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Astrocytic calcium waves: unveiling their roles in sleep and arousal modulation.
Wu, Erxi; Qi, Dan; Nizamutdinov, Damir; Huang, Jason H.
Afiliação
  • Wu E; Department of Neurosurgery and Neuroscience Institute, Baylor Scott & White Health, Temple; Texas A&M University School of Medicine, Temple; Texas A&M University School of Pharmacy, College Station; LIVESTRONG Cancer Institutes and Department of Oncology, Dell Medical School, the Univers
  • Qi D; Department of Neurosurgery and Neuroscience Institute, Baylor Scott & White Health, Temple, TX, USA.
  • Nizamutdinov D; Department of Neurosurgery and Neuroscience Institute, Baylor Scott & White Health; Texas A&M University School of Medicine, Temple, TX, USA.
  • Huang JH; Department of Neurosurgery and Neuroscience Institute, Baylor Scott & White Health; Texas A&M University School of Medicine; Department of Neurosurgery, Baylor College of Medicine, Temple, TX, USA.
Neural Regen Res ; 19(5): 984-987, 2024 May.
Article em En | MEDLINE | ID: mdl-37862199
ABSTRACT
Neuron-astrocyte interactions are vital for the brain's connectome. Understanding astrocyte activities is crucial for comprehending the complex neural network, particularly the population-level functions of neurons in different cortical states and associated behaviors in mammals. Studies on animal sleep and wakefulness have revealed distinct cortical synchrony patterns between neurons. Astrocytes, outnumbering neurons by nearly fivefold, support and regulate neuronal and synaptic function. Recent research on astrocyte activation during cortical state transitions has emphasized the influence of norepinephrine as a neurotransmitter and calcium waves as key components of ion channel signaling. This summary focuses on a few recent studies investigating astrocyte-neuron interactions in mouse models during sleep, wakefulness, and arousal levels, exploring the involvement of noradrenaline signaling, ion channels, and glutamatergic signaling in different cortical states. These findings highlight the significant impact of astrocytes on large-scale neuronal networks, influencing brain activity and responsiveness. Targeting astrocytic signaling pathways shows promise for treating sleep disorders and arousal dysregulation. More research is needed to understand astrocytic calcium signaling in different brain regions and its implications for dysregulated brain states, requiring future human studies to comprehensively investigate neuron-astrocyte interactions and pave the way for therapeutic interventions in sleep- and arousal-related disorders.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article