Cargando…

Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats

Ethanol (EtOH) binge drinking is characterized by high EtOH intake during few hours followed by withdrawal. Protection strategies against the damages generated by this binge are poorly explored. Thus, this study is aimed at investigating the protective role of treadmill physical exercise (PE) on the...

Descripción completa

Detalles Bibliográficos
Autores principales: Lamarão-Vieira, Kátia, Pamplona-Santos, Dinair, Nascimento, Priscila C., Corrêa, Márcio G., Bittencourt, Leonardo O., dos Santos, Savio M., Cartágenes, Sabrina C., Fernandes, Luanna Melo Pereira, Monteiro, Marta C., Maia, Cristiane S. F., Lima, Rafael R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6398010/
https://www.ncbi.nlm.nih.gov/pubmed/30911348
http://dx.doi.org/10.1155/2019/6802424
_version_ 1783399507347636224
author Lamarão-Vieira, Kátia
Pamplona-Santos, Dinair
Nascimento, Priscila C.
Corrêa, Márcio G.
Bittencourt, Leonardo O.
dos Santos, Savio M.
Cartágenes, Sabrina C.
Fernandes, Luanna Melo Pereira
Monteiro, Marta C.
Maia, Cristiane S. F.
Lima, Rafael R.
author_facet Lamarão-Vieira, Kátia
Pamplona-Santos, Dinair
Nascimento, Priscila C.
Corrêa, Márcio G.
Bittencourt, Leonardo O.
dos Santos, Savio M.
Cartágenes, Sabrina C.
Fernandes, Luanna Melo Pereira
Monteiro, Marta C.
Maia, Cristiane S. F.
Lima, Rafael R.
author_sort Lamarão-Vieira, Kátia
collection PubMed
description Ethanol (EtOH) binge drinking is characterized by high EtOH intake during few hours followed by withdrawal. Protection strategies against the damages generated by this binge are poorly explored. Thus, this study is aimed at investigating the protective role of treadmill physical exercise (PE) on the damage caused after repeated cycles of binge-like EtOH exposure in the oxidative biochemistry, morphology, and cerebellar function of rats from adolescence to adulthood. For this, animals were divided into four groups: control group (sedentary animals with doses of distilled water), exercised group (exercised animals with doses of distilled water), EtOH group (sedentary animals with doses of 3 g/kg/day of EtOH, 20% w/v), and exercised+EtOH group (exercised animals with previous mentioned doses of EtOH). The PE occurred on a running treadmill for 5 days a week for 4 weeks, and all doses of EtOH were administered through intragastric gavage in four repeated cycles of EtOH in a binge-like manner. After the EtOH protocol and PE, animals were submitted to open field and beam walking tests. In sequence, the cerebellums were collected for the biochemical and morphological analyses. Biochemical changes were analyzed by measurement of Trolox equivalent antioxidant capacity (TEAC), reduced glutathione content measurements (GSH), and measurement of nitrite and lipid peroxidation (LPO). In morphological analyses, Purkinje cell density evaluation and immunohistochemistry evaluation were measured by antimyelin basic protein (MBP) and antisynaptophysin (SYP). The present findings demonstrate that the binge drinking protocol induced oxidative biochemistry misbalance, from the decrease of TEAC levels and higher LPO related to tissue damage and motor impairment. In addition, we have shown for the first time that treadmill physical exercise reduced tissue and functional alterations displayed by EtOH exposure.
format Online
Article
Text
id pubmed-6398010
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-63980102019-03-25 Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats Lamarão-Vieira, Kátia Pamplona-Santos, Dinair Nascimento, Priscila C. Corrêa, Márcio G. Bittencourt, Leonardo O. dos Santos, Savio M. Cartágenes, Sabrina C. Fernandes, Luanna Melo Pereira Monteiro, Marta C. Maia, Cristiane S. F. Lima, Rafael R. Oxid Med Cell Longev Research Article Ethanol (EtOH) binge drinking is characterized by high EtOH intake during few hours followed by withdrawal. Protection strategies against the damages generated by this binge are poorly explored. Thus, this study is aimed at investigating the protective role of treadmill physical exercise (PE) on the damage caused after repeated cycles of binge-like EtOH exposure in the oxidative biochemistry, morphology, and cerebellar function of rats from adolescence to adulthood. For this, animals were divided into four groups: control group (sedentary animals with doses of distilled water), exercised group (exercised animals with doses of distilled water), EtOH group (sedentary animals with doses of 3 g/kg/day of EtOH, 20% w/v), and exercised+EtOH group (exercised animals with previous mentioned doses of EtOH). The PE occurred on a running treadmill for 5 days a week for 4 weeks, and all doses of EtOH were administered through intragastric gavage in four repeated cycles of EtOH in a binge-like manner. After the EtOH protocol and PE, animals were submitted to open field and beam walking tests. In sequence, the cerebellums were collected for the biochemical and morphological analyses. Biochemical changes were analyzed by measurement of Trolox equivalent antioxidant capacity (TEAC), reduced glutathione content measurements (GSH), and measurement of nitrite and lipid peroxidation (LPO). In morphological analyses, Purkinje cell density evaluation and immunohistochemistry evaluation were measured by antimyelin basic protein (MBP) and antisynaptophysin (SYP). The present findings demonstrate that the binge drinking protocol induced oxidative biochemistry misbalance, from the decrease of TEAC levels and higher LPO related to tissue damage and motor impairment. In addition, we have shown for the first time that treadmill physical exercise reduced tissue and functional alterations displayed by EtOH exposure. Hindawi 2019-02-18 /pmc/articles/PMC6398010/ /pubmed/30911348 http://dx.doi.org/10.1155/2019/6802424 Text en Copyright © 2019 Kátia Lamarão-Vieira et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lamarão-Vieira, Kátia
Pamplona-Santos, Dinair
Nascimento, Priscila C.
Corrêa, Márcio G.
Bittencourt, Leonardo O.
dos Santos, Savio M.
Cartágenes, Sabrina C.
Fernandes, Luanna Melo Pereira
Monteiro, Marta C.
Maia, Cristiane S. F.
Lima, Rafael R.
Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title_full Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title_fullStr Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title_full_unstemmed Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title_short Physical Exercise Attenuates Oxidative Stress and Morphofunctional Cerebellar Damages Induced by the Ethanol Binge Drinking Paradigm from Adolescence to Adulthood in Rats
title_sort physical exercise attenuates oxidative stress and morphofunctional cerebellar damages induced by the ethanol binge drinking paradigm from adolescence to adulthood in rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6398010/
https://www.ncbi.nlm.nih.gov/pubmed/30911348
http://dx.doi.org/10.1155/2019/6802424
work_keys_str_mv AT lamaraovieirakatia physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT pamplonasantosdinair physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT nascimentopriscilac physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT correamarciog physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT bittencourtleonardoo physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT dossantossaviom physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT cartagenessabrinac physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT fernandesluannamelopereira physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT monteiromartac physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT maiacristianesf physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats
AT limarafaelr physicalexerciseattenuatesoxidativestressandmorphofunctionalcerebellardamagesinducedbytheethanolbingedrinkingparadigmfromadolescencetoadulthoodinrats