Regulation of synaptic plasticity in a schizophrenia model

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Abstract

The pathology of schizophrenia is characterized by increased hippocampal activity at baseline and during auditory hallucinations. Animal-model studies in which the flow of activity to the hippocampus is increased through decreased amygdalar GABAergic inhibition have shown alterations of hippocampal circuitry similar to schizophrenia, but the functional importance of this phenomenon remains unclear. We provide evidence of decreased hippocampal feed-forward and tonic GABA-mediated inhibition in this animal model, complementing increased hippocampal activity seen in neuroimaging and postmortem studies. We demonstrate that GABA dysfunction increases long-term potentiation through activation of the cholinergic system, offering a new mechanism for pharmacological strategies of this disorder. © 2005 by The National Academy of Sciences of the USA.

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Gisabella, B., Bolshakov, V. Y., & Benes, F. M. (2005). Regulation of synaptic plasticity in a schizophrenia model. Proceedings of the National Academy of Sciences of the United States of America, 102(37), 13301–13306. https://doi.org/10.1073/pnas.0506034102

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