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Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice

BACKGROUND: Presently, there is no effective treatment for the lethal muscle wasting disease Duchenne muscular dystrophy (DMD). Here we show that increased sphingosine-1-phoshate (S1P) through direct injection or via the administration of the small molecule 2-acetyl-4(5)-tetrahydroxybutyl imidazole...

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Autores principales: Ieronimakis, Nicholas, Pantoja, Mario, Hays, Aislinn L, Dosey, Timothy L, Qi, Junlin, Fischer, Karin A, Hoofnagle, Andrew N, Sadilek, Martin, Chamberlain, Jeffrey S, Ruohola-Baker, Hannele, Reyes, Morayma
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750760/
https://www.ncbi.nlm.nih.gov/pubmed/23915702
http://dx.doi.org/10.1186/2044-5040-3-20
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author Ieronimakis, Nicholas
Pantoja, Mario
Hays, Aislinn L
Dosey, Timothy L
Qi, Junlin
Fischer, Karin A
Hoofnagle, Andrew N
Sadilek, Martin
Chamberlain, Jeffrey S
Ruohola-Baker, Hannele
Reyes, Morayma
author_facet Ieronimakis, Nicholas
Pantoja, Mario
Hays, Aislinn L
Dosey, Timothy L
Qi, Junlin
Fischer, Karin A
Hoofnagle, Andrew N
Sadilek, Martin
Chamberlain, Jeffrey S
Ruohola-Baker, Hannele
Reyes, Morayma
author_sort Ieronimakis, Nicholas
collection PubMed
description BACKGROUND: Presently, there is no effective treatment for the lethal muscle wasting disease Duchenne muscular dystrophy (DMD). Here we show that increased sphingosine-1-phoshate (S1P) through direct injection or via the administration of the small molecule 2-acetyl-4(5)-tetrahydroxybutyl imidazole (THI), an S1P lyase inhibitor, has beneficial effects in acutely injured dystrophic muscles of mdx mice. METHODS: We treated mdx mice with and without acute injury and characterized the histopathological and functional effects of increasing S1P levels. We also tested exogenous and direct administration of S1P on mdx muscles to examine the molecular pathways under which S1P promotes regeneration in dystrophic muscles. RESULTS: Short-term treatment with THI significantly increased muscle fiber size and extensor digitorum longus (EDL) muscle specific force in acutely injured mdx limb muscles. In addition, the accumulation of fibrosis and fat deposition, hallmarks of DMD pathology and impaired muscle regeneration, were lower in the injured muscles of THI-treated mdx mice. Furthermore, increased muscle force was observed in uninjured EDL muscles with a longer-term treatment of THI. Such regenerative effects were linked to the response of myogenic cells, since intramuscular injection of S1P increased the number of Myf5(nlacz/+) positive myogenic cells and newly regenerated myofibers in injured mdx muscles. Intramuscular injection of biotinylated-S1P localized to muscle fibers, including newly regenerated fibers, which also stained positive for S1P receptor 1 (S1PR1). Importantly, plasma membrane and perinuclear localization of phosphorylated S1PR1 was observed in regenerating muscle fibers of mdx muscles. Intramuscular increases of S1P levels, S1PR1 and phosphorylated ribosomal protein S6 (P-rpS6), and elevated EDL muscle specific force, suggest S1P promoted the upregulation of anabolic pathways that mediate skeletal muscle mass and function. CONCLUSIONS: These data show that S1P is beneficial for muscle regeneration and functional gain in dystrophic mice, and that THI, or other pharmacological agents that raise S1P levels systemically, may be developed into an effective treatment for improving muscle function and reducing the pathology of DMD.
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spelling pubmed-37507602013-08-24 Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice Ieronimakis, Nicholas Pantoja, Mario Hays, Aislinn L Dosey, Timothy L Qi, Junlin Fischer, Karin A Hoofnagle, Andrew N Sadilek, Martin Chamberlain, Jeffrey S Ruohola-Baker, Hannele Reyes, Morayma Skelet Muscle Research BACKGROUND: Presently, there is no effective treatment for the lethal muscle wasting disease Duchenne muscular dystrophy (DMD). Here we show that increased sphingosine-1-phoshate (S1P) through direct injection or via the administration of the small molecule 2-acetyl-4(5)-tetrahydroxybutyl imidazole (THI), an S1P lyase inhibitor, has beneficial effects in acutely injured dystrophic muscles of mdx mice. METHODS: We treated mdx mice with and without acute injury and characterized the histopathological and functional effects of increasing S1P levels. We also tested exogenous and direct administration of S1P on mdx muscles to examine the molecular pathways under which S1P promotes regeneration in dystrophic muscles. RESULTS: Short-term treatment with THI significantly increased muscle fiber size and extensor digitorum longus (EDL) muscle specific force in acutely injured mdx limb muscles. In addition, the accumulation of fibrosis and fat deposition, hallmarks of DMD pathology and impaired muscle regeneration, were lower in the injured muscles of THI-treated mdx mice. Furthermore, increased muscle force was observed in uninjured EDL muscles with a longer-term treatment of THI. Such regenerative effects were linked to the response of myogenic cells, since intramuscular injection of S1P increased the number of Myf5(nlacz/+) positive myogenic cells and newly regenerated myofibers in injured mdx muscles. Intramuscular injection of biotinylated-S1P localized to muscle fibers, including newly regenerated fibers, which also stained positive for S1P receptor 1 (S1PR1). Importantly, plasma membrane and perinuclear localization of phosphorylated S1PR1 was observed in regenerating muscle fibers of mdx muscles. Intramuscular increases of S1P levels, S1PR1 and phosphorylated ribosomal protein S6 (P-rpS6), and elevated EDL muscle specific force, suggest S1P promoted the upregulation of anabolic pathways that mediate skeletal muscle mass and function. CONCLUSIONS: These data show that S1P is beneficial for muscle regeneration and functional gain in dystrophic mice, and that THI, or other pharmacological agents that raise S1P levels systemically, may be developed into an effective treatment for improving muscle function and reducing the pathology of DMD. BioMed Central 2013-08-01 /pmc/articles/PMC3750760/ /pubmed/23915702 http://dx.doi.org/10.1186/2044-5040-3-20 Text en Copyright © 2013 Ieronimakis et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Ieronimakis, Nicholas
Pantoja, Mario
Hays, Aislinn L
Dosey, Timothy L
Qi, Junlin
Fischer, Karin A
Hoofnagle, Andrew N
Sadilek, Martin
Chamberlain, Jeffrey S
Ruohola-Baker, Hannele
Reyes, Morayma
Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title_full Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title_fullStr Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title_full_unstemmed Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title_short Increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
title_sort increased sphingosine-1-phosphate improves muscle regeneration in acutely injured mdx mice
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3750760/
https://www.ncbi.nlm.nih.gov/pubmed/23915702
http://dx.doi.org/10.1186/2044-5040-3-20
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