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Psychedelic-like Activity of Norpsilocin Analogues. | LitMetric

Psychedelic-like Activity of Norpsilocin Analogues.

ACS Chem Neurosci

Designer Drug Research Unit, National Institute on Drug Abuse, Intramural Research Program, Baltimore, Maryland 21224, United States.

Published: January 2024

Primary metabolites of mushroom tryptamines, psilocybin and baeocystin (i.e., psilocin and norpsilocin), exhibit potent agonist activity at the serotonin 2A receptor (5-HT) but differ in their 5-HT-mediated effects . In particular, psilocin produces centrally mediated psychedelic effects , whereas norpsilocin, differing only by the loss of an -methyl group, is devoid of psychedelic-like effects. These observations suggest that the secondary methylamine group in norpsilocin impacts its central nervous system (CNS) bioavailability but not its receptor pharmacodynamics. To test this hypothesis, eight norpsilocin derivatives were synthesized with varied secondary alkyl-, allyl-, and benzylamine groups, primarily aiming to increase their lipophilicity and brain permeability. Structure-activity relationships for the norpsilocin analogues were evaluated using the mouse head-twitch response (HTR) as a proxy for CNS-mediated psychedelic-like effects. HTR studies revealed that extending the -methyl group of norpsilocin by a single methyl group, to give the corresponding secondary -ethyl analogue (4-HO-NET), was sufficient to produce psilocin-like activity (median effective dose or ED = 1.4 mg/kg). Notably, -allyl, -propyl, -isopropyl, and -benzyl derivatives also induced psilocin-like HTR activity (ED = 1.1-3.2 mg/kg), with variable maximum effects (26-77 total HTR events). By contrast, adding bulkier -butyl or cyclohexyl groups in the same position did not elicit psilocin-like HTRs. Pharmacological assessments of the tryptamine series demonstrated interactions with multiple serotonin receptor subtypes, including 5-HT, and other CNS signaling proteins (e.g., sigma receptors). Overall, our data highlight key structural requirements for CNS-mediated psychedelic-like effects of norpsilocin analogues.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10797613PMC
http://dx.doi.org/10.1021/acschemneuro.3c00610DOI Listing

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