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Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain

Oligodendrocyte production and myelination continues lifelong in the central nervous system (CNS), and all stages of this process can be adaptively regulated by neuronal activity. While artificial exogenous stimulation of neuronal circuits greatly enhances oligodendrocyte progenitor cell (OPC) produ...

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Autores principales: Nicholson, Madeline, Wood, Rhiannon J., Gonsalvez, David G., Hannan, Anthony J., Fletcher, Jessica L., Xiao, Junhua, Murray, Simon S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092722/
https://www.ncbi.nlm.nih.gov/pubmed/36217300
http://dx.doi.org/10.1111/ejn.15840
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author Nicholson, Madeline
Wood, Rhiannon J.
Gonsalvez, David G.
Hannan, Anthony J.
Fletcher, Jessica L.
Xiao, Junhua
Murray, Simon S.
author_facet Nicholson, Madeline
Wood, Rhiannon J.
Gonsalvez, David G.
Hannan, Anthony J.
Fletcher, Jessica L.
Xiao, Junhua
Murray, Simon S.
author_sort Nicholson, Madeline
collection PubMed
description Oligodendrocyte production and myelination continues lifelong in the central nervous system (CNS), and all stages of this process can be adaptively regulated by neuronal activity. While artificial exogenous stimulation of neuronal circuits greatly enhances oligodendrocyte progenitor cell (OPC) production and increases myelination during development, the extent to which physiological stimuli replicates this is unclear, particularly in the adult CNS when the rate of new myelin addition slows. Here, we used environmental enrichment (EE) to physiologically stimulate neuronal activity for 6 weeks in 9‐week‐old C57BL/six male and female mice and found no increase in compact myelin in the corpus callosum or somatosensory cortex. Instead, we observed a global increase in callosal axon diameter with thicker myelin sheaths, elongated paranodes and shortened nodes of Ranvier. These findings indicate that EE induced the dynamic structural remodelling of myelinated axons. Additionally, we observed a global increase in the differentiation of OPCs and pre‐myelinating oligodendroglia in the corpus callosum and somatosensory cortex. Our findings of structural remodelling of myelinated axons in response to physiological neural stimuli during young adulthood provide important insights in understanding experience‐dependent myelin plasticity throughout the lifespan and provide a platform to investigate axon–myelin interactions in a physiologically relevant context.
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spelling pubmed-100927222023-04-13 Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain Nicholson, Madeline Wood, Rhiannon J. Gonsalvez, David G. Hannan, Anthony J. Fletcher, Jessica L. Xiao, Junhua Murray, Simon S. Eur J Neurosci Molecular and Synaptic Mechanisms Oligodendrocyte production and myelination continues lifelong in the central nervous system (CNS), and all stages of this process can be adaptively regulated by neuronal activity. While artificial exogenous stimulation of neuronal circuits greatly enhances oligodendrocyte progenitor cell (OPC) production and increases myelination during development, the extent to which physiological stimuli replicates this is unclear, particularly in the adult CNS when the rate of new myelin addition slows. Here, we used environmental enrichment (EE) to physiologically stimulate neuronal activity for 6 weeks in 9‐week‐old C57BL/six male and female mice and found no increase in compact myelin in the corpus callosum or somatosensory cortex. Instead, we observed a global increase in callosal axon diameter with thicker myelin sheaths, elongated paranodes and shortened nodes of Ranvier. These findings indicate that EE induced the dynamic structural remodelling of myelinated axons. Additionally, we observed a global increase in the differentiation of OPCs and pre‐myelinating oligodendroglia in the corpus callosum and somatosensory cortex. Our findings of structural remodelling of myelinated axons in response to physiological neural stimuli during young adulthood provide important insights in understanding experience‐dependent myelin plasticity throughout the lifespan and provide a platform to investigate axon–myelin interactions in a physiologically relevant context. John Wiley and Sons Inc. 2022-10-27 2022-12 /pmc/articles/PMC10092722/ /pubmed/36217300 http://dx.doi.org/10.1111/ejn.15840 Text en © 2022 The Authors. European Journal of Neuroscience published by Federation of European Neuroscience Societies and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular and Synaptic Mechanisms
Nicholson, Madeline
Wood, Rhiannon J.
Gonsalvez, David G.
Hannan, Anthony J.
Fletcher, Jessica L.
Xiao, Junhua
Murray, Simon S.
Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title_full Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title_fullStr Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title_full_unstemmed Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title_short Remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
title_sort remodelling of myelinated axons and oligodendrocyte differentiation is stimulated by environmental enrichment in the young adult brain
topic Molecular and Synaptic Mechanisms
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10092722/
https://www.ncbi.nlm.nih.gov/pubmed/36217300
http://dx.doi.org/10.1111/ejn.15840
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