ePoster

ASTROCYTIC FOXO1 IN HIPPOCAMPUS-DEPENDENT BEHAVIOR MODULATION

Alexandra Veigaand 7 co-authors

Life and Health Sciences Research Institute (ICVS), School of Medicine, University of Minho

FENS Forum 2026 (2026)
Barcelona, Spain
Board PS06-09PM-225

Presentation

Date TBA

Board: PS06-09PM-225

Poster preview

ASTROCYTIC FOXO1 IN HIPPOCAMPUS-DEPENDENT BEHAVIOR MODULATION poster preview

Event Information

Poster Board

PS06-09PM-225

Abstract

Astrocytes are crucial for modulating synaptic activity and behavior through bidirectional communication with neurons. They sense and respond to neuronal activity by elevating intracellular calcium levels, which display complex spatiotemporal properties. To identify calcium-dependent signaling pathways downstream of astrocytic activity, we studied the IP3 receptor type 2 knockout (IP3R2 KO) mouse model that lacks global calcium elevations in astrocytes. Molecular analysis of hippocampal tissue of this model with impaired calcium-dependent signaling revealed hundreds of up- and down-regulated genes, among which 76 are modulated by the astrocyte-specific transcription factor Foxo1. Given that IP3R2KO mice display altered hippocampus-dependent behaviors, we hypothesized that astrocytic Foxo1 modulates these behavioral phenotypes.
To test this hypothesis, we used viral vectors to overexpress or silence Foxo1 in hippocampal astrocytes. This bidirectional manipulation allowed us to establish astrocytic Foxo1 as a novel regulator of hippocampal circuit function, with implications for mouse behavior.

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