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Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes

BACKGROUND: Growing compelling evidence from clinical and preclinical studies has demonstrated the primary role of alterations of glutamatergic transmission in cortical and limbic areas in the pathophysiology of mood disorders. Chronic antidepressants have been shown to dampen endogenous glutamate r...

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Autores principales: Milanese, Marco, Tardito, Daniela, Musazzi, Laura, Treccani, Giulia, Mallei, Alessandra, Bonifacino, Tiziana, Gabriel, Cecilia, Mocaer, Elisabeth, Racagni, Giorgio, Popoli, Maurizio, Bonanno, Giambattista
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3734058/
https://www.ncbi.nlm.nih.gov/pubmed/23895555
http://dx.doi.org/10.1186/1471-2202-14-75
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author Milanese, Marco
Tardito, Daniela
Musazzi, Laura
Treccani, Giulia
Mallei, Alessandra
Bonifacino, Tiziana
Gabriel, Cecilia
Mocaer, Elisabeth
Racagni, Giorgio
Popoli, Maurizio
Bonanno, Giambattista
author_facet Milanese, Marco
Tardito, Daniela
Musazzi, Laura
Treccani, Giulia
Mallei, Alessandra
Bonifacino, Tiziana
Gabriel, Cecilia
Mocaer, Elisabeth
Racagni, Giorgio
Popoli, Maurizio
Bonanno, Giambattista
author_sort Milanese, Marco
collection PubMed
description BACKGROUND: Growing compelling evidence from clinical and preclinical studies has demonstrated the primary role of alterations of glutamatergic transmission in cortical and limbic areas in the pathophysiology of mood disorders. Chronic antidepressants have been shown to dampen endogenous glutamate release from rat hippocampal synaptic terminals and to prevent the marked increase of glutamate overflow induced by acute behavioral stress in frontal/prefrontal cortex. Agomelatine, a new antidepressant endowed with MT1/MT2 agonist and 5-HT(2C) serotonergic antagonist properties, has shown efficacy at both preclinical and clinical levels. RESULTS: Chronic treatment with agomelatine, or with the reference drug venlafaxine, induced a marked decrease of depolarization-evoked endogenous glutamate release from purified hippocampal synaptic terminals in superfusion. No changes were observed in GABA release. This effect was accompanied by reduced accumulation of SNARE protein complexes, the key molecular effector of vesicle docking, priming and fusion at presynaptic membranes. CONCLUSIONS: Our data suggest that the novel antidepressant agomelatine share with other classes of antidepressants the ability to modulate glutamatergic transmission in hippocampus. Its action seems to be mediated by molecular mechanisms located on the presynaptic membrane and related with the size of the vesicle pool ready for release.
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spelling pubmed-37340582013-08-06 Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes Milanese, Marco Tardito, Daniela Musazzi, Laura Treccani, Giulia Mallei, Alessandra Bonifacino, Tiziana Gabriel, Cecilia Mocaer, Elisabeth Racagni, Giorgio Popoli, Maurizio Bonanno, Giambattista BMC Neurosci Research Article BACKGROUND: Growing compelling evidence from clinical and preclinical studies has demonstrated the primary role of alterations of glutamatergic transmission in cortical and limbic areas in the pathophysiology of mood disorders. Chronic antidepressants have been shown to dampen endogenous glutamate release from rat hippocampal synaptic terminals and to prevent the marked increase of glutamate overflow induced by acute behavioral stress in frontal/prefrontal cortex. Agomelatine, a new antidepressant endowed with MT1/MT2 agonist and 5-HT(2C) serotonergic antagonist properties, has shown efficacy at both preclinical and clinical levels. RESULTS: Chronic treatment with agomelatine, or with the reference drug venlafaxine, induced a marked decrease of depolarization-evoked endogenous glutamate release from purified hippocampal synaptic terminals in superfusion. No changes were observed in GABA release. This effect was accompanied by reduced accumulation of SNARE protein complexes, the key molecular effector of vesicle docking, priming and fusion at presynaptic membranes. CONCLUSIONS: Our data suggest that the novel antidepressant agomelatine share with other classes of antidepressants the ability to modulate glutamatergic transmission in hippocampus. Its action seems to be mediated by molecular mechanisms located on the presynaptic membrane and related with the size of the vesicle pool ready for release. BioMed Central 2013-07-29 /pmc/articles/PMC3734058/ /pubmed/23895555 http://dx.doi.org/10.1186/1471-2202-14-75 Text en Copyright © 2013 Milanese et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Milanese, Marco
Tardito, Daniela
Musazzi, Laura
Treccani, Giulia
Mallei, Alessandra
Bonifacino, Tiziana
Gabriel, Cecilia
Mocaer, Elisabeth
Racagni, Giorgio
Popoli, Maurizio
Bonanno, Giambattista
Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title_full Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title_fullStr Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title_full_unstemmed Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title_short Chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
title_sort chronic treatment with agomelatine or venlafaxine reduces depolarization-evoked glutamate release from hippocampal synaptosomes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3734058/
https://www.ncbi.nlm.nih.gov/pubmed/23895555
http://dx.doi.org/10.1186/1471-2202-14-75
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