Fiche publication
Date publication
juin 2026
Journal
Brain, behavior, and immunity
Auteurs
Membres identifiés du Cancéropôle Est :
Mme MESSADDEQ Nadia
Tous les auteurs :
Yefimova MG, Cantereau-Becq A, Pénaud N, Barthelemy A, Berkati AK, Béré E, Balandre-Meunier AC, Cosquer B, Messaddeq N, Decraene C, Brulé B, Felder-Schmittbuhl MP, de Vasconcelos AP, Ravel C, Boutillier AL, Mérienne K
Lien Pubmed
Résumé
The canonical innate immune functions of astrocytes play a critical role in maintaining CNS homeostasis, including myelin remodeling - a physiological process that unfolds throughout life. Elimination of aged myelin and myelin debris is necessary to support remyelination. Myelin debris are cleared by professional CNS phagocytes microglial cells by classical phagocytosis mechanism and by non-professional phagocytes astrocytes through a mechanism which is not yet fully understood. Here, we demonstrate for the first time that, to process myelin, primary astrocytes from the mouse brain engage a specific innate immune mechanism that was previously unrecognized in these cells. This mechanism, resembling neutrophil extracellular traps (NET), we termed AsET (Astrocyte Extracellular Trap), shares morphological, kinetic, and molecular characteristics with non-suicidal NETs as demonstrated by transmission and scanning electron microscopy, immunocytochemistry, immunohistochemistry, and Western blot analyses. The main molecular NET/AsET marker citrullinated histone H3 (H3Cit) protein is present in brain cortex and striatum sections from normal mice in association with astrocytes and significantly increases in Huntington disease (HD) R6/1 mice with myelination defect. We propose that AsET is part of a normal physiological process of astrocyte-mediated myelin remodeling in the healthy brain, which can be over-activated under myelin-related disorders and contributes to neuroinflammation.
Mots clés
Astrocytes, Huntington disease, Myelin-related disorders, Neutrophil extracellular trap, citrullinated histone H3
Référence
Brain Behav Immun. 2026 06 15;:106872