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Dynamic Changes in Oxidative Stress and Epigenetic Modifications in the Ventral Mesencephalon and Striatum of MPTP-Treated Mice: Implications for Parkinson's Disease Pathogenesis

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dc.contributor.author Gallo-Soljancic, Pablo
dc.contributor.author De-Stefano, María-Egle
dc.contributor.author González-Cuello, Ana-María
dc.contributor.author Fernández-Villalba, Emiliano
dc.contributor.author Godderis, Lode
dc.contributor.author Herrero, María-Trinidad
dc.date.accessioned 2026-03-06T14:09:11Z
dc.date.available 2026-03-06T14:09:11Z
dc.date.issued 2025-08
dc.identifier.citation Gallo-Soljancic P, De Stefano ME, Gonzalez-Cuello AM, Fernandez-Villalba E, Godderis L, Herrero MT. Dynamic Changes in Oxidative Stress and Epigenetic Modifications in the Ventral Mesencephalon and Striatum of MPTP-Treated Mice: Implications for Parkinson's Disease Pathogenesis. Neurotox Res. agosto de 2025;43(4):30. doi:10.1007/s12640-025-00748-0
dc.identifier.issn 1029-8428
dc.identifier.uri https://sms.carm.es/ricsmur/handle/123456789/24660
dc.description.abstract This study investigates the effects of an acute 1-metil 4-fenil 1,2,3,6-tetraidro-piridina (MPTP) treatment, a known inducer of parkinsonism, on oxidative stress and epigenetic changes in the mouse ventral midbrain (VM) and striatum. Key markers were analyzed at 4, 8, 24, and 48 h post-injections: the hydroxylated form of the purine guanine (8-hydroxy-2'-deoxyguanosine; 8-OHdG), a marker of oxidative stress; the methylated form of cytosine (5-methylcytosine; 5-mC), associated with gene silencing; the hydroxy methylated form of cytosine (5-hydroxymethylcytosine; 5-hmC), involved in demethylation and gene regulation. The results showed a pronounced decrease in 8-OHdG levels in the VM, suggesting a rapid oxidative stress response, whereas the striatum exhibited a less pronounced response, reflecting regional differences in oxidative stress vulnerability DNA methylation patterns revealed complex and biphasic changes in 5-mC levels in the VM, contrasted with a less pronounced response in the striatum, suggesting disrupted methylation homeostasis and regional epigenetic variability. MPTP treatment also significantly reduced in 5-hmC levels in the VM, pointing to impaired active DNA demethylation and compromised epigenetic flexibility. In contrast, the striatum maintained consistently high 5-hmC levels, reflecting compensatory hydroxymethylation mechanisms specific to this region. These findings highlight pronounced regional differences in oxidative stress vulnerability and epigenetic regulation, with the VM showing heightened sensitivity to oxidative damage and impaired epigenetic flexibility. This underscores the importance of understanding the role of oxidative and epigenetic mechanisms in Parkinson's disease pathophysiology, The changes pave the way for novel therapeutic strategies targeting oxidative DNA damage and epigenetic homeostasis.
dc.language.iso eng
dc.publisher SPRINGER
dc.rights Atribución/Reconocimiento 4.0 Internacional
dc.rights.uri https://creativecommons.org/licenses/by/4.0/deed.es
dc.subject.mesh Animals
dc.subject.mesh Oxidative Stress/drug effects/physiology
dc.subject.mesh Epigenesis, Genetic/drug effects/physiology
dc.subject.mesh Male
dc.subject.mesh Mice, Inbred C57BL
dc.subject.mesh Corpus Striatum/metabolism/drug effects
dc.subject.mesh Mice
dc.subject.mesh DNA Methylation/drug effects
dc.subject.mesh Mesencephalon/metabolism/drug effects
dc.subject.mesh 5-Methylcytosine/metabolism
dc.subject.mesh MPTP Poisoning/metabolism/pathology
dc.subject.mesh 8-Hydroxy-2'-Deoxyguanosine
dc.subject.mesh Deoxyguanosine/analogs & derivatives/metabolism
dc.title Dynamic Changes in Oxidative Stress and Epigenetic Modifications in the Ventral Mesencephalon and Striatum of MPTP-Treated Mice: Implications for Parkinson's Disease Pathogenesis
dc.type info:eu-repo/semantics/article
dc.identifier.pmid 40613933
dc.relation.publisherversion https://link.springer.com/10.1007/s12640-025-00748-0
dc.type.version info:eu-repo/semantics/publishedVersion
dc.identifier.doi 10.1007/s12640-025-00748-0
dc.journal.title Neurotoxicity Research
dc.identifier.essn 1476-3524


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