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Chronic low-grade hippocampal inflammation blunts exercise-induced neurogenesis and alters the exercise-induced
Sarah Nicolas1, Maria Giovanna Caruso1, Sebastian Dohm-Hansen2
1Department of Anatomy and Neuroscience, University College Cork, Ireland; APC Microbiome Ireland, University College Cork, Ireland.
Abstract:
Chronic low-grade neuroinflammation contributes to inflammageing by compromising hippocampal plasticity, with interleukin-1β (IL-1β) as a key mediator. The extent to which sustained hippocampal inflammation can interfere with the potential beneficial effects of exercise on plasticity and hippocampus-related behaviour remains unclear. Here we combined bilateral hippocampal IL-1β overexpression (IL-1β-OE), to mimic chronic low-grade neuroinflammation with voluntary wheel running, to mimic human exercise training, in adult male Sprague-Dawley rats. We assessed effects on multiple dorsal hippocampal-related behaviours, adult hippocampal neurogenesis, microglial reactivity, and immune cell infiltration. Hippocampal IL-1β-OE impaired pattern separation, independent of exercise training, and attenuated exercise-induced increases in neurogenesis in the dorsal hippocampus. Hippocampal IL-1β-OE promoted microglial lipid-droplet accumulation, which exercise paradoxically exacerbated. Transcriptomic profiling revealed that exercise in combination with hippocampal IL-1β-OE enriched immune and leukocyte trafficking pathways in microglia, while hippocampal IL-1β-OE alone increased hippocampal CD8+ T cell infiltration. These findings indicate that chronic hippocampal inflammation alters microglial and neurogenic responses to exercise, suggesting that inflammatory status critically influences exercise efficacy in supporting hippocampal plasticity.
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