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dc.creatorMontoya García, Tatianaes
dc.creatorAlarcón de la Lastra Romero, Catalinaes
dc.creatorCastejón Martínez, María Luisaes
dc.creatorOrtega Vidal, Juanes
dc.creatorAltarejos, Joaquínes
dc.creatorSánchez Hidalgo, Marinaes
dc.date.accessioned2022-03-14T08:35:50Z
dc.date.available2022-03-14T08:35:50Z
dc.date.issued2022
dc.identifier.citationMontoya García, T., Alarcón de la Lastra Romero, C., Castejón Martínez, M.L., Ortega Vidal, J., Altarejos, J. y Sánchez Hidalgo, M. (2022). (−)-Methyl-Oleocanthal, a New Oleocanthal Metabolite Reduces LPS-Induced Inflammatory and Oxidative Response: Molecular Signaling Pathways and Histones Epigenetic Modulation. Antioxidants, 11 (1), 56.
dc.identifier.issn2076-3921es
dc.identifier.urihttps://hdl.handle.net/11441/130732
dc.description.abstractThe antioxidant and anti-inflammatory responses of (−)-methyl-oleocanthal (met-OLE), a new metabolite of the extra virgin olive oil (EVOO) phenolic oleocanthal (OLE), were explored in lipopolysaccharide (LPS)-induced murine peritoneal macrophages. Possible signaling pathways and epigenetic modulation of histones were studied. Met-OLE inhibited LPS-induced intracellular reactive oxygen species (ROS) and nitrite (NO) production and decreased the overexpression of the pro-inflammatory enzymes COX-2, mPGES-1 and iNOS in murine macrophages. In addition, met-OLE was able to significantly decrease the activation of p38, JNK, and ERK mitogen-activated protein kinases (MAPKs) and blocked canonical and non-canonical inflammasome signaling pathways. On the contrary, met-OLE upregulated haem oxigenase 1 (HO-1) and nuclear factor (erythroid-derived 2)-like 2 (Nrf-2) expression in treated cells. Finally, met-OLE pretreated spleen cells counteracted LPS induction, preventing H3K18 acetylation or H3K9 and H3K27 demethylation. Overall, these results provide novel mechanistic insights into the beneficial effects of met-OLE regarding the regulation of the immune–inflammatory response through epigenetic changes in histone markers. This revealing evidence suggests that the methylated metabolite of OLE may contribute significantly to the beneficial effects that are associated with the secoiridoid-related compound and the usual consumption of EVOO.es
dc.description.sponsorshipEspaña Ministerio de Economía y Competitividad grant number AG-2017-89342-Pes
dc.description.sponsorshipJunta de Andalucía funded by CTS-259, FQM-182es
dc.formatapplication/pdfes
dc.language.isoenges
dc.publisherMDPIes
dc.relation.ispartofAntioxidants, 11 (1), 56.
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 Internacional*
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/4.0/*
dc.subjectantioxidantes
dc.subjecthistoneses
dc.subjectinflammationes
dc.subjectmacrophageses
dc.subjectmetabolitees
dc.subjectmethylationes
dc.subjectoleocanthales
dc.subjectolive oiles
dc.title(−)-Methyl-Oleocanthal, a New Oleocanthal Metabolite Reduces LPS-Induced Inflammatory and Oxidative Response: Molecular Signaling Pathways and Histones Epigenetic Modulationes
dc.typeinfo:eu-repo/semantics/articlees
dc.type.versioninfo:eu-repo/semantics/publishedVersiones
dc.rights.accessRightsinfo:eu-repo/semantics/openAccesses
dc.contributor.affiliationUniversidad de Sevilla. Departamento de Farmacologíaes
dc.relation.projectIDAG-2017-89342-Pes
dc.relation.projectIDCTS-259, FQM-182es
dc.relation.publisherversionhttp://dx.doi.org/10.3390/antiox11010056es
dc.identifier.doi10.3390/antiox11010056es
dc.journaltitleAntioxidantses
dc.publication.volumen11es
dc.publication.issue1es
dc.publication.endPage56es
dc.contributor.funderMinisterio de Economía y Competitividad (MINECO). Españaes
dc.contributor.funderJunta de Andalucíaes

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