Literature DB >> 22791687

Matrigel, but not collagen I, maintains the differentiation capacity of muscle derived cells in vitro.

S Grefte1, S Vullinghs, A M Kuijpers-Jagtman, R Torensma, J W Von den Hoff.   

Abstract

Satellite cells are key cells for post-natal muscle growth and regeneration and they play a central role in the search for therapies to treat muscle injuries. In this study the proliferation and differentiation capacity of muscle progenitor cells was studied in 2D and 3D cultures with collagen type I and Matrigel, which contain the niche factors laminin and collagen type IV. Muscle progenitor cells were cultured to induce proliferation and differentiation in collagen- or Matrigel-coated surfaces (2D) or in gels (3D). In the 2D cultures, muscle progenitor cells proliferated faster in Matrigel than in collagen. The numbers of Pax7(+) and MyoD(+) cells were also significantly higher in Matrigel than in collagen. During differentiation, muscle progenitor cells formed more and larger MyoD(+) and myogenin(+) myotubes in Matrigel. In the 3D cultures, muscle progenitor cells in Matrigel expressed higher mRNA levels of MyoD and myogenin, and formed elongated myotubes expressing myogenin and myosin. In collagen gels, the myotubes were short and rounded. In conclusion, muscle progenitor cells, both in 2D and 3D, lose their differentiation capacity in collagen but not in Matrigel. Although Matrigel contains growth factors, our results indicate that the kind of biomaterial steers the maintenance of the myogenic potential and their proper differentiation to achieve optimal skeletal muscle restoration.

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Year:  2012        PMID: 22791687     DOI: 10.1088/1748-6041/7/5/055004

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  35 in total

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Review 5.  Extracellular matrix regulation in the muscle satellite cell niche.

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Review 7.  MMP-14 in skeletal muscle repair.

Authors:  C Snyman; C U Niesler
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Review 8.  Enter the matrix: shape, signal and superhighway.

Authors:  Dane K Lund; D D W Cornelison
Journal:  FEBS J       Date:  2013-03-01       Impact factor: 5.542

Review 9.  Engineered matrices for skeletal muscle satellite cell engraftment and function.

Authors:  Woojin M Han; Young C Jang; Andrés J García
Journal:  Matrix Biol       Date:  2016-06-04       Impact factor: 11.583

Review 10.  Synergizing Engineering and Biology to Treat and Model Skeletal Muscle Injury and Disease.

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