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Present and future of metabolic and metabolomics studies focused on classical psychedelics in humans

David Fabregat-Safont, Alex Gomez-Gomez, Francisco Madrid-Gambin, Natasha L. Mason, Eulàlia Olesti, Óscar J. Pozo, Johannes G. Ramaekers

Biomedicine & Pharmacotherapy December 31, 2023 DOI: 10.1016/j.biopha.2023.115775. (opens in new tab)

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Characteristics Review Peer reviewed
Population Humans
Topics DMT Psilocybin
Keywords Psychedelic Compounds LSD Hallucinogens Entheogens Psychotropic substances Drug metabolism pharmacokinetics Biotransformation Metabolic processing Breakdown products Human metabolism Medical applications Novel treatments Drug development Therapy Metabolomics drug tracking Molecular interactions Advanced metabolomics Precision medicine Biomarker discovery
Key findings Metabolic studies have robustly established the main metabolites of classical psychedelics in humans, but the broader metabolic alterations induced by these drugs remain underexplored.

Abstract

Psychedelics are classical hallucinogen drugs that induce a marked altered state of consciousness. In recent years, there has been renewed attention to the possible use of classical psychedelics for the treatment of certain mental health disorders. However, further investigation to better understand their biological effects in humans, their mechanism of action, and their metabolism in humans is needed when considering the development of future novel therapeutic approaches. Both metabolic and metabolomics studies may help for these purposes. On one hand, metabolic studies aim to determine the main metabolites of the drug. On the other hand, the application of metabolomics in human psychedelics studies can help to further understand the biological processes underlying the psychedelic state and the mechanisms of action underlying their therapeutic potential. This review presents the state of the art of metabolic and metabolomic studies after lysergic acid diethylamide (LSD), mescaline, N,N-dimethyltryptamine (DMT) and β-carboline alkaloids (ayahuasca brew), 5-methoxy-DMT and psilocybin administrations in humans. We first describe the characteristics of the published research. Afterward, we reviewed the main results obtained by both metabolic and metabolomics (if available) studies in classical psychedelics and we found out that metabolic and metabolomics studies in psychedelics progress at two different speeds. Thus, whereas the main metabolites for classical psychedelics have been robustly established, the main metabolic alterations induced by psychedelics need to be explored. The integration of metabolomics and pharmacokinetics for investigating the molecular interaction between psychedelics and multiple targets may open new avenues in understanding the therapeutic role of psychedelics

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