The Emerging Role of Glutamate in the Pathophysiology and Treatment of Schizophrenia
Новая роль глутамата в патофизиологии и лечении шизофрении
2001-09-01
SCID: 54.1/evdg8shz
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NMDA receptorcognitive impairmentsglutamatergic neurotransmissionnegative symptomsschizophrenia pathophysiology
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Abstract (AI)
OBJECTIVE: Research has implicated dysfunction of glutamatergic neurotransmission in the pathophysiology of schizophrenia. This review evaluates evidence from preclinical and clinical studies that brain glutamatergic neurotransmission is altered in schizophrenia, may affect symptom expression, and is modulated by antipsychotic drugs. METHOD: A comprehensive review of scientific articles published over the last decade that address the role of glutamate in the pathophysiology of schizophrenia was carried out. RESULTS: Glutamatergic neurons are the major excitatory pathways linking the cortex, limbic system, and thalamus, regions that have been implicated in schizophrenia. Postmortem studies have revealed alterations in pre- and postsynaptic markers for glutamatergic neurons in several brain regions in schizophrenia. The N-methyl-D-aspartic acid (NMDA) subtype of glutamate receptor may be particularly important as blockade of this receptor by the dissociative anesthetics reproduces in normal subjects the symptomatic manifestations of schizophrenia, including negative symptoms and cognitive impairments, and increases dopamine release in the mesolimbic system. Agents that indirectly enhance NMDA receptor function via the glycine modulatory site reduce negative symptoms and variably improve cognitive functioning in schizophrenic subjects receiving typical antipsychotics. CONCLUSIONS: Dysfunction of glutamatergic neurotransmission may play an important role in the pathophysiology of schizophrenia, especially of the negative symptoms and cognitive impairments associated with the disorder, and is a promising target for drug development.
Key Findings
1
Evidence from preclinical, clinical, and postmortem studies indicates altered glutamatergic neurotransmission in multiple brain regions affected by schizophrenia.
2
Glutamatergic dysfunction may contribute particularly to schizophrenia’s negative and cognitive symptoms and represents a promising target for drug development.
3
Indirect enhancement of NMDA receptor function through the glycine modulatory site reduces negative symptoms and variably improves cognition in patients receiving typical antipsychotics.
4
NMDA receptor blockade reproduces schizophrenia-like negative symptoms and cognitive impairments in healthy subjects while increasing mesolimbic dopamine release.
Research Object
Glutamatergic neurotransmission in schizophrenia
Research Subject
Its dysfunction, effects on negative symptoms and cognitive impairments, and modulation by antipsychotic and NMDA-enhancing agents
Publication Details
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2001-09-01
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