Translational Psychiatry
April 8, 2021
Natasha L. Mason, Kim P. C. Kuypers, Johannes T. Reckweg et al.
132 citations
A double-blind, placebo-controlled experiment with 0.17 mg/kg psilocybin shows that the drug affects creative thinking in time-dependent and task-specific ways. Immediately after consumption, psilocybin increased spontaneous creative insights but decreased deliberate, task-based creativity. Seven days later, participants generated more novel ideas. Brain imaging revealed that both acute and persisting effects were predicted by connectivity within and between networks of the default mode network. These results support historical claims that psychedelics can influence aspects of the creative process and may serve as tools for investigating creativity and its neural basis.
Brain Behavior and Immunity
September 7, 2023
Natasha L. Mason, Attila Szabo, Kim P. C. Kuypers et al.
83 citations
A single dose of psilocybin (0.17 mg/kg) in 60 healthy participants immediately reduced the pro-inflammatory cytokine tumor necrosis factor-α (TNF-α), while interleukin-1β, interleukin-6 (IL-6), and C-reactive protein (CRP) were unchanged. Seven days later, TNF-α returned to baseline, but IL-6 and CRP were persistently reduced. Greater reductions in IL-6 and CRP at seven days correlated with more positive mood and social effects. Acute TNF-α reductions linked to lower hippocampal glutamate. Psilocybin did not significantly alter the stress response to a psychosocial stressor. The findings suggest psilocybin has persisting anti-inflammatory effects that may relate to its therapeutic benefits.
Addiction Biology
December 22, 2019
Natasha L. Mason, Eef L. Theunissen, Nadia R. P. W. Hutten et al.
58 citations
Regular cannabis users develop tolerance to the drug's impairing and rewarding effects, but the underlying brain changes are unclear. In a double-blind, placebo-controlled study, 12 occasional and 12 chronic cannabis users received acute doses of cannabis (300 μg/kg delta-9-tetrahydrocannabinol) or placebo. In occasional users, cannabis decreased functional connectivity and increased striatal glutamate levels in reward circuitry, linked to greater subjective high and worse attention performance. Chronic users showed none of these changes, indicating reduced responsiveness of reward circuitry to cannabis intoxication, suggesting a pharmacodynamic mechanism for tolerance development.
medRxiv
November 1, 2022
Natasha L. Mason, Attila Szabo, Kim P. C. Kuypers et al.
6 citations
preprint
Psilocybin immediately reduced concentrations of the pro-inflammatory cytokine tumor necrosis factor-α (TNF-α), while other inflammatory markers (interleukin-1α, IL-1β, IL-6, and C-reactive protein) remained unchanged. Seven days later, TNF-α returned to baseline, but IL-6 and CRP were persistently reduced in the psilocybin group. Changes in immune profile were linked to acute neurometabolic activity: reductions in TNF-α were associated with lower hippocampal glutamate concentrations. Greater reductions in IL-6 and CRP at seven days correlated with persisting positive mood and social effects. Psilocybin also blunted the cortisol response to a psychosocial stressor compared to placebo.
bioRxiv (Cold Spring Harbor Laboratory)
July 19, 2019
Natasha L. Mason, Eef L. Theunissen, Nadia R. P. W. Hutten et al.
4 citations
preprint
Regular cannabis users develop tolerance to the drug's impairing and rewarding effects, but the underlying brain changes are unclear. In a double-blind, randomized, placebo-controlled crossover study, 12 occasional and 12 chronic cannabis users received acute doses of cannabis (300 μg/kg THC) and placebo, then underwent ultra-high field fMRI and magnetic resonance spectroscopy. In occasional users, cannabis caused decreased functional connectivity and increased striatal glutamate concentrations in reward circuitry, linked to greater subjective high and worse sustained attention. These changes were absent in chronic users, suggesting reduced responsiveness of reward circuitry to cannabis intoxication and a pharmacodynamic mechanism for tolerance development.
Biological Psychiatry
October 21, 2025
Katharina S Lege, Pablo Mallaroni, Sepehr Mortaheb et al.
1 citation
Acute cannabis intoxication alters brain network dynamics, reducing the occurrence of a hyperconnected brain state in both occasional and chronic users. Chronic users show persisting neuroadaptations, including decreased brain network segregation, independent of intoxication. Attentional performance is most impaired in occasional users, suggesting tolerance develops in chronic users. Both acute and persistent effects on brain dynamics correlate with spatial CB1 receptor density. The findings indicate that cannabis-induced cognitive impairment depends on individual neuroadaptations and receptor density, relevant for therapeutic, legal, and societal contexts.