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Investigation of the 2,5-Dimethoxy Motif in Phenethylamine Serotonin 2A Receptor Agonists.

Emil Märcher-Rørsted, Adam L Halberstadt, Adam K Klein, Muhammad Chatha, Simon Jademyr, Anders A Jensen, Jesper L Kristensen

ACS chemical neuroscience May 6, 2020 DOI: 10.1021/acschemneuro.0c00129 via PubMed

Summary

AI-generated from the abstract

The 2,5-dimethoxy motif found in many phenethylamine psychedelics has been considered essential for activating the serotonin 2A receptor (5-HT2AR). This study synthesized derivatives of 2C-B and DOB lacking either the 2- or 5-methoxy group and tested them in binding and functional assays at 5-HT2AR and 5-HT2CR, as well as in mice for head-twitch response, a behavioral proxy for psychedelic activity. Removing either methoxy group caused a modest drop in binding affinity and functional potency at both receptors, with larger effects from removing the 2-methoxy group. However, in mice, removal of either group drastically reduced head-twitch response. Thus, the 2,5-dimethoxy motif is important for in vivo potency, but this does not correlate with in vitro receptor affinity or potency.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Mice
Interventions 2C-B DOB
Keywords Phenethylamine Agonists Serotonin 2a receptor Structure−activity relationship Structure-activity relationship
Citations 20
Key finding The 2,5-dimethoxy motif is important for in vivo potency of phenethylamine 5-HT2AR agonists but does not correlate with in vitro affinity or potency at the recombinant receptor.

Abstract

The 2,5-dimethoxyphenethylamine (2,5-PEA) scaffold is recognized as a motif conferring potent agonist activity at the serotonin 2A receptor (5-HT2AR). The 2,5-dimethoxy motif is present in several classical phenethylamine psychedelics such as 2,4,5- trimethoxyamphetamine (TMA-2), 2,5-dimethoxy-4-methylamphetamine (DOM), 2,5-dimethoxy-4-iodoamphetamine (DOI), 2,5- dimethoxy-4-bromoamphetamine (DOB), 2,5-dimethoxy-4-bromophenethylamine (2C-B), and 2,5-dimethoxy-4-iodophenethylamine (2C-I), and it has previously been suggested that this structural motif is essential for 5-HT2AR activation. In the present study, we present data that challenges this assumption. The 2- and 5-desmethoxy derivatives of 2C-B and DOB were synthesized, and their pharmacological profiles were evaluated in vitro at 5-HT2AR and 5-HT2CR in binding and functional assays and in vivo by assessing their induction of the head-twitch response in mice. Elimination of either the 2- or 5-methoxy group leads to a modest drop in binding affinity and functional potency at 5-HT2AR and 5-HT2CR, which was more pronounced upon removal of the 2-methoxy group. However, this trend was not mirrored in vivo, as removal of either methoxy group resulted in significant reduction in the ability of the compounds to induce the head-twitch response in mice. Thus, the 2,5-dimethoxyphenethylamine motif appears to be important for in vivo potency of phenethylamine 5-HT2AR agonists, but this does not correlate to the relative affinity and potency of the ligands at the recombinant 5-HT2AR.

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