Open Access
Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles
Hsu-Wen Tseng
1
,
Dorothée Girard
2
,
Kylie A. Alexander
1
,
Susan Millard
1
,
Frédéric Torossian
3
,
Adrienne Anginot
3
,
Whitney Fleming
1
,
Jules Gueguen
2
,
Marie-Emmanuelle Goriot
2
,
Denis Clay
4
,
Beulah Jose
1
,
Bianca Nowlan
1
,
Allison R. Pettit
1
,
Marjorie Salga
5, 6
,
François Genêt
5, 6
,
Marie Caroline Le Bousse Kerdilès
3
,
Sébastien Banzet
2
,
Ingrid G Winkler
1
3
4
5
UPOH (Unité Péri Opératoire du Handicap, Perioperative Disability Unit), Physical and Rehabilitation Medicine department, Raymond-Poincaré Hospital, Assistance Publique – Hôpitaux de Paris (AP-HP), Garches, France
|
Publication type: Journal Article
Publication date: 2022-02-25
scimago Q1
wos Q1
SJR: 4.048
CiteScore: 23.3
Impact factor: 15.0
ISSN: 20954700, 20956231
PubMed ID:
35217633
Histology
Physiology
Endocrinology, Diabetes and Metabolism
Abstract
The cells of origin of neurogenic heterotopic ossifications (NHOs), which develop frequently in the periarticular muscles following spinal cord injuries (SCIs) and traumatic brain injuries, remain unclear because skeletal muscle harbors two progenitor cell populations: satellite cells (SCs), which are myogenic, and fibroadipogenic progenitors (FAPs), which are mesenchymal. Lineage-tracing experiments using the Cre recombinase/LoxP system were performed in two mouse strains with the fluorescent protein ZsGreen specifically expressed in either SCs or FAPs in skeletal muscles under the control of the Pax7 or Prrx1 gene promoter, respectively. These experiments demonstrate that following muscle injury, SCI causes the upregulation of PDGFRα expression on FAPs but not SCs and the failure of SCs to regenerate myofibers in the injured muscle, with reduced apoptosis and continued proliferation of muscle resident FAPs enabling their osteogenic differentiation into NHOs. No cells expressing ZsGreen under the Prrx1 promoter were detected in the blood after injury, suggesting that the cells of origin of NHOs are locally derived from the injured muscle. We validated these findings using human NHO biopsies. PDGFRα+ mesenchymal cells isolated from the muscle surrounding NHO biopsies could develop ectopic human bones when transplanted into immunocompromised mice, whereas CD56+ myogenic cells had a much lower potential. Therefore, NHO is a pathology of the injured muscle in which SCI reprograms FAPs to undergo uncontrolled proliferation and differentiation into osteoblasts.
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Total citations:
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Citations from 2024:
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(73.33%)
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Tseng H. et al. Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles // Bone Research. 2022. Vol. 10. No. 1. 22
GOST all authors (up to 50)
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Tseng H., Girard D., Alexander K., Millard S., Torossian F., Anginot A., Fleming W., Gueguen J., Goriot M., Clay D., Jose B., Nowlan B., Pettit A. R., Salga M., Genêt F., Bousse Kerdilès M. C. L., Banzet S., Winkler I. G. Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles // Bone Research. 2022. Vol. 10. No. 1. 22
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TY - JOUR
DO - 10.1038/s41413-022-00188-y
UR - https://doi.org/10.1038/s41413-022-00188-y
TI - Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles
T2 - Bone Research
AU - Tseng, Hsu-Wen
AU - Girard, Dorothée
AU - Alexander, Kylie A.
AU - Millard, Susan
AU - Torossian, Frédéric
AU - Anginot, Adrienne
AU - Fleming, Whitney
AU - Gueguen, Jules
AU - Goriot, Marie-Emmanuelle
AU - Clay, Denis
AU - Jose, Beulah
AU - Nowlan, Bianca
AU - Pettit, Allison R.
AU - Salga, Marjorie
AU - Genêt, François
AU - Bousse Kerdilès, Marie Caroline Le
AU - Banzet, Sébastien
AU - Winkler, Ingrid G
PY - 2022
DA - 2022/02/25
PB - Springer Nature
IS - 1
VL - 10
PMID - 35217633
SN - 2095-4700
SN - 2095-6231
ER -
Cite this
BibTex (up to 50 authors)
Copy
@article{2022_Tseng,
author = {Hsu-Wen Tseng and Dorothée Girard and Kylie A. Alexander and Susan Millard and Frédéric Torossian and Adrienne Anginot and Whitney Fleming and Jules Gueguen and Marie-Emmanuelle Goriot and Denis Clay and Beulah Jose and Bianca Nowlan and Allison R. Pettit and Marjorie Salga and François Genêt and Marie Caroline Le Bousse Kerdilès and Sébastien Banzet and Ingrid G Winkler},
title = {Spinal cord injury reprograms muscle fibroadipogenic progenitors to form heterotopic bones within muscles},
journal = {Bone Research},
year = {2022},
volume = {10},
publisher = {Springer Nature},
month = {feb},
url = {https://doi.org/10.1038/s41413-022-00188-y},
number = {1},
pages = {22},
doi = {10.1038/s41413-022-00188-y}
}