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Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia

Neuroinflammation and oxidative stress are conditions leading to neurological and neuropsychiatric disorders. Natural compounds exerting anti-inflammatory and anti-oxidative effects, such as Licochalcone A, a bioactive flavonoid present in a traditional Chinese herb (licorice), might be beneficial f...

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Autores principales: Bhatia, Harsharan Singh, Apweiler, Matthias, Sun, Lu, Baron, Julian, Tirkey, Ashwini, Fiebich, Bernd L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965579/
https://www.ncbi.nlm.nih.gov/pubmed/36838914
http://dx.doi.org/10.3390/molecules28041927
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author Bhatia, Harsharan Singh
Apweiler, Matthias
Sun, Lu
Baron, Julian
Tirkey, Ashwini
Fiebich, Bernd L.
author_facet Bhatia, Harsharan Singh
Apweiler, Matthias
Sun, Lu
Baron, Julian
Tirkey, Ashwini
Fiebich, Bernd L.
author_sort Bhatia, Harsharan Singh
collection PubMed
description Neuroinflammation and oxidative stress are conditions leading to neurological and neuropsychiatric disorders. Natural compounds exerting anti-inflammatory and anti-oxidative effects, such as Licochalcone A, a bioactive flavonoid present in a traditional Chinese herb (licorice), might be beneficial for the treatment of those disorders. Therefore, this study aimed to investigate the anti-inflammatory and anti-oxidative effects of Licochalcone A in LPS-activated primary rat microglia. Licochalcone A dose-dependently prevented LPS-induced PGE(2) release by inhibiting the arachidonic acid (AA)/cylcooxygenase (COX) pathway decreasing phospholipase A2, COX-1, and COX-2 protein levels. Furthermore, LPS-induced levels of the cytokines IL-6 and TNFα were reduced by Licochalcone A, which also inhibited the phosphorylation and, thus, activation of the mitogen-activated protein kinases (MAPK) p38 MAPK and Erk 1/2. With the reduction of 8-iso-PGF(2α), a sensitive marker for oxidative stress, anti-oxidative effects of Licochalcone A were demonstrated. Our data demonstrate that Licochalcone A can affect microglial activation by interfering in important inflammatory pathways. These in vitro findings further demonstrate the potential value of Licochalcone A as a therapeutic option for the prevention of microglial dysfunction related to neuroinflammatory diseases. Future research should continue to investigate the effects of Licochalcone A in different disease models with a focus on its anti-oxidative and anti-neuroinflammatory properties.
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spelling pubmed-99655792023-02-26 Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia Bhatia, Harsharan Singh Apweiler, Matthias Sun, Lu Baron, Julian Tirkey, Ashwini Fiebich, Bernd L. Molecules Article Neuroinflammation and oxidative stress are conditions leading to neurological and neuropsychiatric disorders. Natural compounds exerting anti-inflammatory and anti-oxidative effects, such as Licochalcone A, a bioactive flavonoid present in a traditional Chinese herb (licorice), might be beneficial for the treatment of those disorders. Therefore, this study aimed to investigate the anti-inflammatory and anti-oxidative effects of Licochalcone A in LPS-activated primary rat microglia. Licochalcone A dose-dependently prevented LPS-induced PGE(2) release by inhibiting the arachidonic acid (AA)/cylcooxygenase (COX) pathway decreasing phospholipase A2, COX-1, and COX-2 protein levels. Furthermore, LPS-induced levels of the cytokines IL-6 and TNFα were reduced by Licochalcone A, which also inhibited the phosphorylation and, thus, activation of the mitogen-activated protein kinases (MAPK) p38 MAPK and Erk 1/2. With the reduction of 8-iso-PGF(2α), a sensitive marker for oxidative stress, anti-oxidative effects of Licochalcone A were demonstrated. Our data demonstrate that Licochalcone A can affect microglial activation by interfering in important inflammatory pathways. These in vitro findings further demonstrate the potential value of Licochalcone A as a therapeutic option for the prevention of microglial dysfunction related to neuroinflammatory diseases. Future research should continue to investigate the effects of Licochalcone A in different disease models with a focus on its anti-oxidative and anti-neuroinflammatory properties. MDPI 2023-02-17 /pmc/articles/PMC9965579/ /pubmed/36838914 http://dx.doi.org/10.3390/molecules28041927 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Bhatia, Harsharan Singh
Apweiler, Matthias
Sun, Lu
Baron, Julian
Tirkey, Ashwini
Fiebich, Bernd L.
Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title_full Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title_fullStr Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title_full_unstemmed Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title_short Licochalcone A Inhibits Prostaglandin E(2) by Targeting the MAPK Pathway in LPS Activated Primary Microglia
title_sort licochalcone a inhibits prostaglandin e(2) by targeting the mapk pathway in lps activated primary microglia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965579/
https://www.ncbi.nlm.nih.gov/pubmed/36838914
http://dx.doi.org/10.3390/molecules28041927
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