Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep

Despite evidence that astrocytes mediate sleep-dependent function, the involved signaling mechanisms are unknown. The authors show that astrocytic Ca2+ signalling exhibits distinct features across the sleep-wake cycle and ablation of this Ca2+ signalling pathway impairs slow wave sleep.

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Autores principales: Laura Bojarskaite, Daniel M. Bjørnstad, Klas H. Pettersen, Céline Cunen, Gudmund Horn Hermansen, Knut Sindre Åbjørsbråten, Anna R. Chambers, Rolf Sprengel, Koen Vervaeke, Wannan Tang, Rune Enger, Erlend A. Nagelhus
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Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/1e68c981b1e04846bd23cd2939be5062
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spelling oai:doaj.org-article:1e68c981b1e04846bd23cd2939be50622021-12-02T18:33:59ZAstrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep10.1038/s41467-020-17062-22041-1723https://doaj.org/article/1e68c981b1e04846bd23cd2939be50622020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17062-2https://doaj.org/toc/2041-1723Despite evidence that astrocytes mediate sleep-dependent function, the involved signaling mechanisms are unknown. The authors show that astrocytic Ca2+ signalling exhibits distinct features across the sleep-wake cycle and ablation of this Ca2+ signalling pathway impairs slow wave sleep.Laura BojarskaiteDaniel M. BjørnstadKlas H. PettersenCéline CunenGudmund Horn HermansenKnut Sindre ÅbjørsbråtenAnna R. ChambersRolf SprengelKoen VervaekeWannan TangRune EngerErlend A. NagelhusNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-16 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Laura Bojarskaite
Daniel M. Bjørnstad
Klas H. Pettersen
Céline Cunen
Gudmund Horn Hermansen
Knut Sindre Åbjørsbråten
Anna R. Chambers
Rolf Sprengel
Koen Vervaeke
Wannan Tang
Rune Enger
Erlend A. Nagelhus
Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
description Despite evidence that astrocytes mediate sleep-dependent function, the involved signaling mechanisms are unknown. The authors show that astrocytic Ca2+ signalling exhibits distinct features across the sleep-wake cycle and ablation of this Ca2+ signalling pathway impairs slow wave sleep.
format article
author Laura Bojarskaite
Daniel M. Bjørnstad
Klas H. Pettersen
Céline Cunen
Gudmund Horn Hermansen
Knut Sindre Åbjørsbråten
Anna R. Chambers
Rolf Sprengel
Koen Vervaeke
Wannan Tang
Rune Enger
Erlend A. Nagelhus
author_facet Laura Bojarskaite
Daniel M. Bjørnstad
Klas H. Pettersen
Céline Cunen
Gudmund Horn Hermansen
Knut Sindre Åbjørsbråten
Anna R. Chambers
Rolf Sprengel
Koen Vervaeke
Wannan Tang
Rune Enger
Erlend A. Nagelhus
author_sort Laura Bojarskaite
title Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
title_short Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
title_full Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
title_fullStr Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
title_full_unstemmed Astrocytic Ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
title_sort astrocytic ca2+ signaling is reduced during sleep and is involved in the regulation of slow wave sleep
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/1e68c981b1e04846bd23cd2939be5062
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