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Modification of natural tryptamines for the treatment of neuropsychiatric diseases

Michael G. Palfreyman, Geoffrey B. Varty, Erik M. Stang, Umed Boltaev, Ken Avery, Alex Nivorozhkin

Journal of Psychopharmacology October 4, 2025 DOI: 10.1177/02698811251368362 via OpenAlex

Summary

AI-generated from the abstract

Classic psychedelic tryptamines show promise for neuropsychiatric disorders, but their broad utility is limited by properties requiring complex delivery and the enigmatic role of the 'psychedelic experience' in therapeutic efficacy. Reducing their mechanism to mere 5-HT2A receptor activation raises the question of whether efficacy is achievable without psychedelic effects. These molecules also interact with other serotonin receptors (e.g., 5-HT1A, 5-HT2C) and non-serotonergic receptors, necessitating further scrutiny of their polypharmacology. This perspective reviews limitations of current non-conjugated tryptamines, explores approaches to improve them, and discusses developing next-generation psychedelic and non-psychedelic compounds, along with the pharmacology underlying these potential therapies.

Study at a glance

Characteristics Review Peer reviewed
Keywords Tryptamines Mechanism biology Neuropharmacology Clinical trial Scrutiny
Citations 3
Key finding The therapeutic potential of classic psychedelic tryptamines is limited by their complex delivery and the unresolved role of the psychedelic experience, prompting development of next-generation compounds that may achieve efficacy without psychedelic effects.

Abstract

The last decade represented a period of unprecedented interest in, and development of, traditional psychedelic substances for the treatment of a variety of neuropsychiatric disorders. While early clinical trials of classical psychedelics, several of the major ones being tryptamines, have demonstrated robust efficacy in patients with minimal adverse effects, many of these molecules have properties that may limit their broad utility in clinical practice or require more complex methods of delivery. The functional role and importance of a "psychedelic experience" for therapeutic efficacy remain enigmatic. If the mechanism of action is reduced to mere 5-HT2A receptor activation, this raises the question if whether therapeutic efficacy is achievable without the psychedelic effects. Furthermore, as this class of molecules typically interacts with many other members of the serotonin receptor family, including the 5-HT1A and 5-HT2C receptor subtypes (receptors proven to be relevant to a multitude of neuropsychiatric disorders), as well as non-serotonergic receptors, the polypharmacological aspect of psychedelic tryptamines needs further scrutiny and understanding. In this perspective, the authors will review the limitations of the current classical non-conjugated tryptamines (excludes lysergic acid diethylamide, ibogaine, and similar molecules), highlighting approaches that have been explored to improve the molecules, as well as approaches to develop new generation psychedelic and "non-psychedelic" compounds. Further, the authors will review the latest thoughts within the field on the pharmacology that could be underlying these potentially field changing therapies.

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