4.6 Article

Direct Reprogramming of Mouse Fibroblasts into Functional Skeletal Muscle Progenitors

Journal

STEM CELL REPORTS
Volume 10, Issue 5, Pages 1505-1521

Publisher

CELL PRESS
DOI: 10.1016/j.stemcr.2018.04.009

Keywords

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Funding

  1. Gruss-Lipper Foundation
  2. MGH ECOR postdoctoral
  3. EMBO long-term fellowship [ALTF 11432015]
  4. NIH [R01 HD058013, P01 GM099134, R01 AR044031, R01 AG048917, ES024935]
  5. Canadian Institutes for Health Research [FDN-148387]
  6. Muscular Dystrophy Association
  7. Stem Cell Network
  8. Glenn Foundation for Medical Research

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Skeletal muscle harbors quiescent stem cells termed satellite cells and proliferative progenitors termed myoblasts, which play pivotal roles during muscle regeneration. However, current technology does not allow permanent capture of these cell populations in vitro. Here, we show that ectopic expression of the myogenic transcription factor MyoD, combined with exposure to small molecules, reprograms mouse fibroblasts into expandable induced myogenic progenitor cells (iMPCs). iMPCs express key skeletal muscle stem and progenitor cell markers including Pax7 and Myf5 and give rise to dystrophin-expressing myofibers upon transplantation in vivo. Notably, a subset of transplanted iMPCs maintain Pax7 expression and sustain serial regenerative responses. Similar to satellite cells, iMPCs originate from Pax7(+) cells and require Pax7 itself for maintenance. Finally, we show that myogenic progenitor cell lines can be established from muscle tissue following small-molecule exposure alone. This study thus reports on a robust approach to derive expandable myogenic stem/pro-genitor-like cells from multiple cell types.

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