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Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination

BACKGROUND: Several clinical conditions are associated with white matter injury, including periventricular white matter injury (PWMI), which is a form of brain injury sustained by preterm infants. It has been suggested that white matter injury in this condition is due to altered oligodendrocyte (OL)...

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Autores principales: Fogal, Birgit, McClaskey, Carolyn, Yan, Sha, Yan, Henglin, Rivkees, Scott A.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2878350/
https://www.ncbi.nlm.nih.gov/pubmed/20531945
http://dx.doi.org/10.1371/journal.pone.0010906
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author Fogal, Birgit
McClaskey, Carolyn
Yan, Sha
Yan, Henglin
Rivkees, Scott A.
author_facet Fogal, Birgit
McClaskey, Carolyn
Yan, Sha
Yan, Henglin
Rivkees, Scott A.
author_sort Fogal, Birgit
collection PubMed
description BACKGROUND: Several clinical conditions are associated with white matter injury, including periventricular white matter injury (PWMI), which is a form of brain injury sustained by preterm infants. It has been suggested that white matter injury in this condition is due to altered oligodendrocyte (OL) development or death, resulting in OL loss and hypomyelination. At present drugs are not available that stimulate OL proliferation and promote myelination. Evidence suggests that depolarizing stimuli reduces OL proliferation and differentiation, whereas agents that hyperpolarize OLs stimulate OL proliferation and differentiation. Considering that the drug diazoxide activates K(ATP) channels to hyperpolarize cells, we tested if this compound could influence OL proliferation and myelination. METHODOLOGY/FINDINGS: Studies were performed using rat oligodendrocyte precursor cell (OPC) cultures, cerebellar slice cultures, and an in vivo model of PWMI in which newborn mice were exposed to chronic sublethal hypoxia (10% O(2)). We found that K(ATP) channel components Kir 6.1 and 6.2 and SUR2 were expressed in oligodendrocytes. Additionally, diazoxide potently stimulated OPC proliferation, as did other K(ATP) activators. Diazoxide also stimulated myelination in cerebellar slice cultures. We also found that diazoxide prevented hypomyelination and ventriculomegaly following chronic sublethal hypoxia. CONCLUSIONS: These results identify KATP channel components in OLs and show that diazoxide can stimulate OL proliferation in vitro. Importantly we find that diazoxide can promote myelination in vivo and prevent hypoxia-induced PWMI.
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spelling pubmed-28783502010-06-07 Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination Fogal, Birgit McClaskey, Carolyn Yan, Sha Yan, Henglin Rivkees, Scott A. PLoS One Research Article BACKGROUND: Several clinical conditions are associated with white matter injury, including periventricular white matter injury (PWMI), which is a form of brain injury sustained by preterm infants. It has been suggested that white matter injury in this condition is due to altered oligodendrocyte (OL) development or death, resulting in OL loss and hypomyelination. At present drugs are not available that stimulate OL proliferation and promote myelination. Evidence suggests that depolarizing stimuli reduces OL proliferation and differentiation, whereas agents that hyperpolarize OLs stimulate OL proliferation and differentiation. Considering that the drug diazoxide activates K(ATP) channels to hyperpolarize cells, we tested if this compound could influence OL proliferation and myelination. METHODOLOGY/FINDINGS: Studies were performed using rat oligodendrocyte precursor cell (OPC) cultures, cerebellar slice cultures, and an in vivo model of PWMI in which newborn mice were exposed to chronic sublethal hypoxia (10% O(2)). We found that K(ATP) channel components Kir 6.1 and 6.2 and SUR2 were expressed in oligodendrocytes. Additionally, diazoxide potently stimulated OPC proliferation, as did other K(ATP) activators. Diazoxide also stimulated myelination in cerebellar slice cultures. We also found that diazoxide prevented hypomyelination and ventriculomegaly following chronic sublethal hypoxia. CONCLUSIONS: These results identify KATP channel components in OLs and show that diazoxide can stimulate OL proliferation in vitro. Importantly we find that diazoxide can promote myelination in vivo and prevent hypoxia-induced PWMI. Public Library of Science 2010-05-28 /pmc/articles/PMC2878350/ /pubmed/20531945 http://dx.doi.org/10.1371/journal.pone.0010906 Text en Fogal et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Fogal, Birgit
McClaskey, Carolyn
Yan, Sha
Yan, Henglin
Rivkees, Scott A.
Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title_full Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title_fullStr Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title_full_unstemmed Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title_short Diazoxide Promotes Oligodendrocyte Precursor Cell Proliferation and Myelination
title_sort diazoxide promotes oligodendrocyte precursor cell proliferation and myelination
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2878350/
https://www.ncbi.nlm.nih.gov/pubmed/20531945
http://dx.doi.org/10.1371/journal.pone.0010906
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