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Acute effects of intranasal esketamine application on thalamic structures in healthy individuals.

Benjamin Spurny-Dworak, Thomas Liebe, Samantha Graf, Gregor Dörl, Peter Stöhrmann, Elisa Briem, Manfred Klöbl, Clemens Schmidt, Marie Spies, Rupert Lanzenberger

The international journal of neuropsychopharmacology June 6, 2025 DOI: 10.1093/ijnp/pyaf037 via PubMed

Summary

AI-generated from the abstract

A single subanesthetic dose of intranasal esketamine rapidly increases the volume of specific right thalamic structures in healthy young adults. In a placebo-controlled crossover study with 26 participants, magnetic resonance imaging revealed significant enlargement of the right thalamus, the pulvinar anterior nucleus, and the right mediodorsal lateral parvocellular nucleus after esketamine administration. These structural changes occurred in thalamic regions that relay visual information to the cortex, suggesting that ketamine's effects on visual perception may arise from rapid adaptations in these brain areas. The findings highlight the thalamus as a key target for modeling schizophrenia symptoms and understanding ketamine's mechanism of action.

Study at a glance

Characteristics Randomized crossover placebo-controlled study Peer reviewed
Sample size 26
Population Healthy individuals aged 24.3 ± 3 years (14 female)
Intervention Esketamine
Dose 56 mg esketamine (2x Spravato 28 mg nasal sprays)
Topics Depression Ketamine
Keywords Intranasal Schizophrenia Structural
Citations 2
Key finding Intranasal esketamine significantly increased volume in the right thalamus, pulvinar anterior nucleus, and right mediodorsal lateral parvocellular nucleus, suggesting rapid structural adaptations in visual relay stations.

Abstract

The N-methyl-D-aspartate receptor antagonist ketamine has found broad application in the field of psychiatry. Due to its rapid antidepressant and anti-suicidal properties, it is used as a treatment for major depressive disorder. Furthermore, ketamine evokes dissociative and psychotropic states, which allows the modeling of schizophrenic symptoms. The thalamus, a main target for ketamine's actions, consists of different nuclei responsible for sensory gating, attention, and consciousness. Thus, we here examine the effects of intranasally applied ketamine on thalamic structures in healthy individuals in a cross-over placebo-controlled study. Twenty-six subjects (14 female, mean age ± SD = 24.3 ± 3 years) underwent two magnetic resonance imaging scans on a 3T system immediately after receiving a subanesthetic dose of 56 mg esketamine (2x Spravato 28mg nasal sprays) or placebo in a cross-over study design. FreeSurfer was used for morphological analysis of the thalamus and its distinct nuclei based on derived T1-weighted MPRAGE images. Repeated measure analyses of covariance across the whole group, regardless of measurement order, and the subgroup, receiving placebo in the first scan, were performed for the thalamus and all its nuclei, for each hemisphere, separately. Post hoc tests on thalamic nuclei were done in an exploratory manner. We found a significant volume increase in the right thalamus (pcorr. = .048), the pulvinar anterior nucleus (p = .048), and the right mediodorsal lateral parvocellular (p = .034) after esketamine in the subsample receiving placebo application in the first scan. Our results suggest rapid structural adaptations in right thalamic structures which serve as relay stations for the visual cortex. This emphasizes the thalamus' role in visual perception after esketamine and its importance as a target to model schizophrenic symptoms.

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