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Short term changes in the proteome of human cerebral organoids induced by 5-MeO-DMT.

Vanja Dakic, Juliana Minardi Nascimento, Rafaela Costa Sartore, Renata de Moraes Maciel, Draulio B de Araujo, Sidarta Ribeiro, Daniel Martins-de-Souza, Stevens K Rehen

Scientific reports October 9, 2017 DOI: 10.1038/s41598-017-12779-5 via PubMed

Summary

AI-generated from the abstract

5-MeO-DMT, a serotonin-like molecule found in traditional Amerindian medicine, alters the protein landscape of human cerebral organoids. Out of 6,728 identified proteins, 934 were differentially expressed after treatment. Computational analysis confirmed previously reported anti-inflammatory effects and revealed modulation of proteins involved in long-term potentiation, dendritic spine formation, cellular protrusion, microtubule dynamics, and cytoskeletal reorganization. These findings provide initial molecular insights into how this compound may affect human brain metabolism.

Study at a glance

Characteristics Experimental study Peer reviewed
Population Human cerebral organoids
Intervention 5-MeO-DMT
Topics Neuroplasticity
Keywords Psychedelic compounds psychedelics Serotonin-like molecule Psychoactive compounds Neuroscience brain health Brain activity
Citations 137
Key finding 5-MeO-DMT treatment differentially expressed 934 proteins in human cerebral organoids, with in silico analysis revealing modulatory effects on proteins associated with long-term potentiation, dendritic spine formation, and cytoskeletal reorganization.

Abstract

Dimethyltryptamines are entheogenic serotonin-like molecules present in traditional Amerindian medicine recently associated with cognitive gains, antidepressant effects, and changes in brain areas related to attention. Legal restrictions and the lack of adequate experimental models have limited the understanding of how such substances impact human brain metabolism. Here we used shotgun mass spectrometry to explore proteomic differences induced by 5-methoxy-N,N-dimethyltryptamine (5-MeO-DMT) on human cerebral organoids. Out of the 6,728 identified proteins, 934 were found differentially expressed in 5-MeO-DMT-treated cerebral organoids. In silico analysis reinforced previously reported anti-inflammatory actions of 5-MeO-DMT and revealed modulatory effects on proteins associated with long-term potentiation, the formation of dendritic spines, including those involved in cellular protrusion formation, microtubule dynamics, and cytoskeletal reorganization. Our data offer the first insight about molecular alterations caused by 5-MeO-DMT in human cerebral organoids.

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