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Effects of serotonergic psychedelics on synaptogenesis and immediate early genes expression - comparison with ketamine, fluoxetine and lithium.

Yana Vella, Kateřina Syrová, Aneta Petrušková, Isis Koutrouli, Viera Kútna, Jan Pala, Klára Šíchová, Marek Nikolič, Vladimír Mazoch, Radek Jurok, Martin Kuchař, Zdeňka Bendová, Tomáš Páleníček

Journal of psychopharmacology (Oxford, England) May 28, 2025 DOI: 10.1177/02698811251338232 via PubMed

Summary

AI-generated from the abstract

Psilocin, the active compound in magic mushrooms, promotes the formation of new synapses in rat brain cells, an effect comparable to ketamine and lithium. In laboratory experiments on rat cortical cultures, psilocin increased the number of synaptic puncta and boosted expression of the immediate early gene Arc after acute treatment. Lysergic acid diethylamide (LSD) and N,N-dimethyltryptamine (DMT) did not produce significant synaptogenic effects. Fluoxetine, a common antidepressant, had no effect on synapse formation but upregulated other immediate early genes. These findings add evidence that psilocin may be a promising therapeutic agent for psychiatric conditions.

Study at a glance

Characteristics In vitro study Peer reviewed
Population Rat primary cortical cultures
Interventions Psilocin Lysergic acid diethylamide (LSD) N N-dimethyltryptamine (DMT) Ketamine Fluoxetine Lithium
Dose 10 µM psilocin, 1 µM LSD, 90 µM DMT, 1 µM ketamine, 10 µM fluoxetine, 5 mM lithium
Duration Acute (1 h) and/or prolonged (24 h) treatment
Topics DMT Ketamine LSD Neuroplasticity Psilocybin
Citations 1
Key finding Psilocin promotes synaptogenesis and upregulates Arc expression in rat cortical neurons, comparable to ketamine and lithium, while LSD and DMT show no significant effects.

Abstract

Recent evidence suggests that psychedelics can induce rapid and long-lasting antidepressant effects. The generally acknowledged explanation for these traits is the phenomenon of neuroplasticity, although the exact underlying molecular mechanisms remain unclear. This study investigates the effects of psilocin, lysergic acid diethylamide (LSD) and N,N-dimethyltryptamine (DMT) on synaptogenesis and immediate early genes (IEGs) expression in direct comparison with ketamine, fluoxetine and lithium after acute (1 h) and/or prolonged (24 h) treatment in vitro. Rat primary cortical cultures were treated with 10 µM psilocin, 1 µM LSD, 90 µM DMT, 1 µM ketamine, 10 µM fluoxetine and 5 mM lithium. Analysis of synaptic puncta was performed; puncta of presynaptic marker synapsin I/II, postsynaptic density protein 95 (PSD-95) and their co-localization (established synapse) were assessed 24 h after drug treatment. Next, expressions of IEGs encoding activity-regulated cytoskeleton-associated protein (Arc), early growth response 1 (Egr1), and neuronal PAS (Per-Arnt-Sim) domain protein 4 (Npas4) were analysed 1 and 24 h after drug treatments. Psilocin increased synaptic puncta count and induced Arc expression. The effect to promote synaptogenesis was comparable to ketamine and lithium; ketamine additionally increased PSD-95 puncta count. LSD and DMT did not induce any significant effects. Interestingly, fluoxetine had no effect on synaptic puncta count, but upregulated Egr1 and Npas4. Psilocin demonstrated synaptogenic effects comparable to those of ketamine and lithium, and acutely upregulated IEG Arc expression, adding another piece of evidence to its profile as a promising therapeutic agent.

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