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Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model

Seizure-mediated oxidative stress is a crucial mechanism in the pathophysiology of epilepsy. This study evaluated the antioxidant effects of daytime-restricted feeding (DRF) and the role of the Nrf2 signaling pathway in a lithium-pilocarpine model seizure model that induces status epilepticus (SE)....

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Autores principales: Mercado-Gómez, Octavio Fabián, Arriaga-Ávila, Virginia Selene, Vega-García, Angélica, Orozco-Suarez, Sandra, Pérez-Koldenkova, Vadim, Camarillo-Sánchez, Juan José, Álvarez-Herrera, Marcelino, Guevara-Guzmán, Rosalinda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605835/
https://www.ncbi.nlm.nih.gov/pubmed/37891811
http://dx.doi.org/10.3390/brainsci13101442
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author Mercado-Gómez, Octavio Fabián
Arriaga-Ávila, Virginia Selene
Vega-García, Angélica
Orozco-Suarez, Sandra
Pérez-Koldenkova, Vadim
Camarillo-Sánchez, Juan José
Álvarez-Herrera, Marcelino
Guevara-Guzmán, Rosalinda
author_facet Mercado-Gómez, Octavio Fabián
Arriaga-Ávila, Virginia Selene
Vega-García, Angélica
Orozco-Suarez, Sandra
Pérez-Koldenkova, Vadim
Camarillo-Sánchez, Juan José
Álvarez-Herrera, Marcelino
Guevara-Guzmán, Rosalinda
author_sort Mercado-Gómez, Octavio Fabián
collection PubMed
description Seizure-mediated oxidative stress is a crucial mechanism in the pathophysiology of epilepsy. This study evaluated the antioxidant effects of daytime-restricted feeding (DRF) and the role of the Nrf2 signaling pathway in a lithium-pilocarpine model seizure model that induces status epilepticus (SE). We performed a lipoperoxidation assay and dihydroethidium fluorescence to measure oxidative stress markers in the hippocampus (malondialdehyde and reactive oxygen species). The protein content of Nrf2 and its downstream protein SOD2 was evaluated using Western blotting. The cellular distribution of the Nrf2 and SOD2 proteins in the pyramidal cell layer of both the CA1 and CA3 hippocampal subfields and astrocytes (GFAP marker) were quantified using immunofluorescence and immunohistochemistry, respectively. Our results indicate that DRF reduced the malondialdehyde levels and the production of reactive oxygen species. Furthermore, a significant increase in Nrf2 and SOD2 protein content was observed in animals subjected to restrictive diet. In addition, DRF increased the relative intensity of the Nrf2 fluorescence in the perinuclear and nuclear compartments of pyramidal neurons in the CA1 subfield. Nrf2 immunoreactivity and the astrocyte marker GFAP also increased their colocalization under DRF conditions. Additionally, SOD2 immunoreactivity was increased in CA1 pyramidal neurons but not in the CA3 region. Our findings suggest that DRF partially prevents oxidative stress by increasing the Nrf2 transcriptional factor and the SOD2 enzyme during the development of SE.
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spelling pubmed-106058352023-10-28 Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model Mercado-Gómez, Octavio Fabián Arriaga-Ávila, Virginia Selene Vega-García, Angélica Orozco-Suarez, Sandra Pérez-Koldenkova, Vadim Camarillo-Sánchez, Juan José Álvarez-Herrera, Marcelino Guevara-Guzmán, Rosalinda Brain Sci Article Seizure-mediated oxidative stress is a crucial mechanism in the pathophysiology of epilepsy. This study evaluated the antioxidant effects of daytime-restricted feeding (DRF) and the role of the Nrf2 signaling pathway in a lithium-pilocarpine model seizure model that induces status epilepticus (SE). We performed a lipoperoxidation assay and dihydroethidium fluorescence to measure oxidative stress markers in the hippocampus (malondialdehyde and reactive oxygen species). The protein content of Nrf2 and its downstream protein SOD2 was evaluated using Western blotting. The cellular distribution of the Nrf2 and SOD2 proteins in the pyramidal cell layer of both the CA1 and CA3 hippocampal subfields and astrocytes (GFAP marker) were quantified using immunofluorescence and immunohistochemistry, respectively. Our results indicate that DRF reduced the malondialdehyde levels and the production of reactive oxygen species. Furthermore, a significant increase in Nrf2 and SOD2 protein content was observed in animals subjected to restrictive diet. In addition, DRF increased the relative intensity of the Nrf2 fluorescence in the perinuclear and nuclear compartments of pyramidal neurons in the CA1 subfield. Nrf2 immunoreactivity and the astrocyte marker GFAP also increased their colocalization under DRF conditions. Additionally, SOD2 immunoreactivity was increased in CA1 pyramidal neurons but not in the CA3 region. Our findings suggest that DRF partially prevents oxidative stress by increasing the Nrf2 transcriptional factor and the SOD2 enzyme during the development of SE. MDPI 2023-10-10 /pmc/articles/PMC10605835/ /pubmed/37891811 http://dx.doi.org/10.3390/brainsci13101442 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
Mercado-Gómez, Octavio Fabián
Arriaga-Ávila, Virginia Selene
Vega-García, Angélica
Orozco-Suarez, Sandra
Pérez-Koldenkova, Vadim
Camarillo-Sánchez, Juan José
Álvarez-Herrera, Marcelino
Guevara-Guzmán, Rosalinda
Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title_full Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title_fullStr Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title_full_unstemmed Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title_short Daytime-Restricted Feeding Ameliorates Oxidative Stress by Increasing NRF2 Transcriptional Factor in the Rat Hippocampus in the Pilocarpine-Induced Acute Seizure Model
title_sort daytime-restricted feeding ameliorates oxidative stress by increasing nrf2 transcriptional factor in the rat hippocampus in the pilocarpine-induced acute seizure model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10605835/
https://www.ncbi.nlm.nih.gov/pubmed/37891811
http://dx.doi.org/10.3390/brainsci13101442
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