2014
N-Methyl-D-Aspartate Receptor Antagonist Effects on Prefrontal Cortical Connectivity Better Model Early Than Chronic Schizophrenia
Anticevic A, Corlett PR, Cole MW, Savic A, Gancsos M, Tang Y, Repovs G, Murray JD, Driesen NR, Morgan PT, Xu K, Wang F, Krystal JH. N-Methyl-D-Aspartate Receptor Antagonist Effects on Prefrontal Cortical Connectivity Better Model Early Than Chronic Schizophrenia. Biological Psychiatry 2014, 77: 569-580. PMID: 25281999, DOI: 10.1016/j.biopsych.2014.07.022.Peer-Reviewed Original ResearchConceptsHealthy volunteersFunctional connectivityKetamine effectsChronic schizophreniaIllness progressionChronic illnessHigh riskRecent pharmacologic studiesReceptor antagonist effectsAspartate glutamate receptorsStages of schizophreniaCourse of schizophreniaGlutamate dysfunctionPharmacologic modelsPrefrontal cortex functionIllness stageNMDAR antagonistsFunctional dysconnectivityGlutamate receptorsPharmacologic studiesHealthy subjectsSchizophrenia onsetFunctional alterationsDevelopment of therapeuticsAntagonist effects
1999
Therapeutic Implications of the Hyperglutamatergic Effects of NMDA Antagonists
Krystal J, Belger A, D'Souza D, Anand A, Charney D, Aghajanian G, Moghaddam B. Therapeutic Implications of the Hyperglutamatergic Effects of NMDA Antagonists. Neuropsychopharmacology 1999, 21: s143-s157. DOI: 10.1016/s0893-133x(99)00102-5.Peer-Reviewed Original ResearchHealthy human subjectsNMDA antagonist effectsNMDA antagonistsClinical studiesMetabotropic glutamate receptor agonistN-methyl-D-aspartate (NMDA) subtypeD2 receptor blockadeGlutamate receptor agonistsD2 receptor stimulationDopamine 2 receptorNovel pharmacologic strategiesEffects of ketaminePathophysiology of schizophreniaCourse of schizophreniaNovel pharmacotherapeutic strategiesHuman subjectsHyperglutamatergic stateSerotonin 2AGlutamate neuronsGlutamate releaseCerebral cortexPharmacologic strategiesCurrent antipsychoticsPharmacotherapeutic strategiesSubanesthetic doses