Back

Cellular mechanisms underlying the pro-cognitive effects of serotonin 5-HT7 receptors in a mouse model of schizophrenia

Gener, T.; Hidalgo-Nieves, S.; Lopez-Cabezon, C.; Arroyo-Portela, C.; Puig, M. V.

2025-12-15 neuroscience
10.64898/2025.12.12.693910 bioRxiv
Show abstract

Serotonin 5-HT7 receptors (5-HT7Rs) have emerged as promising targets for treating cognitive and affective disturbances in schizophrenia and other neuropsychiatric disorders, yet their cellular substrates and circuit-level mechanisms remain poorly defined. Here, we combined immunohistochemistry, multisite electrophysiology, and behavioral assays to investigate how 5-HT7Rs modulate hippocampal-prefrontal pathways in healthy mice and in a subchronic phencyclidine (sPCP) model of cognitive and negative symptoms in schizophrenia. We found that 5-HT7Rs are abundantly expressed in both excitatory and inhibitory neurons of the dorsal hippocampus (dHPC) and medial prefrontal cortex (mPFC), with high co-expression in PV and SST interneurons ([~]80% in dHPC; 55% PV and 75% SST in mPFC). In healthy mice, systemic 5-HT7R activation with the agonist AS-19 suppressed neuronal activity and synchrony within dHPC (CA1) - mPFC (PL) pathways, reducing theta and high-gamma power, theta-gamma coupling in CA1, theta coherence, and CA1[->]PL directional connectivity, consistent with recruitment of inhibitory microcircuits. The similarity between 5-HT7R-mediated inhibition and the circuit effects we previously described for 5-HT1AR activation, together with evidence for 5-HT7R-5-HT1AR heterodimerization, suggests that these receptors act in concert to dynamically constrain hippocampal-prefrontal circuits. sPCP treatment induced persistent recognition-memory impairments, heightened anxiety-like behavior, and pathological high-frequency synchronization of hippocampal-prefrontal networks. Blockade of 5-HT7Rs with SB-269970 or the atypical antipsychotic lurasidone (but not lurasidone combined with AS-19) rescued memory performance, reduced anxiety-like behavior, and normalized aberrant high-frequency hypersynchrony, while enhancing CA1[->]PL theta signaling immediately before memory acquisition. Together, these findings indicate that 5-HT7R activation exerts potent inhibitory control over hippocampal-prefrontal pathways, likely via PV and SST interneurons, and suggest that 5-HT7R blockade constitutes a promising therapeutic strategy to restore excitation-inhibition balance and enhance neural communication within brain circuits crucial for cognition and mood regulation in neuropsychiatric disorders.

Matching journals

The top 3 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.