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  • Temporary microglia-depletion after cosmic radiation modifies phagocytic activity and prevents cognitive deficits.

Temporary microglia-depletion after cosmic radiation modifies phagocytic activity and prevents cognitive deficits.

Scientific reports (2018-05-20)
Karen Krukowski, Xi Feng, Maria Serena Paladini, Austin Chou, Kristen Sacramento, Katherine Grue, Lara-Kirstie Riparip, Tamako Jones, Mary Campbell-Beachler, Gregory Nelson, Susanna Rosi
ZUSAMMENFASSUNG

Microglia are the main immune component in the brain that can regulate neuronal health and synapse function. Exposure to cosmic radiation can cause long-term cognitive impairments in rodent models thereby presenting potential obstacles for astronauts engaged in deep space travel. The mechanism/s for how cosmic radiation induces cognitive deficits are currently unknown. We find that temporary microglia depletion, one week after cosmic radiation, prevents the development of long-term memory deficits. Gene array profiling reveals that acute microglia depletion alters the late neuroinflammatory response to cosmic radiation. The repopulated microglia present a modified functional phenotype with reduced expression of scavenger receptors, lysosome membrane protein and complement receptor, all shown to be involved in microglia-synapses interaction. The lower phagocytic activity observed in the repopulated microglia is paralleled by improved synaptic protein expression. Our data provide mechanistic evidence for the role of microglia in the development of cognitive deficits after cosmic radiation exposure.

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Produktbeschreibung

Roche
cOmplete ULTRA-Mini-Tabletten, EDTA-freier Proteasehemmer-Cocktail in EASYpacks, Tablets supplied in foil blister packs.
Sigma-Aldrich
Anti-GAPDH-Antikörper, Maus monoklonal in Maus hergestellte Antikörper, clone GAPDH-71.1, purified from hybridoma cell culture
Sigma-Aldrich
Anti-Synapsin I-Antikörper, serum, Chemicon®