- mGlu5 knockout mice exhibit amplified acute behavioural responses to psilocybin, including hyperlocomotion and male-specific increased head-twitch response, indicating altered 5-HT2A signalling.
- Acute psilocybin increased claustral c-Fos in wild-type mice but not in mGlu5 knockouts, indicating mGlu5 is required for claustral recruitment.
- Psilocybin produced a sustained normalisation of prepulse inhibition in female mGlu5 knockout mice, evident nine days post-treatment, revealing sex-dependent long-term effects.
Neuropsychopharmacology. 2026 Jul 18. doi: 10.1038/s41386-026-02501-3. Online ahead of print.
ABSTRACT
Psilocybin is a serotonergic psychedelic drug with emerging therapeutic applications, yet its actions under glutamatergic dysfunction, and relevance to schizophrenia and associated psychiatric disorders, remain unclear. We examined the acute and long-lasting effects of psilocybin (1 mg/kg, intraperitoneal) on behavioral and neural outcomes in the metabotropic glutamate receptor 5 (mGlu5) knockout (KO) mouse model of schizophrenia. The mGlu5 KO mice displayed psilocybin-induced hyperlocomotion, whereas wild-type (WT) mice did not. Additionally, male mGlu5 KO mice showed an amplified psilocybin-induced head-twitch response (HTR) compared with WT males, consistent with sex-dependent enhancement of 5-HT2A receptor-mediated signaling. Acute psilocybin increased c-Fos expression in the claustrum of WT but not KO mice, suggesting intact mGlu5 signaling is required for psilocybin-evoked claustral recruitment. Psilocybin did not alter anxiety-like behavior in the light-dark box and increased immobility time in the Porsolt test. Strikingly, psilocybin produced a sustained normalization in prepulse inhibition (a measure of sensorimotor gating) in female KO mice, evident nine days after treatment. Together, these findings indicate that disrupted mGlu5 signaling amplifies acute responses to psilocybin and reveals a sex-dependent long-term effect on sensorimotor gating. These results refine understanding of glutamatergic-serotonergic interactions and motivate further work evaluating psilocybin across schizophrenia-relevant endophenotypes.
PMID:42471435 | DOI:10.1038/s41386-026-02501-3
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