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A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise

The autonomic nervous system is a master regulator of homeostatic processes and stress responses. Sympathetic noradrenergic nerve fibers decrease bone mass, but the role of cholinergic signaling in bone has remained largely unknown. Here, we describe that early postnatally, a subset of sympathetic n...

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Autores principales: Gadomski, Stephen, Fielding, Claire, García-García, Andrés, Korn, Claudia, Kapeni, Chrysa, Ashraf, Sadaf, Villadiego, Javier, Toro, Raquel del, Domingues, Olivia, Skepper, Jeremy N., Michel, Tatiana, Zimmer, Jacques, Sendtner, Regine, Dillon, Scott, Poole, Kenneth E.S., Holdsworth, Gill, Sendtner, Michael, Toledo-Aral, Juan J., De Bari, Cosimo, McCaskie, Andrew W., Robey, Pamela G., Méndez-Ferrer, Simón
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033279/
https://www.ncbi.nlm.nih.gov/pubmed/35276096
http://dx.doi.org/10.1016/j.stem.2022.02.008
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author Gadomski, Stephen
Fielding, Claire
García-García, Andrés
Korn, Claudia
Kapeni, Chrysa
Ashraf, Sadaf
Villadiego, Javier
Toro, Raquel del
Domingues, Olivia
Skepper, Jeremy N.
Michel, Tatiana
Zimmer, Jacques
Sendtner, Regine
Dillon, Scott
Poole, Kenneth E.S.
Holdsworth, Gill
Sendtner, Michael
Toledo-Aral, Juan J.
De Bari, Cosimo
McCaskie, Andrew W.
Robey, Pamela G.
Méndez-Ferrer, Simón
author_facet Gadomski, Stephen
Fielding, Claire
García-García, Andrés
Korn, Claudia
Kapeni, Chrysa
Ashraf, Sadaf
Villadiego, Javier
Toro, Raquel del
Domingues, Olivia
Skepper, Jeremy N.
Michel, Tatiana
Zimmer, Jacques
Sendtner, Regine
Dillon, Scott
Poole, Kenneth E.S.
Holdsworth, Gill
Sendtner, Michael
Toledo-Aral, Juan J.
De Bari, Cosimo
McCaskie, Andrew W.
Robey, Pamela G.
Méndez-Ferrer, Simón
author_sort Gadomski, Stephen
collection PubMed
description The autonomic nervous system is a master regulator of homeostatic processes and stress responses. Sympathetic noradrenergic nerve fibers decrease bone mass, but the role of cholinergic signaling in bone has remained largely unknown. Here, we describe that early postnatally, a subset of sympathetic nerve fibers undergoes an interleukin-6 (IL-6)-induced cholinergic switch upon contacting the bone. A neurotrophic dependency mediated through GDNF-family receptor-α2 (GFRα2) and its ligand, neurturin (NRTN), is established between sympathetic cholinergic fibers and bone-embedded osteocytes, which require cholinergic innervation for their survival and connectivity. Bone-lining osteoprogenitors amplify and propagate cholinergic signals in the bone marrow (BM). Moderate exercise augments trabecular bone partly through an IL-6-dependent expansion of sympathetic cholinergic nerve fibers. Consequently, loss of cholinergic skeletal innervation reduces osteocyte survival and function, causing osteopenia and impaired skeletal adaptation to moderate exercise. These results uncover a cholinergic neuro-osteocyte interface that regulates skeletogenesis and skeletal turnover through bone-anabolic effects.
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spelling pubmed-90332792022-05-24 A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise Gadomski, Stephen Fielding, Claire García-García, Andrés Korn, Claudia Kapeni, Chrysa Ashraf, Sadaf Villadiego, Javier Toro, Raquel del Domingues, Olivia Skepper, Jeremy N. Michel, Tatiana Zimmer, Jacques Sendtner, Regine Dillon, Scott Poole, Kenneth E.S. Holdsworth, Gill Sendtner, Michael Toledo-Aral, Juan J. De Bari, Cosimo McCaskie, Andrew W. Robey, Pamela G. Méndez-Ferrer, Simón Cell Stem Cell Article The autonomic nervous system is a master regulator of homeostatic processes and stress responses. Sympathetic noradrenergic nerve fibers decrease bone mass, but the role of cholinergic signaling in bone has remained largely unknown. Here, we describe that early postnatally, a subset of sympathetic nerve fibers undergoes an interleukin-6 (IL-6)-induced cholinergic switch upon contacting the bone. A neurotrophic dependency mediated through GDNF-family receptor-α2 (GFRα2) and its ligand, neurturin (NRTN), is established between sympathetic cholinergic fibers and bone-embedded osteocytes, which require cholinergic innervation for their survival and connectivity. Bone-lining osteoprogenitors amplify and propagate cholinergic signals in the bone marrow (BM). Moderate exercise augments trabecular bone partly through an IL-6-dependent expansion of sympathetic cholinergic nerve fibers. Consequently, loss of cholinergic skeletal innervation reduces osteocyte survival and function, causing osteopenia and impaired skeletal adaptation to moderate exercise. These results uncover a cholinergic neuro-osteocyte interface that regulates skeletogenesis and skeletal turnover through bone-anabolic effects. Cell Press 2022-04-07 /pmc/articles/PMC9033279/ /pubmed/35276096 http://dx.doi.org/10.1016/j.stem.2022.02.008 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gadomski, Stephen
Fielding, Claire
García-García, Andrés
Korn, Claudia
Kapeni, Chrysa
Ashraf, Sadaf
Villadiego, Javier
Toro, Raquel del
Domingues, Olivia
Skepper, Jeremy N.
Michel, Tatiana
Zimmer, Jacques
Sendtner, Regine
Dillon, Scott
Poole, Kenneth E.S.
Holdsworth, Gill
Sendtner, Michael
Toledo-Aral, Juan J.
De Bari, Cosimo
McCaskie, Andrew W.
Robey, Pamela G.
Méndez-Ferrer, Simón
A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title_full A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title_fullStr A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title_full_unstemmed A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title_short A cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
title_sort cholinergic neuroskeletal interface promotes bone formation during postnatal growth and exercise
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9033279/
https://www.ncbi.nlm.nih.gov/pubmed/35276096
http://dx.doi.org/10.1016/j.stem.2022.02.008
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