4.5 Article

Overexpression of Follistatin in Human Myoblasts Increases Their Proliferation and Differentiation, and Improves the Graft Success in SCID Mice

期刊

CELL TRANSPLANTATION
卷 18, 期 7, 页码 709-718

出版社

SAGE PUBLICATIONS INC
DOI: 10.3727/096368909X470865

关键词

Duchenne muscular dystrophy; Myoblast transplantation; Myostatin; Follistatin

资金

  1. Association Francaise contre les Myopathies
  2. Canadian Institute for Health Research
  3. Muscular Dystrophy Canada

向作者/读者索取更多资源

Duchenne muscular dystrophy is caused by the absence of functional dystrophin, leading to the myofiber membrane instability and progressive muscle atrophy Myoblast transplantation in dystrophic: Muscles is 11 potential therapy. as it permits the long-term restoration of dystrophin expression in transplanted muscles However. the success of this approach is limited by the short period of muscle repair following myoblast transplantation Myostatin, a powerful inhibitor of muscle growth, is involved in terminating the period of Muscle repair following injury by reducing myoblast proliferation and differentiation Follistatin forms a complex with myostatin, preventing its interaction with its receptor and thus blocking the myostatin signal. Here, we used a lentivirus to overexpress the Follistatin protein in normal myoblasts to block the myostatin signaling. We measured the potential of transduced myoblasts to proliferate and to form multinucleated myotubes in vitro And finally, we considered the engraftment success of those transduced myoblasts in comparison with control cells in vivo within SCID mice TA Muscle. Our results first confirmed the overexpression of follistatin into lentivirus transduced myoblasts, and second showed that the overexpression of the follistatin in normal huan myoblasts improved in vitro their proliferation rate by about I 5-fold after 96 h and also their differentiation rate by about 1.6- and 1.8-fold, respectively. in the absence and in the presence of recombinant myostatin Finally, our data demonstrated that (lie engraftment of human normal myoblasts overexpressing the follistatin protein into SCID mouse muscles was enhanced by twofold

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