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Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies

Tanacetum parthenium (feverfew) has traditionally been employed as a phytotherapeutic remedy in the treatment of migraine. In this study, a commercial T. parthenium water extract was investigated to explore its anti-inflammatory and neuromodulatory effects. Isolated mouse cortexes were exposed to a...

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Autores principales: Recinella, Lucia, Chiavaroli, Annalisa, di Giacomo, Viviana, Antolini, Marco Daniel, Acquaviva, Alessandra, Leone, Sheila, Brunetti, Luigi, Menghini, Luigi, Ak, Gunes, Zengin, Gokhan, Di Simone, Simonetta Cristina, Ferrante, Claudio, Orlando, Giustino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793142/
https://www.ncbi.nlm.nih.gov/pubmed/33374525
http://dx.doi.org/10.3390/molecules26010022
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author Recinella, Lucia
Chiavaroli, Annalisa
di Giacomo, Viviana
Antolini, Marco Daniel
Acquaviva, Alessandra
Leone, Sheila
Brunetti, Luigi
Menghini, Luigi
Ak, Gunes
Zengin, Gokhan
Di Simone, Simonetta Cristina
Ferrante, Claudio
Orlando, Giustino
author_facet Recinella, Lucia
Chiavaroli, Annalisa
di Giacomo, Viviana
Antolini, Marco Daniel
Acquaviva, Alessandra
Leone, Sheila
Brunetti, Luigi
Menghini, Luigi
Ak, Gunes
Zengin, Gokhan
Di Simone, Simonetta Cristina
Ferrante, Claudio
Orlando, Giustino
author_sort Recinella, Lucia
collection PubMed
description Tanacetum parthenium (feverfew) has traditionally been employed as a phytotherapeutic remedy in the treatment of migraine. In this study, a commercial T. parthenium water extract was investigated to explore its anti-inflammatory and neuromodulatory effects. Isolated mouse cortexes were exposed to a K(+) 60 mM Krebs-Ringer buffer and treated with T. parthenium water extract. The prostaglandin E(2) (PGE(2)) level, brain-derived neurotrophic factor (BDNF), interleukin-10 (IL-10), and IL-1β gene expression were evaluated in the cortex. The effects on dopamine (DA) release and dopamine transporter (DAT) gene expression were assayed in hypothalamic HypoE22 cells. A bioinformatics analysis was conducted to further investigate the mechanism of action. The extract was effective in reducing cortex PGE(2) release and IL-1β gene expression. In the same experimental system, IL-10 and BDNF gene expressions increased, and in HypoE22 cells, the extract decreased the extracellular dopamine level and increased the DAT gene expression due to the direct interaction of parthenolide with the DAT. Overall, the present findings highlight the efficacy of T. parthenium water extract in controlling the inflammatory pathways that occur during cortical-spreading depression. Additionally, the inhibition of the hypothalamic DA release observed in this study further supports the role of dopaminergic pathways as key targets for novel pharmacological approaches in the management of migraine attacks.
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spelling pubmed-77931422021-01-09 Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies Recinella, Lucia Chiavaroli, Annalisa di Giacomo, Viviana Antolini, Marco Daniel Acquaviva, Alessandra Leone, Sheila Brunetti, Luigi Menghini, Luigi Ak, Gunes Zengin, Gokhan Di Simone, Simonetta Cristina Ferrante, Claudio Orlando, Giustino Molecules Article Tanacetum parthenium (feverfew) has traditionally been employed as a phytotherapeutic remedy in the treatment of migraine. In this study, a commercial T. parthenium water extract was investigated to explore its anti-inflammatory and neuromodulatory effects. Isolated mouse cortexes were exposed to a K(+) 60 mM Krebs-Ringer buffer and treated with T. parthenium water extract. The prostaglandin E(2) (PGE(2)) level, brain-derived neurotrophic factor (BDNF), interleukin-10 (IL-10), and IL-1β gene expression were evaluated in the cortex. The effects on dopamine (DA) release and dopamine transporter (DAT) gene expression were assayed in hypothalamic HypoE22 cells. A bioinformatics analysis was conducted to further investigate the mechanism of action. The extract was effective in reducing cortex PGE(2) release and IL-1β gene expression. In the same experimental system, IL-10 and BDNF gene expressions increased, and in HypoE22 cells, the extract decreased the extracellular dopamine level and increased the DAT gene expression due to the direct interaction of parthenolide with the DAT. Overall, the present findings highlight the efficacy of T. parthenium water extract in controlling the inflammatory pathways that occur during cortical-spreading depression. Additionally, the inhibition of the hypothalamic DA release observed in this study further supports the role of dopaminergic pathways as key targets for novel pharmacological approaches in the management of migraine attacks. MDPI 2020-12-23 /pmc/articles/PMC7793142/ /pubmed/33374525 http://dx.doi.org/10.3390/molecules26010022 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Recinella, Lucia
Chiavaroli, Annalisa
di Giacomo, Viviana
Antolini, Marco Daniel
Acquaviva, Alessandra
Leone, Sheila
Brunetti, Luigi
Menghini, Luigi
Ak, Gunes
Zengin, Gokhan
Di Simone, Simonetta Cristina
Ferrante, Claudio
Orlando, Giustino
Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title_full Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title_fullStr Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title_full_unstemmed Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title_short Anti-Inflammatory and Neuromodulatory Effects Induced by Tanacetum parthenium Water Extract: Results from In Silico, In Vitro and Ex Vivo Studies
title_sort anti-inflammatory and neuromodulatory effects induced by tanacetum parthenium water extract: results from in silico, in vitro and ex vivo studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7793142/
https://www.ncbi.nlm.nih.gov/pubmed/33374525
http://dx.doi.org/10.3390/molecules26010022
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