fibre segments from adult and old mice, Am. J. Physiol 267:C507-C513
108 Chakravarthy, M. V., T. W. Abraha, R. J. Schwartz, M. L. Fiorotto and F. W. Booth. 2000b, Insulin-like growth factor-I extends in vitro replicative life span of skeletal muscle satellite cells by enhancing G1/S cell cycle progression via the activation of phosphatidylinositol 39-kinase/Akt signaling pathway, J. Biol .Chem 275:35942-35952   DOI   ScienceOn
109 Mansouri, A., M. Hallonet and P. Gruss. 1996, Pax genes and their role in cell differentiation and development, Curr. Opin. Cell Biol 8:851-857   DOI   ScienceOn
110 Rando, T. A. 2001, The dystrophin-glycoprotein complex, cellular signaling and the regulation of cell survival in the muscular dystrophies, Muscle Nerve 24:1575-1594   DOI   PUBMED   ScienceOn
111 Sperling, K. 2001, From proteomics to genomics, Electrophoresis 22(14):2835-2837   DOI   PUBMED   ScienceOn
112 Morlet, K., M. D. Grounds and J. K. McGeachie. 1989, Muscle precursor replication after repeated regeneration of skeletal muscle in mice, Anat. Embryol 180:471-478   DOI   ScienceOn
113 Beggs, A. H., M. Koenig, F. M. Boyce and L. M. Kunkel. 1990, Detection on 98% of DMD/BMD gene deletions by polymerase chain reaction, Hum. Genet 86:45-48   PUBMED
114 Caccia, M. R., J. B. Harris and M. A. Johnson. 1979, Morphology and physiology of skeletal muscle in ageing rodents, Muscle Nerve 2:202-212   DOI   ScienceOn
115 Jackson, K. A., S. M. Majka, G. G. Wulf and M. A. Goodell. 2002, Stem cells: a minireview. J. Cell Biochem. Suppl 38:1-6
116 Kunkel, L. M. and E. P. Hoffman. 1989, Duchenne/Becker muscular dystrophy: a short review of the gene, the protein and current diagnostics, Br. Med. Bull 45:630-643   PUBMED
117 Vescovi, A., A. Gritti, G. Cossu and R. Galli. 2002, Neural stem cells: plasticity and their trans-differentiation potential, Cell.Tis. Organ 171:64-76   DOI   ScienceOn
118 Beauchamp, J. R., L. Heslop, D. S. Yu., S. Tajbaksh, R. G. Kelly, A. Wernig, M. E. Buckingham, T. A. Patridge and P. S. Zammit, P. S. 2000, Expression of CD34 and Myf5 defines the majority of quiescent adult skeletal muscle satellite cells, J. Cell Biol 151:1221-1234   DOI   ScienceOn
119 Duxson, M. J., J. J. Ross and A. J. Harris. 1986, Transfer of differentiated synaptic terminals from primary myotubes to new-formed muscle cells during embryonic development inthe rat, Neurosci. Lett 71:147-152   DOI   ScienceOn
120 Pernitsky, A. N., L. M. McIntosh and J. E. Anderson. 1996, Hyper thyroidism impairs early repair in normal but not dystrophic mdx mouse tibials anterior muscle. An invivo study, Biochem.Cell Biol 74:315-324   DOI   ScienceOn
121 Tamaki, T., A. Aksatuka, Y. Okada, Y. Matsuzaki, H. Okano and M. Kimura. 2003, Growth and differential potential of main- and side population cells derived from murine skeletal muscle, Exp.Cell. Res 291:83-90   DOI   ScienceOn
122 Lee, J. Y., Z. Qu-Petersen, B. Cao, S. Kimura, R. Jankowski, J. Cummins, A. Usas, C. Gates, P. Robbins, A. Wernig and J. Huard. 2000, Clonal isolation of muscle-derived cells capable of enhancing muscle regeneration and bone healing, J. Cell Biol 150:1085-1100   DOI   ScienceOn
123 Allen, R. E., R. A. Merkel and R. B. Young. 1979, Cellular aspects of muscle growth: myogenic cell proliferation, J. Anim. Sci 49:115   DOI   PUBMED   ScienceOn
124 Asakura, A., M. Komaki and M. Rudnicki. 2001, Muscle satellite cells are multipotential stem cells that exhibit myogenic, osteogenic and adipogenic differentiation, Differentiation 68:245-253   DOI   ScienceOn
125 Gibson, M. C. and E. Schultz. 1983, Age-related differences in absolute numbers of skeletal muscle satellite cells, Muscle Nerve 6:574-580   DOI   ScienceOn
126 Cornelison, D. D., S. A. Wilcox-Adelman, P. F. Goetinck, H. Rauvala, A. C. Rapraeger and B. B. Olwin. 2004, Essential and separable roles for Syndecan-3 and Syndecan-4 in skeletal muscle development and regeneration, Genes Dev 18:2231-2236   DOI   ScienceOn
127 Kadi, F. and L. E. Thornell. 2000, Concomitant increases in myonuclear and satellite cell content in female trapezius muscle following strength training, Histochem. Cell Biol 113:99-103   DOI   ScienceOn
128 Tosh, D. and J. M. M. Slack. 2002, How cells change their phenotype, Nat. Rev. Mol. Cell Biol 3:187-194   DOI   ScienceOn
129 Scata, K. A., D. W. Bernard, J. Fox and J. L. Swain. 1999, FGF receptor availability regulates skeletal myogenesis, Exp. CellRes 250:10-21   DOI   ScienceOn
130 Seale, P., L. A. Sabourin, A. Girgis-Gabardo, A. Mansouri, P. Gruss and M. A. Rudnicki. 2000, Pax7 is required for thespecification of myogenic satellite cells, Cell 102:777-786   DOI   ScienceOn
131 Vierck, J., B. O'Reilly, K. Hossner, J. Antonio, K. Byrne, L. Bucci and M. Dodson. 2000, Satellite cell regulation following myotrauma caused by resistance exercise, Cell Biol. Int 24:263-272   DOI   ScienceOn
132 Jostes, B., C. Walther and P. Gruss. 1990, The murine paired box gene, Pax7, is expressed specifically during the development of the nervous and muscular system, Mech. Dev 33:27-37   DOI   ScienceOn
133 Spizz, G., D. Roman, A. Strauss and E. N. Olson. 1986, Serum and fibroblast growth factor inhibit myogenic differentiation through a mechanism dependent on protein synthesis and independent of cell proliferation, J. Biol. Chem 261:9483- 9488   PUBMED
134 Clegg, C. H., T. A. Linkhart, B. B. Olwin and S. D. Hauschka. 1987, Growth factor control of skeletal muscle differentiation: commitment to terminal differentiation occurs in G1 phase and is repressed by fibroblast growth factor, J. Cell Biol 105:949-956   DOI   ScienceOn
135 Jesse, T. L., R. LaChance, M. F. Iademarco and D. C. Dean. 1998, Interferon regulatory factor-2 is a transcriptional activator in muscle where it regulates expression of vascular cell adhesionmolecule-1, J. Cell Biol 140:1265-1276   DOI   ScienceOn
136 Allen, R. E. and L. K. Boxhorn. 1993, Regulation of skeletal muscle satellite cell proliferation and differentiation by transforming growth factor-beta, insulin-like growth factor -I, and fibroblast growth factor, J. Cell Physiol 138:311-315
137 O`Farrell, P. H. 1975, High resolution two-dimensional electrophoresis of proteins, J. Biol. Chem 250:4007-4021   PUBMED
138 Singh, N. K., H. S. Chae, I. H. Hwang, Y. M. Yoo, C. N. Ahn, S. H. Lee, H. J. Lee, H. J. Park and H. Y. Chung. 2007c, Transdifferentiation of porcine satellite cells into adipoblasts with ciglitizone, Am. J. Anim. Sci 85:1126-1135   DOI   ScienceOn
139 Schultz, E. and K. M. McCormick. 1994, Skeletal muscle satellite cells, Rev. Physiol. Biochem. Pharmacol 123:213-257   DOI
140 Yablonka-Reuveni, Z. and J. E. Anderson. 2006, Satellite cells from dystrophic (Mdx) mice display accelerated differentiation in primary cultures and in isolated myofibres, Dev. Dyn 235:203-212   DOI   ScienceOn
141 Mantegazza, R., S. M. Hughes, S. M. Mitchell, D. Travis, M. Blau and H. M. L Steinman. 1991, Modulation of MHC class II antigen expression in human myoblasts after treatment with IFN-gamma, Neurology 41:1128-1132   DOI   PUBMED
142 Maroto, M., R. Reshef, A. E. Munsterberg, S. Koester, M. Goulding and A. B. Lassar. 1997, Ectopic Pax-3 activates MyoD and Myf-5 expression in embryonic mesoderm and neural tissue, Cell 89:139-148   DOI   ScienceOn
143 Martin, J. F., L. Li and E. N. Olson. 1992, Repression of myogenin function by TGF-β1 is targeted at the basic helix-loop-helix motif and is independent of E2A products, J. Biol. Chem 267:10956-10960   PUBMED
144 Coolican, S. A., D. S. Samuel, D. Z. Ewton, F. J. McWade and J. R. Florini. 1997, The mitogenic and myogenic actions of insulinlike growth factors utilize distinct signaling pathways, J. Biol. Chem 272:6653-6662   DOI   ScienceOn
145 Goulding, M. D., G. Chalepakis, U. Deutsch, J. R. Erselius and P. Gruss. 1991, Pax-3, a novel murine DNA binding protein expressed during early neurogenesis, EMBO J 10:1135-1147   PUBMED
146 Mantegazza, R., M. Gebbia, M. Mora, R. Barresi, P. Bernasconi, F. Baggi and F. Cornelion. 1996, Major histocompatibility complex class II molecule expression on muscle cells is regulated by differentiation: implications for the immunopathogenesis of muscle autoimmune diseases, J. Neuroimmunol 68:53-60   DOI   ScienceOn