A unified model of ketamine's dissociative and psychedelic properties.
Miriam Marguilho, Inês Figueiredo, Pedro Castro-Rodrigues
J Psychopharmacol December 17, 2022 DOI: 10.1177/02698811221140011 via PubMed Central
Summary
AI-generated from the abstractKetamine, an NMDA antagonist used for depression, produces rapid but transient antidepressant effects primarily through acute modulation of reward circuits and a sub-acute increase in neuroplasticity. Its dissociative and psychedelic properties arise from dose- and context-dependent disruption of large-scale functional networks: disruption of the salience network accounts for dissociation, while disruption of the default-mode network accounts for the psychedelic state. In psychedelic-assisted psychotherapy, relaxing high-level beliefs with support may allow revision of pathological self-representation models, with neuroplasticity playing a permissive role. This multi-level account suggests leveraging ketamine's psychedelic properties to enhance long-term benefits.
Study at a glance
| Characteristics | Theoretical or philosophical paper Peer reviewed |
|---|---|
| Keywords | Neuroscience Psychopharmacology Mental health Consciousness research Ketamine therapy |
| Citations | 57 |
| Key finding | Ketamine's antidepressant effects are driven by acute modulation of reward circuits and sub-acute neuroplasticity, while its dissociative and psychedelic states result from disruption of the salience and default-mode networks, respectively. |
Abstract
Ketamine is an N-methyl-d-aspartate antagonist which is increasingly being researched and used as a treatment for depression. In low doses, it can cause a transitory modification in consciousness which was classically labelled as ‘dissociation’. However, ketamine is also commonly classified as an atypical psychedelic and it has been recently reported that ego dissolution experiences during ketamine administration are associated with greater antidepressant response. Neuroimaging studies have highlighted several similarities between the effects of ketamine and those of serotonergic psychedelics in the brain; however, no unified account has been proposed for ketamine’s multi-level effects – from molecular to network and psychological levels. Here, we propose that the fast, albeit transient, antidepressant effects observed after ketamine infusions are mainly driven by its acute modulation of reward circuits and sub-acute increase in neuroplasticity, while its dissociative and psychedelic properties are driven by dose- and context-dependent disruption of large-scale functional networks. Computationally, as nodes of the salience network (SN) represent high-level priors about the body (‘minimal’ self) and nodes of the default-mode network (DMN) represent the highest-level priors about narrative self-experience (‘biographical’ self), we propose that transitory SN desegregation and disintegration accounts for ketamine’s ‘ dissociative’ state, while transitory DMN desegregation and disintegration accounts for ketamine’s ‘ psychedelic’ state. In psychedelic-assisted psychotherapy, a relaxation of the highest-level beliefs with psychotherapeutic support may allow a revision of pathological self-representation models, for which neuroplasticity plays a permissive role. Our account provides a multi-level rationale for using the psychedelic properties of ketamine to increase its long-term benefits.