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Published on: July 9, 2016
Deletion of CB2 cannabinoid receptor induces schizophrenia-related behaviors in mice
Antonio Ortega-Alvaro1, Auxiliadora Aracil-Fernández, María S García-Gutiérrez
1Unidad de Neuropsicofarmacología Traslacional, Complejo Hospitalario Universitario de Albacete, Albacete, Spain.
Abstract:
The possible role of the CB(2) receptor (CB(2)r) in psychiatric disorders has been considered. Several animal models use knockout (KO) mice that display schizophrenia-like behaviors and this study evaluated the role of CB(2)r in the regulation of such behaviors. Mice lacking the CB(2)r (CB(2)KO) were challenged in open field, light-dark box, elevated plus-maze, tail suspension, step down inhibitory avoidance, and pre-pulse inhibition tests (PPI). Furthermore, the effects of treatment with cocaine and risperidone were evaluated using the OF and the PPI test. Gene expression of dopamine D(2) (D(2)r), adrenergic-α(2C) (α(2C)r), serotonergic 5-HT(2A) and 5-HT(2C) receptors (5-HT(2A)r and 5-HT(2C)r) were studied by RT-PCR in brain regions related to schizophrenia. Deletion of CB(2)r decreased motor activity in the OF test, but enhanced response to acute cocaine and produced mood-related alterations, PPI deficit, and cognitive impairment. Chronic treatment with risperidone tended to impair PPI in WT mice, whereas it 'normalized' the PPI deficit in CB(2)KO mice. CB(2)KO mice presented increased D(2)r and α(2C)r gene expressions in the prefrontal cortex (PFC) and locus coeruleus (LC), decreased 5-HT(2C)r gene expression in the dorsal raphe (DR), and 5-HT(2A)r gene expression in the PFC. Chronic risperidone treatment in WT mice left α(2C)r gene expression unchanged, decreased D(2)r gene expression (15 μg/kg), and decreased 5-HT(2C)r and 5-HT(2A)r in PFC and DR. In CB(2)KO, the gene expression of D(2)r in the PFC, of α(2C)r in the LC, and of 5-HT(2C)r and 5-HT(2A)r in PFC was reduced; 5-HT(2C)r and 5-HT(2A)r gene expressions in DR were increased after treatment with risperidone. These results suggest that deletion of CB(2)r has a relation with schizophrenia-like behaviors. Pharmacological manipulation of CB(2)r may merit further study as a potential therapeutic target for the treatment of schizophrenia-related disorders.
Insights
Mice lacking the CB(2) receptor (CB(2)r) showed schizophrenia-like behaviors, including altered motor activity and cognitive deficits. Targeting CB(2)r may offer a new therapeutic strategy for schizophrenia treatment.
Area of Science:
- Neuroscience
- Psychiatry
- Pharmacology
Background:
- The cannabinoid receptor 2 (CB(2) receptor) has been implicated in psychiatric disorders.
- Schizophrenia-like behaviors are studied in animal models using knockout mice.
Purpose of the Study:
- To investigate the role of the CB(2) receptor in regulating schizophrenia-like behaviors.
- To evaluate the effects of CB(2) receptor deletion on behavioral responses and neurotransmitter receptor gene expression.
Main Methods:
- Utilized CB(2) receptor knockout (CB(2)KO) mice and wild-type (WT) littermates.
- Assessed behaviors using open field, light-dark box, elevated plus-maze, tail suspension, step-down inhibitory avoidance, and pre-pulse inhibition (PPI) tests.
- Analyzed gene expression of dopamine D(2), adrenergic-α(2C), and serotonergic 5-HT(2A)/5-HT(2C) receptors in brain regions using RT-PCR.
Main Results:
- CB(2)KO mice exhibited decreased motor activity, enhanced response to cocaine, mood alterations, PPI deficits, and cognitive impairment.
- Risperidone treatment normalized PPI deficits in CB(2)KO mice, unlike in WT mice.
- CB(2)KO mice showed altered gene expression of D(2)r, α(2C)r, 5-HT(2A)r, and 5-HT(2C)r in key brain regions (PFC, LC, DR).
Conclusions:
- Deletion of the CB(2) receptor is associated with schizophrenia-like behaviors.
- Pharmacological targeting of the CB(2) receptor warrants further investigation for schizophrenia treatment.

