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Details

Autor(en) / Beteiligte
Titel
Ketamine decreases resting state functional network connectivity in healthy subjects: implications for antidepressant drug action
Ist Teil von
  • PloS one, 2012-09, Vol.7 (9), p.e44799-e44799
Ort / Verlag
United States: Public Library of Science
Erscheinungsjahr
2012
Link zum Volltext
Quelle
Electronic Journals Library - Freely accessible e-journals
Beschreibungen/Notizen
  • Increasing preclinical and clinical evidence underscores the strong and rapid antidepressant properties of the glutamate-modulating NMDA receptor antagonist ketamine. Targeting the glutamatergic system might thus provide a novel molecular strategy for antidepressant treatment. Since glutamate is the most abundant and major excitatory neurotransmitter in the brain, pathophysiological changes in glutamatergic signaling are likely to affect neurobehavioral plasticity, information processing and large-scale changes in functional brain connectivity underlying certain symptoms of major depressive disorder. Using resting state functional magnetic resonance imaging (rsfMRI), the "dorsal nexus "(DN) was recently identified as a bilateral dorsal medial prefrontal cortex region showing dramatically increased depression-associated functional connectivity with large portions of a cognitive control network (CCN), the default mode network (DMN), and a rostral affective network (AN). Hence, Sheline and colleagues (2010) proposed that reducing increased connectivity of the DN might play a critical role in reducing depression symptomatology and thus represent a potential therapy target for affective disorders. Here, using a randomized, placebo-controlled, double-blind, crossover rsfMRI challenge in healthy subjects we demonstrate that ketamine decreases functional connectivity of the DMN to the DN and to the pregenual anterior cingulate (PACC) and medioprefrontal cortex (MPFC) via its representative hub, the posterior cingulate cortex (PCC). These findings in healthy subjects may serve as a model to elucidate potential biomechanisms that are addressed by successful treatment of major depression. This notion is further supported by the temporal overlap of our observation of subacute functional network modulation after 24 hours with the peak of efficacy following an intravenous ketamine administration in treatment-resistant depression.
Sprache
Englisch
Identifikatoren
ISSN: 1932-6203
eISSN: 1932-6203
DOI: 10.1371/journal.pone.0044799
Titel-ID: cdi_plos_journals_1326550734
Format
Schlagworte
Adult, Affective disorders, Antidepressants, Antidepressive Agents - pharmacology, Biology, Biomedical engineering, Brain, Brain Mapping, Brain research, Clinical trials, Cognitive ability, Cortex (cingulate), Cortex (temporal), Cross-Over Studies, Data processing, Depression (Mood disorder), Depression, Mental, Depressive Disorder, Major - drug therapy, Depressive Disorder, Major - pathology, Dosage and administration, Double-Blind Method, Drug therapy, Emotional disorders, Engineering, Female, Functional magnetic resonance imaging, Functional plasticity, Glutamatergic transmission, Glutamic acid receptors (ionotropic), Gyrus Cinguli - anatomy & histology, Gyrus Cinguli - drug effects, Gyrus Cinguli - physiology, Humans, Information processing, Injections, Intravenous, Intervention, Intravenous administration, Ketamine, Ketamine - pharmacology, Laboratories, Magnetic resonance, Magnetic Resonance Imaging, Male, Medical imaging, Medicine, Mental depression, Middle Aged, N-Methyl-D-aspartic acid receptors, Neural networks, Neural Pathways - anatomy & histology, Neural Pathways - drug effects, Neural Pathways - physiology, Neurobiology, Neuroimaging, Neurophysiology, Neurosciences, NMR, Nuclear magnetic resonance, Physiology, Placebos, Prefrontal cortex, Prefrontal Cortex - anatomy & histology, Prefrontal Cortex - drug effects, Prefrontal Cortex - physiology, Psychiatry, Septal Nuclei - anatomy & histology, Septal Nuclei - drug effects, Septal Nuclei - physiology, Signaling, Studies

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