OPEN Foundation

Day: 20 April 2015

Ketamine-induced modulation of the thalamo-cortical network in healthy volunteers as a model for schizophrenia

Abstract

BACKGROUND:

Schizophrenia has been associated with disturbances of thalamic functioning. In the light of recent evidence suggesting a significant impact of the glutamatergic system on key symptoms of schizophrenia, we assessed whether the modulation of the glutamatergic system via blockage of the NMDA-receptor might lead to changes of thalamic functional connectivity.

METHODS:

Based on the “ketamine-model” of psychosis we investigated changes in cortico-thalamic functional connectivity by intravenous ketamine challenge during a 55 minutes resting-state scan. 30 healthy volunteers were measured with pharmacological functional magnetic resonance imaging (fMRI) using a double-blind, randomized, placebo-controlled, crossover design.

RESULTS:

Functional connectivity analysis revealed significant ketamine-specific changes within the “thalamus hub network”, more precisely an increase of cortico-thalamic connectivity of the somatosensory and temporal cortex.

CONCLUSIONS:

Our results indicate that changes of thalamic functioning as described for schizophrenia can be partly mimicked by NMDA-receptor blockage. This adds substantial knowledge about the neurobiological mechanisms underlying the profound changes of perception and behaviour during the application of NMDA-receptor antagonists.

Höflich, A., Hahn, A., Küblböck, M., Kranz, G. S., Vanicek, T., Windischberger, C., … & Guertel, W. (2015). Ketamine-induced modulation of the thalamo-cortical network in healthy volunteers as a model for schizophrenia. The international journal of neuropsychopharmacology. http://dx.doi.org/10.1093/ijnp/pyv040
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A Note on the Docking of some Hallucinogens to the 5-HT2A Receptor

Abstract

The activation of 5-HT2A receptors by the binding of some ligands produces several altered states of consciousness in humans. The knowledge of the manner a hallucinogen interacts with this receptor should be the first step to know how these chemicals transfer information to produce the final biological effect(s). Here, we present the results of a docking study of some hallucinogens (LSD, mescaline, DMT, 25I-NBOMe and others), to a recent model of the 5-HT2A receptor. The rigid and flexible residues approach es were employed. The best approach is to allow conformational flexibility to the residues of the binding site. The Val-156 residue appears to be common to all flexible docking results and all molecules interact with the transmembrane 3 helix. The other interactions are particular to each molecule.

Gómez-Jeria, J. S., & Robles-Navarro, A. (2015). A Note on the Docking of some Hallucinogens to the 5-HT2A Receptor. Journal of Computational Methods in Molecular Design, 5(1), 45-57.
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30 April - Q&A with Rick Strassman

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