Literature DB >> 9858472

The four populations of myoblasts involved in human limb muscle formation are present from the onset of primary myotube formation.

F Edom-Vovard1, V Mouly, J P Barbet, G S Butler-Browne.   

Abstract

To understand how and when myogenic precursor cells become committed to their particular developmental programs, we have analysed the different populations of myoblasts which grow out from explants of muscle tissue isolated from human limb buds from the beginning of primary fibre formation throughout subsequent development and post-natal growth. Four phenotypically distinct types of myoblasts were identified on the basis of their expression of desmin, myogenin and myosin heavy chain isoforms (MyHC), and after 5 and 20 divisions, cells were cloned. All four types of myoblasts were present at the beginning of primary myogenesis. Each respective phenotype was stably heritable through cloning and subsequent proliferation. The type 1 clones correspond to a novel class of myoblasts never described during human development, that biochemically differentiates, but does not fuse. Type 2 clones are composed of small myotubes expressing only embryonic MyHC. Type 3 clones are composed of thin and long myotubes expressing both embryonic and fetal MyHCs. The type 4 clones are composed of myotubes that have a phenotype very similar to human satellite cells. Contrasting with others species, no other population of myoblasts appear during fetal development and only the relative number of these four types changes.

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Year:  1999        PMID: 9858472     DOI: 10.1242/jcs.112.2.191

Source DB:  PubMed          Journal:  J Cell Sci        ISSN: 0021-9533            Impact factor:   5.285


  15 in total

1.  Six and Eya expression during human somitogenesis and MyoD gene family activation.

Authors:  Françoise Fougerousse; Muriel Durand; Soledad Lopez; Laurence Suel; Josiane Demignon; Charles Thornton; Hidenori Ozaki; Kyoshi Kawakami; Patrick Barbet; Jacques S Beckmann; Pascal Maire
Journal:  J Muscle Res Cell Motil       Date:  2002       Impact factor: 2.698

2.  Primary rat muscle progenitor cells have decreased proliferation and myotube formation during passages.

Authors:  S Machida; E E Spangenburg; F W Booth
Journal:  Cell Prolif       Date:  2004-08       Impact factor: 6.831

3.  The muscle-specific enolase is an early marker of human myogenesis.

Authors:  F Fougerousse; F Edom-Vovard; T Merkulova; M O Ott; M Durand; G Butler-Browne; A Keller
Journal:  J Muscle Res Cell Motil       Date:  2001       Impact factor: 2.698

4.  Autologous myoblast transplantation for oculopharyngeal muscular dystrophy: a phase I/IIa clinical study.

Authors:  Sophie Périé; Capucine Trollet; Vincent Mouly; Valérie Vanneaux; Kamel Mamchaoui; Belaïd Bouazza; Jean Pierre Marolleau; Pascal Laforêt; Françoise Chapon; Bruno Eymard; Gillian Butler-Browne; Jérome Larghero; Jean Lacau St Guily
Journal:  Mol Ther       Date:  2013-07-08       Impact factor: 11.454

Review 5.  Recapitulating human myogenesis ex vivo using human pluripotent stem cells.

Authors:  Peggie Chien; Haibin Xi; April D Pyle
Journal:  Exp Cell Res       Date:  2021-12-30       Impact factor: 3.905

Review 6.  Myoblast-based cell transplantation.

Authors:  Philippe Menasché
Journal:  Heart Fail Rev       Date:  2003-07       Impact factor: 4.214

7.  An alternate protocol for establishment of primary caprine fetal myoblast cell culture: an in vitro model for muscle growth study.

Authors:  Satyendra Pal Singh; Rohit Kumar; Priya Kumari; Abhijit Mitra
Journal:  In Vitro Cell Dev Biol Anim       Date:  2013-06-06       Impact factor: 2.416

8.  Protein-engineered biomaterials to generate human skeletal muscle mimics.

Authors:  Debanti Sengupta; Penney M Gilbert; Kyle J Johnson; Helen M Blau; Sarah C Heilshorn
Journal:  Adv Healthc Mater       Date:  2012-09-05       Impact factor: 9.933

9.  Expression of miR-1, miR-133a, miR-133b and miR-206 increases during development of human skeletal muscle.

Authors:  Andrie Koutsoulidou; Nikolaos P Mastroyiannopoulos; Denis Furling; James B Uney; Leonidas A Phylactou
Journal:  BMC Dev Biol       Date:  2011-06-07       Impact factor: 1.978

10.  Differences in the expression and distribution of flotillin-2 in chick, mice and human muscle cells.

Authors:  Ana Claudia Batista Possidonio; Carolina Pontes Soares; Débora Morueco Portilho; Victor Midlej; Marlene Benchimol; Gillian Butler-Browne; Manoel Luis Costa; Claudia Mermelstein
Journal:  PLoS One       Date:  2014-08-08       Impact factor: 3.240

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