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Morphine-withdrawal aversive memories and their extinction modulate H4K5 acetylation and Brd4 activation in the rat hippocampus and basolateral amygdala

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dc.contributor.author Franco-García, Aurelio
dc.contributor.author Gómez-Murcia, Victoria
dc.contributor.author Fernández-Gómez, Francisco-José
dc.contributor.author González-Andreu, Raúl
dc.contributor.author Hidalgo, Juana-María
dc.contributor.author Milanés, María-Victoria
dc.contributor.author Núñez, Cristina
dc.date.accessioned 2025-12-03T11:11:24Z
dc.date.available 2025-12-03T11:11:24Z
dc.date.issued 2023-09
dc.identifier.citation Franco-García A, Gómez-Murcia V, Fernández-Gómez FJ, González-Andreu R, Hidalgo JM, Victoria Milanés M, et al. Morphine-withdrawal aversive memories and their extinction modulate H4K5 acetylation and Brd4 activation in the rat hippocampus and basolateral amygdala. Biomedicine & Pharmacotherapy. septiembre de 2023;165:115055.
dc.identifier.issn 0753-3322
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/22921
dc.description.abstract Chromatin modification is a crucial mechanism in several important phenomena in the brain, including drug addiction. Persistence of drug craving and risk of relapse could be attributed to drug-induced epigenetic mechanisms that seem to be candidates explaining long-lasting drug-induced behaviour and molecular alterations. Histone acetylation has been proposed to regulate drug-seeking behaviours and the extinction of rewarding memory of drug taking. In this work, we studied the epigenetic regulation during conditioned place aversion and after extinction of aversive memory of opiate withdrawal. Through immunofluorescence assays, we assessed some epigenetic marks (H4K5ac and p-Brd4) in crucial areas related to memory retrieval -basolateral amygdala (BLA) and hippocampus-. Additionally, to test the degree of transcriptional activation, we evaluated the immediate early genes (IEGs) response (Arc, Bdnf, Creb, Egr-1, Fos and Nfkb) and Smarcc1 (chromatin remodeler) through RT-qPCR in these nuclei. Our results showed increased p-Brd4 and H4K5ac levels during aversive memory retrieval, suggesting a more open chromatin state. However, transcriptional activation of these IEGs was not found, therefore suggesting that other secondary response may already be happening. Additionally, Smarcc1 levels were reduced due to morphine chronic administration in BLA and dentate gyrus. The activation markers returned to control levels after the retrieval of aversive memories, revealing a more repressed chromatin state. Taken together, our results show a major role of the tandem H4K5ac/p-Brd4 during the retrieval of aversive memories. These results might be useful to elucidate new molecular targets to improve and develop pharmacological treatments to address addiction and to avoid drug relapse.
dc.language.iso eng
dc.publisher ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
dc.rights Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional 
dc.rights.uri https://creativecommons.org/licenses/by-nc-nd/4.0
dc.subject.mesh Rats
dc.subject.mesh Animals
dc.subject.mesh Morphine/pharmacology
dc.subject.mesh Basolateral Nuclear Complex
dc.subject.mesh Nuclear Proteins
dc.subject.mesh Epigenesis, Genetic
dc.subject.mesh Acetylation
dc.subject.mesh Rats, Sprague-Dawley
dc.subject.mesh Transcription Factors
dc.subject.mesh Neoplasm Recurrence, Local
dc.subject.mesh Hippocampus
dc.subject.mesh Chromatin
dc.title Morphine-withdrawal aversive memories and their extinction modulate H4K5 acetylation and Brd4 activation in the rat hippocampus and basolateral amygdala
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 37356373
dc.relation.publisherversion https://linkinghub.elsevier.com/retrieve/pii/S0753332223008454
dc.identifier.doi 10.1016/j.biopha.2023.115055
dc.journal.title Biomedicine & Pharmacotherapy
dc.identifier.essn 1950-6007


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Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional  Excepto si se señala otra cosa, la licencia del ítem se describe como Atribución/Reconocimiento-NoComercial-SinDerivados 4.0 Internacional 

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