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Cannabis induced psychosis: a systematic review on the role of genetic polymorphisms.

C. Carvalho, M. Vieira-Coelho

Pharmacological Research May 1, 2022 DOI: 10.1016/j.phrs.2022.106258 via Semantic Scholar

Summary

AI-generated from the abstract

Genetic variations in dopamine-related genes, particularly COMT rs4680 with the Val allele and AKT1 rs2494732 with the CC genotype, are associated with a higher risk of cannabis-induced psychosis. A genome-wide association study identified signals near the cholinergic receptor muscarinic 3 linked to cannabis-induced hallucinations, without finding dopaminergic targets. Most genetic studies have been guided by pre-existing dopamine theories, highlighting the need for broader genetic research to improve understanding, prevention, and treatment of cannabis-induced psychosis.

Study at a glance

Characteristics Systematic review Peer reviewed
Keywords Medicine Psychology
Key finding Genetic polymorphisms in dopamine pathway genes (COMT, AKT1) and a cholinergic receptor gene are associated with susceptibility to cannabis-induced psychosis.

Abstract

OBJECTIVE Cannabis sativa is a recreational drug commonly consumed in Europe and is getting popularity for both recreational and therapeutic use. In some individuals, the use of cannabis leads to psychotic disorders. This systematic review summarizes the current evidence linking genetic polymorphisms and inter-individual susceptibility to psychosis induced by cannabis. METHOD Studies published from 2005 to 2020 were identified through Medline using PubMed, Web of Science and Scopus database and searches were conducted according to PRISMA guidelines. Initial search was performed with terms: "cannabis induced psychosis" AND "genetics". RESULTS From the initial group of 108 papers, 18 studies met our inclusion criteria. Many of the findings revealed associations with genetic polymorphisms modulations of genes involved directly (COMT, DRD2 and DAT) or indirectly (AKT1) to dopamine pathways. The most consistent finding was with COMT rs4680, where the presence of the Val allele was associated with a higher risk for cannabis-induced psychosis. This higher susceptibility was also reported for AKT1 (rs2494732) with the CC genotype. Of note, the only genome-wide association study identified a significant signal close to the cholinergic receptor muscarinic 3 represented by rs115455482 and rs74722579 predisposing to cannabis-induced hallucinations and remarkably no dopaminergic target was found. CONCLUSION Actual evidence supports the role of dopamine in cannabis induced psychosis. However, most of genetic polymorphism studies have as a starting point the pre-existing dopaminergic theoretical basis for psychosis. This alerts to the importance of more broad genetic studies. Integrate genetic results into biological systems may enhance our knowledge of cannabis induced psychosis and could help in the prevention and treatment of these patients.

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