Publication | Open Access
Astrocytic signaling supports hippocampal–prefrontal theta synchronization and cognitive function
104
Citations
56
References
2017
Year
Dominant Negative SnareSynaptic PlasticityCognitive ScienceBrain FunctionNeurophysiologyMedicineSynaptic TransmissionCortical RemodelingDnsnare MiceCognitive FunctionNeuroscienceNeurotransmissionNeurologyCognitive NeuroscienceSynaptic SignalingSocial Sciences
Astrocytes interact with neurons at the cellular level through modulation of synaptic formation, maturation, and function, but the impact of such interaction into behavior remains unclear. Here, we studied the dominant negative SNARE (dnSNARE) mouse model to dissect the role of astrocyte-derived signaling in corticolimbic circuits, with implications for cognitive processing. We found that the blockade of gliotransmitter release in astrocytes triggers a critical desynchronization of neural theta oscillations between dorsal hippocampus and prefrontal cortex. Moreover, we found a strong cognitive impairment in tasks depending on this network. Importantly, the supplementation with d-serine completely restores hippocampal-prefrontal theta synchronization and rescues the spatial memory and long-term memory of dnSNARE mice. We provide here novel evidence of long distance network modulation by astrocytes, with direct implications to cognitive function.
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