Autologous satellite cell seeding improves in vivo biocompatibility of homologous muscle acellular matrix implants

  • Authors:
    • Maurizio Marzaro
    • Maria Teresa Conconi
    • Laura Perin
    • Stefano Giuliani
    • Piergiorgio Gamba
    • Paolo De Coppi
    • Gian Pietro Perrino
    • Pier Paolo Parnigotto
    • Gastone G. Nussdorfer
  • View Affiliations

  • Published online on: August 1, 2002     https://doi.org/10.3892/ijmm.10.2.177
  • Pages: 177-182
Metrics: Total Views: 0 (Spandidos Publications: | PMC Statistics: )
Total PDF Downloads: 0 (Spandidos Publications: | PMC Statistics: )


Abstract

Acellular matrix obtained from homologous muscular tissue has been previously used to repair muscular defects. However, the implants, although not rejected, give rise to an intense inflammatory response and are rapidly replaced by fibrous tissue. In this study we examined the possibility that co-culture with autologous satellite cells can improve the efficiency of homologous acellular matrix as skeletal muscle substitute. Satellite cells, isolated from rat dorsal muscle, were cultured in vitro on homologous acellular matrix obtained by detergent-enzymatic treatment of abdominal muscle fragments. Scanning electron microscopy revealed that after 24 h of co-culture satellite cells were attached to the matrix, but still possessed a round shape. After 96 h, seeded cells began to flatten and to differentiate, originating few multinucleated myotubes. Patches of homologous matrix, seeded or not with autologous satellite cells, were implanted in the dorsal muscle of rats. At autopsy, the implants were recovered and processed for light microscopy. Two weeks after surgery, fibrous tissue started to replace the grafts composed only by acellular matrix, which at the 4th week were transformed into a fibrous scar. In contrast, at both times post-surgery the structure of implants containing autologous satellite cells was well preserved. The inflammatory reaction was modest and fibrosis was confined to the periphery of the grafts. It is concluded that the presence of autologous satellite cells is an important factor to preserve the structural integrity and to improve in vivo biocompatibility of homologous muscular acellular matrix implants.

Related Articles

Journal Cover

August 2002
Volume 10 Issue 2

Print ISSN: 1107-3756
Online ISSN:1791-244X

Sign up for eToc alerts

Recommend to Library

Copy and paste a formatted citation
x
Spandidos Publications style
Marzaro M, Conconi MT, Perin L, Giuliani S, Gamba P, De Coppi P, Perrino GP, Parnigotto PP and Nussdorfer GG: Autologous satellite cell seeding improves in vivo biocompatibility of homologous muscle acellular matrix implants. Int J Mol Med 10: 177-182, 2002
APA
Marzaro, M., Conconi, M.T., Perin, L., Giuliani, S., Gamba, P., De Coppi, P. ... Nussdorfer, G.G. (2002). Autologous satellite cell seeding improves in vivo biocompatibility of homologous muscle acellular matrix implants. International Journal of Molecular Medicine, 10, 177-182. https://doi.org/10.3892/ijmm.10.2.177
MLA
Marzaro, M., Conconi, M. T., Perin, L., Giuliani, S., Gamba, P., De Coppi, P., Perrino, G. P., Parnigotto, P. P., Nussdorfer, G. G."Autologous satellite cell seeding improves in vivo biocompatibility of homologous muscle acellular matrix implants". International Journal of Molecular Medicine 10.2 (2002): 177-182.
Chicago
Marzaro, M., Conconi, M. T., Perin, L., Giuliani, S., Gamba, P., De Coppi, P., Perrino, G. P., Parnigotto, P. P., Nussdorfer, G. G."Autologous satellite cell seeding improves in vivo biocompatibility of homologous muscle acellular matrix implants". International Journal of Molecular Medicine 10, no. 2 (2002): 177-182. https://doi.org/10.3892/ijmm.10.2.177