Probing the antidepressant potential of psilocybin: integrating insight from human research and animal models towards an understanding of neural circuit mechanisms.
Juliet Meccia, Joëlle Lopez, Rosemary C. Bagot
Psychopharmacology 2023 DOI: 10.1007/s00213-022-06297-0 (opens in new tab)
Study at a glance
AI-extracted from the abstract| Characteristics | Review Peer reviewed |
|---|---|
| Topics | Depression Psilocybin |
| Keywords | Affect Cognition Medial prefrontal cortex Preclinical models Psychedelics Psilocybin magic mushrooms Hallucinogens Mood disorders Antidepressants Neuroscience brain connectivity Neural networks |
| Citations | 14 |
| Key findings | Acute modulation of prefrontal cortex circuits by psilocybin may contribute to long-term structural and functional alterations that mediate antidepressant effects. |
Abstract
Interest in the therapeutic potential of serotonergic psychedelic compounds including psilocybin has surged in recent years. While human clinical research suggests psilocybin holds promise as a rapid and long-lasting antidepressant, little is known about how its acute mechanisms of action mediate enduring alterations in cognition and behavior. Human neuroimaging studies point to both acute and sustained modulation of functional connectivity in key cortically dependent brain networks. Emerging evidence in preclinical models highlights the importance of psilocybin-induced neuroplasticity and alterations in the prefrontal cortex (PFC). Overviewing research in both humans and preclinical models suggests avenues to increase crosstalk between fields. We review how acute modulation of PFC circuits may contribute to long-term structural and functional alterations to mediate antidepressant effects. We highlight the potential for preclinical circuit and behavioral neuroscience approaches to provide basic mechanistic insight into how psilocybin modulates cognitive and affective neural circuits to support further development of psilocybin as a promising new treatment for depression.