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Contribution of serotonin receptor subtypes to hallucinogenic activity of 25I-NBOMe and to its effect on neurotransmission.

Monika Herian, Adam Wojtas, Małgorzata Katarzyna Sobocińska, Mateusz Skawski, Alejandro González-marín, Krystyna Gołembiowska

Pharmacological reports : PR December 1, 2020 DOI: 10.1007/s43440-020-00181-4 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

The hallucinogenic compound 25I-NBOMe acts through specific serotonin receptors to produce its effects. In rats, blocking the 5-HT2A or 5-HT2C receptors with selective antagonists reduced both the hallucinogenic-like behavior (wet dog shakes) and the release of glutamate, dopamine, and serotonin in the frontal cortex caused by 25I-NBOMe. Blocking the 5-HT1A receptor did not affect the behavior or glutamate release but did decrease dopamine and serotonin release, likely by disinhibiting GABA neurons. These findings indicate that 5-HT2A and 5-HT2C receptors are key mediators of 25I-NBOMe's hallucinogenic activity and its effects on neurotransmitter release in the frontal cortex.

Study at a glance

Characteristics Experimental animal study Peer reviewed
Population Rats
Interventions 25I-NBOMe M100907 SB242084 WAY100635
Dose 1 and 3 mg/kg (25I-NBOMe); 100 nM (M100907 and SB242084)
Keywords 25i-nbome 5-ht2a/2c/1a receptor antagonists Hallucinogenic activity Neurotransmission
Citations 19
Key finding Blocking 5-HT2A or 5-HT2C receptors reduces 25I-NBOMe-induced hallucinogenic behavior and neurotransmitter release in the rat frontal cortex, while blocking 5-HT1A receptors only reduces dopamine and serotonin release.

Abstract

4-Iodo-2,5-dimethoxy-N-(2-methoxybenzyl)phenethylamine (25I-NBOMe) is a potent serotonin (5-HT) receptor agonist with hallucinogenic properties. The aim of our research was to examine the role of the 5-HT2A, 5-HT2C and 5-HT1A serotonin receptor subtypes in 25I-NBOMe hallucinogenic activity and its effect on dopamine (DA), 5-HT and glutamate release in the rat frontal cortex. Hallucinogenic activity was investigated using the wet dog shake (WDS) test. The release of DA, 5-HT and glutamate in the rat frontal cortex was studied using a microdialysis in freely moving rats. Neurotransmitter levels were analyzed by HPLC with electrochemical detection. The selective antagonists of the 5-HT2A, 5-HT2C and 5-HT1A serotonin receptor subtypes: M100907, SB242084 and WAY100635, respectively were applied through a microdialysis probe. The WDS response to 25I-NBOMe (1 and 3 mg/kg) was significantly reduced by local administration of M100907 and SB242084 (100 nM). The 25I-NBOMe-induced increase in glutamate, DA and 5-HT release was inhibited by M100907 and SB242084. WAY100635 had no effect on 25I-NBOMe-induced WDS and glutamate release, while it decreased DA and 5-HT release from cortical neuronal terminals. The obtained results suggest that 5-HT2A and 5-HT2C receptors play a role in 25I-NBOMe-induced hallucinogenic activity and in glutamate, DA and 5-HT release in the rat frontal cortex as their respective antagonists attenuated the effect of this hallucinogen. The disinhibition of GABA cells by the 5-HT1A receptor antagonist seems to underlie the mechanism of decreased DA and 5-HT release from neuronal terminals in the frontal cortex.

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