Sleep, Glial Function, and the Endocannabinoid System: Implications for Neuroinflammation and Sleep Disorders

Author:

Camberos-Barraza Josué1,Camacho-Zamora Alejandro1,Bátiz-Beltrán José C.1,Osuna-Ramos Juan F.1ORCID,Rábago-Monzón Ángel R.1,Valdez-Flores Marco A.1,Angulo-Rojo Carla E.1ORCID,Guadrón-Llanos Alma M.1,Picos-Cárdenas Verónica J.1ORCID,Calderón-Zamora Loranda2,Norzagaray-Valenzuela Claudia D.2,Cárdenas-Torres Feliznando I.3ORCID,De la Herrán-Arita Alberto K.1ORCID

Affiliation:

1. Faculty of Medicine, Autonomous University of Sinaloa, Culiacán 80019, Mexico

2. Faculty of Biology, Autonomous University of Sinaloa, Culiacán 80019, Mexico

3. Faculty of Nutrition Sciences and Gastronomy, Autonomous University of Sinaloa, Culiacán 80019, Mexico

Abstract

The relationship between sleep, glial cells, and the endocannabinoid system represents a multifaceted regulatory network with profound implications for neuroinflammation and cognitive function. The molecular underpinnings of sleep modulation by the endocannabinoid system and its influence on glial cell activity are discussed, shedding light on the reciprocal relationships that govern these processes. Emphasis is placed on understanding the role of glial cells in mediating neuroinflammatory responses and their modulation by sleep patterns. Additionally, this review examines how the endocannabinoid system interfaces with glia-immune signaling to regulate inflammatory cascades within the central nervous system. Notably, the cognitive consequences of disrupted sleep, neuroinflammation, and glial dysfunction are addressed, encompassing implications for neurodegenerative disorders, mood disturbances, and cognitive decline. Insights into the bidirectional modulation of cognitive function by the endocannabinoid system in the context of sleep and glial activity are explored, providing a comprehensive perspective on the potential mechanisms underlying cognitive impairments associated with sleep disturbances. Furthermore, this review examines potential therapeutic avenues targeting the endocannabinoid system to mitigate neuroinflammation, restore glial homeostasis, and normalize sleep patterns. The identification of novel therapeutic targets within this intricate regulatory network holds promise for addressing conditions characterized by disrupted sleep, neuroinflammation, and cognitive dysfunction. This work aims to examine the complexities of neural regulation and identify potential avenues for therapeutic intervention.

Publisher

MDPI AG

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