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  4. Autologous Cell Therapy Approach for Duchenne Muscular Dystrophy using PiggyBac Transposons and Mesoangioblasts
 
research article

Autologous Cell Therapy Approach for Duchenne Muscular Dystrophy using PiggyBac Transposons and Mesoangioblasts

Iyer, Pavithra S.
•
Mavoungou, Lionel O.
•
Ronzoni, Flavio
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April 4, 2018
Molecular Therapy

Duchenne muscular dystrophy (DMD) is a lethal muscle-wasting disease currently without cure. We investigated the use of the PiggyBac transposon for full-length dystrophin expression in murine mesoangioblast (MABs) progenitor cells. DMD murine MABs were transfected with transposable expression vectors for full-length dystrophin and transplanted intramuscularly or intra-arterially into mdx/SCID mice. Intraarterial delivery indicated that the MABs could migrate to regenerating muscles to mediate dystrophin expression. Intramuscular transplantation yielded dystrophin expression in 11%-44% of myofibers in murine muscles, which remained stable for the assessed period of 5 months. The satellite cells isolated from transplanted muscles comprised a fraction of MAB-derived cells, indicating that the transfected MABs may colonize the satellite stem cell niche. Transposon integration site mapping by whole-genome sequencing indicated that 70% of the integrations were intergenic, while none was observed in an exon. Muscle resistance assessment by atomic force microscopy indicated that 80% of fibers showed elasticity properties restored to those of wild-type muscles. As measured in vivo, transplanted muscles became more resistant to fatigue. This study thus provides a proof-of-principle that PiggyBac transposon vectors may mediate full-length dystrophin expression as well as functional amelioration of the dystrophic muscles within a potential autologous cell-based therapeutic approach of DMD.

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Type
research article
DOI
10.1016/j.ymthe.2018.01.021
Web of Science ID

WOS:000431483400017

Author(s)
Iyer, Pavithra S.
Mavoungou, Lionel O.
Ronzoni, Flavio
Zemla, Joanna
Schmid-Siegert, Emanuel
Antonini, Stefania
Neff, Laurence A.
Dorchies, Olivier M.
Jaconi, Marisa
Lekka, Malgorzata  
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Date Issued

2018-04-04

Publisher

CELL PRESS

Published in
Molecular Therapy
Volume

26

Issue

4

Start page

1093

End page

1108

Subjects

Biotechnology & Applied Microbiology

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Genetics & Heredity

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Medicine, Research & Experimental

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Biotechnology & Applied Microbiology

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Genetics & Heredity

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Research & Experimental Medicine

•

muscle stem-cells

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mouse model

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genetic correction

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mdx mouse

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expression

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mice

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morpholinos

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delivery

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LPMV  
Available on Infoscience
December 13, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/152656
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