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Proliferative Effects of the Psychedelic N,N-Dimethyltryptamine (DMT) in Human Neural Stem Cells.

José Alexandre Salerno, Elizabeth R. Dominguez, Karina Karmirian, Breno A.b.m.s. Arrais, Juliano Alves, Giovanna Erjautz, Kennedy Kroening, Leticia R. Q. Souza, Isis M. Ornelas, Stevens K. Rehen

ACS Chemical Neuroscience July 9, 2026 DOI: 10.1021/acschemneuro.6c00209 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics In vitro experimental study Peer reviewed
Population Human iPSC-derived neural stem cells
Intervention DMT
Dose concentration-dependent, half-maximal effect at 59.7 nM
Duration 24 h treatment; washout followed by neurosphere formation up to day 10
Topics 5-MeO-DMT DMT
Keywords Bdnf N,N-Dimethyltryptamine DMT Cell cycle Neurosphere
Key findings 24-hour DMT treatment increased proliferation of human neural stem cells in a concentration-dependent manner and upregulated G1 cell-cycle regulators and BDNF expression.

Abstract

The serotonergic psychedelic N,N-dimethyltryptamine (DMT) produces rapid antidepressant effects in preclinical and early clinical studies. Therapeutic benefits have been linked to sustained neural plasticity, including adult neurogenesis in rodents. Whether brief DMT exposure engages proliferative responses in human neural stem cells (NSCs) remains unresolved. Using human iPSC-derived NSCs, we found that 24 h DMT treatment increased proliferation in a concentration-dependent manner (half-maximal effect at 59.7 nM) and upregulated G1 cell-cycle regulators. DMT also shifted trophic gene expression, decreasing neurotrophin-3 while increasing nerve growth factor and brain-derived neurotrophic factor (BDNF) transcripts and intracellular BDNF protein. After washout, DMT-primed NSCs formed larger neurospheres, with progenitor and early neuronal marker composition matching controls by day 10. These findings demonstrate that brief DMT exposure is sufficient to engage proliferative and neurotrophin-associated responses in human NSCs at concentrations consistent with those reported for DMT-induced plasticity across other systems.