Mature Adult Dystrophic Mouse Muscle Environment Does Not Impede Efficient Engrafted Satellite Cell Regeneration and Self-Renewal

Author:

Boldrin Luisa1,Zammit Peter Steven2,Muntoni Francesco1,Morgan Jennifer Elizabeth1

Affiliation:

1. Dubowitz Neuromuscular Centre, UCL Institute of Child Health, London, United Kingdom

2. Randall Division of Cell and Molecular Biophysics, King's College London, London, United Kingdom

Abstract

Abstract Changes that occur in the skeletal muscle environment with the progress of muscular dystrophies may affect stem cell function and result in impaired muscle regeneration. It has previously been suggested that the success of stem cell transplantation could therefore be dependent both on the properties of the cell itself and on the host muscle environment. Here we engrafted young and mature adult mdx-nude mice, which are the genetic homolog of Duchenne muscular dystrophy, with a small number of satellite cells freshly isolated from young, normal donor mice. We found that the donor satellite cells contributed to muscle regeneration and self-renewal as efficiently within mature adult, as in young, dystrophic host muscle. Donor-derived satellite cells also contributed to robust regeneration after further injury, showing that they were functional despite the more advanced dystrophic muscle environment. These findings provide evidence that muscle tissue in a later stage of dystrophy may be effectively treated by stem cells.

Funder

Muscular Dystrophy Campaign

Association Francaise contre les Myopathies

MRC collaborative career development fellowship in stem cell research and currently holds a Wellcome Trust University award

Medical Research Council and acknowledges the support of the MYORES Network of Excellence

MRC Centre for Neuromuscular Diseases that supports the biobank of DMD cells

Publisher

Oxford University Press (OUP)

Subject

Cell Biology,Developmental Biology,Molecular Medicine

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