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Spatiotemporal mapping of brain organisation following the administration of 2C-B and psilocybin

Pablo Mallaroni, S. Parker Singleton, Natasha L. Mason, Tomáš Hájek, Johannes G. Ramaekers

Molecular Psychiatry February 3, 2026 DOI: 10.1038/s41380-026-03447-0 via OpenAlex

Summary

AI-generated from the abstract

The psychedelic phenethylamine 2C-B produces less dysphoria and subjective impairment than the tryptamine psilocybin. In 22 healthy volunteers, 7 Tesla resting-state functional MRI mapped acute effects of matched doses of 20 mg 2C-B, 15 mg psilocybin, and placebo. Both compounds selectively reduced intranetwork static functional connectivity while broadly increasing between-network and subcortical-cortical connectivity. Compared to psilocybin, 2C-B showed less pronounced reductions in between-network dynamic connectivity variability but elevated transmodal static connectivity. Both increased brain complexity similarly. PET density modeling linked neural effects to differences in monoaminergic transporter and serotonergic receptor binding beyond 5-HT2A. Behavioral markers of psychedelic effects reflected decoupling of the transmodal axis of functional brain organization.

Study at a glance

Characteristics Within-subjects, double-blind, placebo-controlled crossover design Peer reviewed
Sample size 22
Population Healthy volunteers
Interventions 2C-B psilocybin placebo
Dose 20 mg 2C-B, 15 mg psilocybin
Topics Neuroplasticity Psilocybin Serotonin
Keywords Dysphoria Hallucinogen Monoaminergic
Key finding 2C-B and psilocybin both alter functional brain connectivity, but 2C-B produces less disruption of between-network dynamic connectivity and greater transmodal static connectivity than psilocybin.

Abstract

As psychedelic-assisted psychotherapy gains momentum, clinical investigation of next-generation psychedelics may lead to novel compounds tailored for specific populations. 2,5-dimethoxy-4-bromophenethylamine (2C-B) is a psychedelic phenethylamine reported to produce less dysphoria and subjective impairment than the psychedelic tryptamine psilocybin. Despite its popularity among recreational users and distinct pharmacodynamics, the neural correlates of 2C-B remain unexplored. Using 7 T resting-state functional MRI in 22 healthy volunteers, we mapped out the acute effects of matched doses of 20 mg 2C-B, 15 mg psilocybin and placebo across spatiotemporal benchmarks of functional brain organisation. In a within-subjects, double-blind, placebo-controlled crossover design, we evaluated the neuropharmacological and neurobehavioural correlates of an array of connectivity measures - including static (sFC) and global connectivity (gFC), dynamic connectivity variability (dFC), and spontaneous brain complexity. Compared to placebo, 2C-B and psilocybin selectively reduced intranetwork sFC, while broadly increasing between-network and subcortical-cortical connectivity. Compared to psilocybin, 2C-B exhibited less pronounced reductions in between-network dFC but elicited elevations in transmodal sFC. Both compounds yielded spatially divergent increases in gFC yet produced similar increases in brain complexity. Using PET density modelling, the spatial distribution of neural effects aligned with documented differences in monoaminergic transporter and serotonergic receptor binding affinity beyond 5-HT2A, highlighting the role of pharmacology in shaping functional dynamics. Lastly, we show behavioural markers of psychedelic effects are reflected by the decoupling of the transmodal axis of functional brain organisation. Together, our findings highlight 2C-B as a useful new addition to the study of psychedelic neuroscience and may motivate new pharmacotherapy strategies.

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