Skip to content

Effect of oral tryptamines on the gut microbiome of rats—a preliminary study

Mengyang Xu, Haifei Shi, Andor J. Kiss, J. Andrew Jones, Matthew S. Mcmurray

PeerJ June 3, 2024 DOI: 10.7717/peerj.17517 via OpenAlex

Summary

AI-generated from the abstract

Psilocybin and related tryptamines, currently studied as potential antidepressants, may work partly through the gut microbiome. In a preliminary experiment, male Long Evans rats received oral psilocybin (0.2 or 2 mg/kg), norbaeocystin (0.25 or 2.52 mg/kg), or a vehicle. Fecal samples collected 1 and 3 weeks later showed that neither drug significantly altered overall microbiome diversity, but both caused dose- and time-dependent shifts in bacterial abundance at the phylum level—increases in Verrucomicrobia and Actinobacteria, and decreases in Proteobacteria. These findings suggest a novel peripheral mechanism for tryptamine antidepressant activity and indicate norbaeocystin may warrant further investigation.

Study at a glance

Characteristics Preliminary study Peer reviewed
Population Male Long Evans rats
Interventions Psilocybin Norbaeocystin
Dose 0.2 or 2 mg/kg psilocybin; 0.25 or 2.52 mg/kg norbaeocystin
Duration 1 week and 3 weeks after exposure
Topics Psilocybin
Keywords Actinobacteria Pharmacology Microbiome Tryptamines
Citations 5
Key finding Psilocybin and norbaeocystin caused dose- and time-dependent changes in gut bacterial abundance at the phylum level, including increases in Verrucomicrobia and Actinobacteria and decreases in Proteobacteria, without affecting overall microbiome diversity.

Abstract

Background Psilocybin and related tryptamines have come into the spotlight in recent years as potential therapeutics for depression. Research on the mechanisms of these effects has historically focused on the direct effects of these drugs on neural processes. However, in addition to such neural effects, alterations in peripheral physiology may also contribute to their therapeutic effects. In particular, substantial support exists for a gut microbiome-mediated pathway for the antidepressant efficacy of other drug classes, but no prior studies have determined the effects of tryptamines on microbiota. Methods To address this gap, in this preliminary study, male Long Evans rats were treated with varying dosages of oral psilocybin (0.2 or 2 mg/kg), norbaeocystin (0.25 or 2.52 mg/kg), or vehicle and their fecal samples were collected 1 week and 3 weeks after exposure for microbiome analysis using integrated 16S ribosomal DNA sequencing to determine gut microbiome composition. Results We found that although treatment with neither psilocybin nor norbaeocystin significantly affected overall microbiome diversity, it did cause significant dose- and time-dependent changes in bacterial abundance at the phylum level, including increases in Verrucomicrobia and Actinobacteria , and decreases in Proteobacteria . Conclusion and Implications These preliminary findings support the idea that psilocybin and other tryptamines may act on the gut microbiome in a dose- and time-dependent manner, potentially identifying a novel peripheral mechanism for their antidepressant activity. The results from this preliminary study also suggest that norbaeocystin may warrant further investigation as a potential antidepressant, given the similarity of its effects to psilocybin.

Explore topics

Comments

No comments yet.

Log in to comment