Comparative neuropharmacology of N-(2-methoxybenzyl)-2,5-dimethoxyphenethylamine (NBOMe) hallucinogens and their 2C counterparts in male rats.
Joshua S Elmore, Ann M Decker, Agnieszka Sulima, Kenner C Rice, John S Partilla, Bruce E Blough, Michael H Baumann
Neuropharmacology November 1, 2018 DOI: 10.1016/j.neuropharm.2018.02.033 via PubMed
Summary
AI-generated from the abstractN-methoxybenzylated derivatives of 2C compounds, specifically 25C-NBOMe and 25I-NBOMe, show higher affinity for 5-HT2A receptors than their parent 2C compounds but are weaker in functional cellular assays. In rats, NBOMes were much more potent at inducing wet dog shakes and back muscle contractions compared to 2C-C and 2C-I. A selective 5-HT2A antagonist reversed these behaviors, confirming receptor involvement. Binding affinities correlated with potencies for back muscle contractions but not wet dog shakes. These findings indicate NBOMes are highly potent 5-HT2A agonists in rats, consistent with reported hallucinogenic effects in humans.
Study at a glance
| Characteristics | Experimental study Peer reviewed |
|---|---|
| Population | Male rats |
| Interventions | 25C-NBOMe 25I-NBOMe 2C-C 2C-I DOI |
| Dose | 0.01-0.3 mg/kg for NBOMes, 0.1-3.0 mg/kg for 2C compounds, 0.03-1.0 mg/kg for DOI |
| Keywords | Back muscle contractions Wet dog shakes Nbome compounds nbome Synthetic compounds |
| Citations | 59 |
| Key finding | NBOMes are highly potent 5-HT2A agonists in rats, more potent at inducing wet dog shakes and back muscle contractions than their 2C counterparts, with effects blocked by a selective 5-HT2A antagonist. |
Abstract
2,5-Dimethoxyphenethylamines (2C compounds) are 5-HT2A/2C receptor agonists that induce hallucinogenic effects. N-methoxybenzylation of 2C compounds markedly increases their affinity for 5-HT2A receptors, and two such analogs, 2-(4-chloro-2,5-dimethoxyphenyl)-N-[(2-methoxyphenyl)methyl]ethanamine (25C-NBOMe) and 2-(4-iodo-2,5-dimethoxyphenyl)-N-[(2-methoxyphenyl)methyl]ethanamine (25I-NBOMe), have emerged in recreational drug markets. Here, we investigated the neuropharmacology of 25C-NBOMe and 25I-NBOMe in rats, as compared to their 2C analogs and the prototypical 5-HT2A/2C agonist 1-(4-iodo-2,5-dimethoxyphenyl)propan-2-amine (DOI). Compounds were tested in vitro using 5-HT2A receptor binding and calcium mobilization assays. For in vivo experiments, 25C-NBOMe (0.01-0.3 mg/kg), 25I-NBOMe (0.01-0.3 mg/kg), 2-(4-chloro-2,5-dimethoxyphenyl)ethanamine (2C-C) (0.1-3.0 mg/kg), 2-(4-iodo-2,5-dimethoxyphenyl)ethanamine (2C-I) (0.1-3.0 mg/kg) and DOI (0.03-1.0 mg/kg) were administered subcutaneously (sc) to male rats, and 5-HT2A-mediated behaviors were assessed. NBOMes displayed higher affinity for 5-HT2A receptors than their 2C counterparts but were substantially weaker in functional assays. 25C-NBOMe and 25I-NBOMe were much more potent at inducing wet dog shakes (WDS) and back muscle contractions (BMC) when compared to 2C-C and 2C-I. Pretreatment with the selective 5-HT2A antagonist (R)-(2,3-dimethoxyphenyl){1-[2-(4-fluorophenyl)ethyl]-4-piperidinyl}methanol (M100907) reversed behaviors produced by all agonists. Interestingly, binding affinities at the 5-HT2A receptor were significantly correlated with potencies to induce BMC but not WDS. Our findings show that NBOMes are highly potent 5-HT2A agonists in rats, similar to effects in mice, and consistent with the reported hallucinogenic effects in human users. This article is part of the Special Issue entitled 'Psychedelics: New Doors, Altered Perceptions'.