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Psilocybin induces acute and persisting alterations in immune status and the stress response in healthy volunteers

Natasha L. Mason, Attila Szabo, Kim P. C. Kuypers, Pablo Mallaroni, R. de la Torre Fornell, Johannes T. Reckweg, Desmond H. Y. Tse, Nadia R. P. W. Hutten, Amanda Feilding, Johannes G. Ramaekers

medRxiv November 1, 2022 preprint DOI: 10.1101/2022.10.31.22281688 via OpenAlex

Summary

AI-generated from the abstract

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.

Study at a glance

Characteristics Placebo-controlled, parallel group design
Sample size 60
Population Healthy participants
Intervention Psilocybin
Dose 0.17 mg/kg
Duration 7-day follow-up
Topics Psilocybin
Keywords Placebo Immune system Hallucinogen Internal medicine
Citations 6
Key finding Psilocybin acutely reduced TNF-α and persistently reduced IL-6 and CRP, and blunted the cortisol stress response, with immune changes linked to hippocampal glutamate and positive mood effects.

Abstract

Abstract Patients characterized by stress-related disorders such as depression display elevated circulating concentrations of pro-inflammatory cytokines and a hyperactive HPA axis. Psychedelics are demonstrating promising results in treatment of such disorders, however the mechanisms of their therapeutic effects are still unknown. To date the evidence of acute and persisting effects of psychedelics on immune functioning, HPA axis activity in response to stress, and associated psychological outcomes is preliminary. To address this, we conducted a placebo-controlled, parallel group design comprising of 60 healthy participants who received either placebo (n=30) or 0.17 mg/kg psilocybin (n=30). Blood samples were taken to assess acute changes in immune status, and 7 days after drug administration. Seven days’ post-administration, participants in each treatment group were further subdivided: 15 underwent a stress induction protocol, and 15 underwent a control protocol. Ultra-high field magnetic resonance spectroscopy was used to assess whether acute changes in glutamate or glial activity were associated with changes in immune functioning. Finally, questionnaires assessed persisting self-report changes in mood and social behavior. Psilocybin immediately reduced concentrations of the pro-inflammatory cytokine tumor necrosis factor-α (TNF-α), while other inflammatory markers (interleukin (IL)-1α, IL-1β, IL-6, and C-reactive protein (CRP)) remained unchanged. Seven days later, TNF-α concentrations returned to baseline, while IL-6 and CRP concentrations were persistently reduced in the psilocybin group. Changes in the immune profile were related to acute neurometabolic activity as acute reductions in TNF-α were linked to lower concentrations of glutamate in the hippocampus. Additionally, the more of a reduction in IL-6 and CRP seven days after psilocybin, the more persisting positive mood and social effects participants reported. Regarding the stress response, after a psychosocial stressor, psilocybin blunted the cortisol response compared to placebo. Such acute and persisting changes may contribute to the psychological and therapeutic effects of psilocybin demonstrated in ongoing patient trials.

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