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Fetal muscle-derived cells can repair dystrophic muscles in mdx mice

Authors :
Gwenola Auda-Boucher
Marie-France Gardahaut
Laetitia Guevel
Sophie Talon
Corinne Huchet-Cadiou
Marie Feron
Josiane Fontaine-Pérus
Aude Lafoux
Dmitri Levitsky
Thierry Rouaud
Source :
Experimental Cell Research. 313:997-1007
Publication Year :
2007
Publisher :
Elsevier BV, 2007.

Abstract

We have previously reported that CD34(+) cells purified from mouse fetal muscles can differentiate into skeletal muscle in vitro and in vivo when injected into muscle tissue of dystrophic mdx mice. In this study, we investigate the ability of such donor cells to restore dystrophin expression, and to improve the functional muscle capacity of the extensor digitorum longus muscle (EDL) of mdx mice. For this purpose green fluorescent-positive fetal GFP(+)/CD34(+) cells or desmin(+)/(-)LacZ/CD34(+) cells were transplanted into irradiated or non-irradiated mdx EDL muscle. Donor fetal muscle-derived cells predominantly fused with existing fibers. Indeed more than 50% of the myofibers of the host EDL contained donor nuclei delivering dystrophin along 80-90% of the length of their sarcolemma. The presence of significant amounts of dystrophin (about 60-70% of that found in a control wild-type mouse muscle) was confirmed by Western blot analyses. Dystrophin expression also outcompeted that of utrophin, as revealed by a spatial shift in the distribution of utrophin. At 1 month post-transplant, the recipient muscle appeared to have greater resistance to fatigue than control mdx EDL muscle during repeated maximal contractions.

Details

ISSN :
00144827
Volume :
313
Database :
OpenAIRE
Journal :
Experimental Cell Research
Accession number :
edsair.doi.dedup.....ca443f2f298f4644a8b85636a03954e2
Full Text :
https://doi.org/10.1016/j.yexcr.2006.12.021