Cargando…

Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline

Recently, multiple neurotrophic/growth factors have been proposed to play an important role in the therapeutic action of antidepressants. In this study, we prepared astrocyte- and neuron-enriched cultures from the neonatal rat cortex, and examined the changes in neurotrophic/growth factor expression...

Descripción completa

Detalles Bibliográficos
Autores principales: Kajitani, Naoto, Hisaoka-Nakashima, Kazue, Morioka, Norimitsu, Okada-Tsuchioka, Mami, Kaneko, Masahiro, Kasai, Miho, Shibasaki, Chiyo, Nakata, Yoshihiro, Takebayashi, Minoru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3515577/
https://www.ncbi.nlm.nih.gov/pubmed/23227251
http://dx.doi.org/10.1371/journal.pone.0051197
_version_ 1782252212469104640
author Kajitani, Naoto
Hisaoka-Nakashima, Kazue
Morioka, Norimitsu
Okada-Tsuchioka, Mami
Kaneko, Masahiro
Kasai, Miho
Shibasaki, Chiyo
Nakata, Yoshihiro
Takebayashi, Minoru
author_facet Kajitani, Naoto
Hisaoka-Nakashima, Kazue
Morioka, Norimitsu
Okada-Tsuchioka, Mami
Kaneko, Masahiro
Kasai, Miho
Shibasaki, Chiyo
Nakata, Yoshihiro
Takebayashi, Minoru
author_sort Kajitani, Naoto
collection PubMed
description Recently, multiple neurotrophic/growth factors have been proposed to play an important role in the therapeutic action of antidepressants. In this study, we prepared astrocyte- and neuron-enriched cultures from the neonatal rat cortex, and examined the changes in neurotrophic/growth factor expression by antidepressant treatment using real-time PCR. Treatment with amitriptyline (a tricyclic antidepressant) significantly increased the expression of fibroblast growth factor-2 (FGF-2), brain-derived neurotrophic factor, vascular endothelial growth factor and glial cell line-derived neurotrophic factor mRNA with a different time course in astrocyte cultures, but not in neuron-enriched cultures. Only the expression of FGF-2 was higher in astrocyte cultures than in neuron-enriched cultures. We focused on the FGF-2 production in astrocytes. Several different classes of antidepressants, but not non-antidepressants, also induced FGF-2 mRNA expression. Noradrenaline (NA) is known to induce FGF-2 expression in astrocyte cultures, as with antidepressants. Therefore, we also assessed the mechanism of NA-induced FGF-2 expression, in comparison to amitriptyline. NA increased the FGF-2 mRNA expression via α1 and β-adrenergic receptors; however, the amitriptyline-induced FGF-2 mRNA expression was not mediated via these adrenergic receptors. Furthermore, the amitriptyline-induced FGF-2 mRNA expression was completely blocked by cycloheximide (an inhibitor of protein synthesis), while the NA-induced FGF-2 mRNA was not. These data suggest that the regulation of FGF-2 mRNA expression by amitriptyline was distinct from that by NA. Taken together, antidepressant-stimulated astrocytes may therefore be important mediators that produce several neurotrophic/growth factors, especially FGF-2, through a monoamine-independent and a de novo protein synthesis-dependent mechanism.
format Online
Article
Text
id pubmed-3515577
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35155772012-12-07 Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline Kajitani, Naoto Hisaoka-Nakashima, Kazue Morioka, Norimitsu Okada-Tsuchioka, Mami Kaneko, Masahiro Kasai, Miho Shibasaki, Chiyo Nakata, Yoshihiro Takebayashi, Minoru PLoS One Research Article Recently, multiple neurotrophic/growth factors have been proposed to play an important role in the therapeutic action of antidepressants. In this study, we prepared astrocyte- and neuron-enriched cultures from the neonatal rat cortex, and examined the changes in neurotrophic/growth factor expression by antidepressant treatment using real-time PCR. Treatment with amitriptyline (a tricyclic antidepressant) significantly increased the expression of fibroblast growth factor-2 (FGF-2), brain-derived neurotrophic factor, vascular endothelial growth factor and glial cell line-derived neurotrophic factor mRNA with a different time course in astrocyte cultures, but not in neuron-enriched cultures. Only the expression of FGF-2 was higher in astrocyte cultures than in neuron-enriched cultures. We focused on the FGF-2 production in astrocytes. Several different classes of antidepressants, but not non-antidepressants, also induced FGF-2 mRNA expression. Noradrenaline (NA) is known to induce FGF-2 expression in astrocyte cultures, as with antidepressants. Therefore, we also assessed the mechanism of NA-induced FGF-2 expression, in comparison to amitriptyline. NA increased the FGF-2 mRNA expression via α1 and β-adrenergic receptors; however, the amitriptyline-induced FGF-2 mRNA expression was not mediated via these adrenergic receptors. Furthermore, the amitriptyline-induced FGF-2 mRNA expression was completely blocked by cycloheximide (an inhibitor of protein synthesis), while the NA-induced FGF-2 mRNA was not. These data suggest that the regulation of FGF-2 mRNA expression by amitriptyline was distinct from that by NA. Taken together, antidepressant-stimulated astrocytes may therefore be important mediators that produce several neurotrophic/growth factors, especially FGF-2, through a monoamine-independent and a de novo protein synthesis-dependent mechanism. Public Library of Science 2012-12-05 /pmc/articles/PMC3515577/ /pubmed/23227251 http://dx.doi.org/10.1371/journal.pone.0051197 Text en © 2012 Kajitani et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kajitani, Naoto
Hisaoka-Nakashima, Kazue
Morioka, Norimitsu
Okada-Tsuchioka, Mami
Kaneko, Masahiro
Kasai, Miho
Shibasaki, Chiyo
Nakata, Yoshihiro
Takebayashi, Minoru
Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title_full Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title_fullStr Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title_full_unstemmed Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title_short Antidepressant Acts on Astrocytes Leading to an Increase in the Expression of Neurotrophic/Growth Factors: Differential Regulation of FGF-2 by Noradrenaline
title_sort antidepressant acts on astrocytes leading to an increase in the expression of neurotrophic/growth factors: differential regulation of fgf-2 by noradrenaline
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3515577/
https://www.ncbi.nlm.nih.gov/pubmed/23227251
http://dx.doi.org/10.1371/journal.pone.0051197
work_keys_str_mv AT kajitaninaoto antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT hisaokanakashimakazue antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT moriokanorimitsu antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT okadatsuchiokamami antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT kanekomasahiro antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT kasaimiho antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT shibasakichiyo antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT nakatayoshihiro antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline
AT takebayashiminoru antidepressantactsonastrocytesleadingtoanincreaseintheexpressionofneurotrophicgrowthfactorsdifferentialregulationoffgf2bynoradrenaline