Differentiation of the human PAX7-positive myogenic precursors/satellite cell lineage in vitro
Author(s) -
Ziad Al Tanoury,
Jyoti Rao,
Olivier Tassy,
Bénédicte Gobert,
Svetlana Gapon,
JeanMarie Garnier,
Erica Wagner,
Aurore Hick,
Arielle Hall,
Emanuela Gussoni,
Olivier Pourquié
Publication year - 2020
Publication title -
development
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.754
H-Index - 325
eISSN - 1477-9129
pISSN - 0950-1991
DOI - 10.1242/dev.187344
Subject(s) - biology , myogenesis , induced pluripotent stem cell , microbiology and biotechnology , myocyte , muscular dystrophy , embryonic stem cell , cellular differentiation , stem cell , directed differentiation , in vitro , satellite , anatomy , genetics , gene , aerospace engineering , engineering
Satellite cells (SC) are muscle stem cells that can regenerate adult muscles upon injury. Most SC originate from PAX7 + myogenic precursors set aside during development. Although myogenesis has been studied in mouse and chicken embryos, little is known about human muscle development. Here, we report the generation of human induced pluripotent stem cell (iPSC) reporter lines in which fluorescent proteins have been introduced into the PAX7 and MYOG loci. We use single cell RNA sequencing to analyze the developmental trajectory of the iPSC-derived PAX7 + myogenic precursors. We show that the PAX7 + cells generated in culture can produce myofibers and self-renew in vitro and in vivo Together, we demonstrate that cells exhibiting characteristics of human fetal satellite cells can be produced in vitro from iPSC, opening interesting avenues for muscular dystrophy cell therapy. This work provides significant insights into the development of the human myogenic lineage.
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