Repeated administration of the synthetic cannabinoid AKB48 induces serotonergic neuroadaptation in male and female mice: behavioural and immunohistochemical evidence.
Giorgia Corli, Fabrizio De Luca, Sabrine Bilel, Marta Bassi, Elisa Roda, Rosa Maria Gaudio, Liana Fattore, Carlo Alessandro Locatelli, Matteo Marti
Neuropharmacology February 1, 2026 DOI: 10.1016/j.neuropharm.2025.110758 via PubMed
Summary
AI-generated from the abstractRepeated exposure to the synthetic cannabinoid AKB48 worsens the visual sensorimotor, sensory gating, and motor reactivity response to the hallucinogens 2C-I and 25I-NBOMe in mice. This effect is more prolonged in males than in females. The underlying mechanism involves neuroplastic changes in the cerebellum and cortex, specifically at serotonin 2A receptors and the serotonin transporter. These changes occur more markedly and rapidly in female mice. The findings highlight a significant interaction between synthetic cannabinoids and psychedelic drugs, which may be relevant to long-term effects and psychiatric consequences of their consumption.
Study at a glance
| Characteristics | Behavioral and immunohistochemical study Peer reviewed |
|---|---|
| Population | Male and female mice |
| Interventions | AKB48 2C-I 25I-NBOMe |
| Keywords | 25i-nbome pubchem cid 2c-i pubchem cid 5-ht2a receptors Akb48 pubchem cid Hallucinogens |
| Citations | 1 |
| Key finding | Repeated AKB48 administration worsens the response to serotoninergic hallucinogens, with sex-dependent differences in duration and neuroplasticity at 5-HT2A receptors and serotonin transporter. |
Abstract
In the last years, Synthetic Cannabinoids (SCBs) have established themselves as one of the largest and most popular groups of Novel Psychoactive Substances (NPS), being frequently detected in biological samples of patients involved in intoxication and death cases. To date, compelling evidence on the potential interaction between SCBs and non-cannabinoid neurotransmission systems has emerged, with reference to a high-level overlap between endocannabinoid and serotoninergic system. Their long-term effect on serotoninergic pathways is still to be elucidated. Using a behavioural and immunohistochemical approach, we investigated the neuroplasticity at 5-HT2A serotoninergic receptors and serotonin transporter in the cerebellum and cortex induced by repeated AKB48 administration in male and female mice. Further, pharmacological response to the serotoninergic compounds 2C-I or 25I-NBOMe has been studied. The repeated exposure to AKB48 results in a worsening effect on the visual sensorimotor, sensory gating, and motor reactivity response to synthetic hallucinogens, that appears to be generally more prolonged in male with respect to AKB48-treated female mice. Interestingly, the effect has been related to cerebellar and cortical neuroplasticity at serotoninergic neurotransmission system, that involves both 5-HT2A and SERT, that occurs more markedly and rapidly in female with respect to male mice. This data highlight the interaction between SCBs and psychedelic drugs that may be relevant to their long-term effects and psychiatric sequelae potentially related to their consumption.