The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes
Autor(a) principal: | |
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Data de Publicação: | 2021 |
Outros Autores: | , , , , , , , |
Tipo de documento: | Artigo |
Idioma: | eng |
Título da fonte: | Repositório Institucional da UFRGS |
Texto Completo: | http://hdl.handle.net/10183/237086 |
Resumo: | Background: Reduced glutathione (GSH) is one of the main thiols involved in antioxidant defense. Changes in circulatory levels of GSH during exercise are associated with hyperthermia and dehydration. The mechanisms by which these alterations occur are not entirely known. We hypothesize that erythrocytes could be an important source of circulatory GSH during heat stress conditions. We performed two separate experiments to address this hypothesis. Methods: In the first experiment, we sought to investigate the impact of exercise in the heat and dehydration on erythrocyte levels of GSH. A total of 10 men performed 60 min of cycling at 60% VO2peak in the heat (38.0 ± 0.9 °C) or in a control temperate environment (23.0 ± 1.0 °C), both with and without dehydration. Relative humidity ranged from 50 to 70%. Blood samples were taken before and after exercise to measure GSH and oxidized (GSSG) glutathione. In the second experiment, erythrocytes were isolated from blood samples taken at rest and heated in vitro to determine the impact of heat on erythrocyte glutathione content. Tubes with erythrocytes were exposed to water baths at different temperatures; one tube was exposed to a water bath at 35 °C and the other tube to a water bath at 41 °C for a period of 30 min. After exposure to heat, plasma and erythrocytes were extracted for GSH and GSSG analyses. Results: Dehydration decreased circulatory GSH, regardless of ambient temperature (temperate and heat decreased 15.35% and 30.31%, respectively), resulting in an altered redox balance. Heat increased GSH levels in vitro. Conclusion: Our data suggest that dehydration decreases circulatory GSH levels regardless of environmental temperature. In addition, in vitro data suggests that erythrocytes may contribute to the release of GSH during exposure to heat stress. |
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Marins, Denise de MeloFarinha, Juliano BoufleurBoeno, Francesco PintoVieira, Alexandra FerreiraMunhoz, Samuel VargasSantos, Gabriela Cristina dosKrause, Maurício da SilvaLionello Neto, Orlando LaitanoOliveira, Álvaro Reischak de2022-04-13T04:50:41Z20212075-1729http://hdl.handle.net/10183/237086001138660Background: Reduced glutathione (GSH) is one of the main thiols involved in antioxidant defense. Changes in circulatory levels of GSH during exercise are associated with hyperthermia and dehydration. The mechanisms by which these alterations occur are not entirely known. We hypothesize that erythrocytes could be an important source of circulatory GSH during heat stress conditions. We performed two separate experiments to address this hypothesis. Methods: In the first experiment, we sought to investigate the impact of exercise in the heat and dehydration on erythrocyte levels of GSH. A total of 10 men performed 60 min of cycling at 60% VO2peak in the heat (38.0 ± 0.9 °C) or in a control temperate environment (23.0 ± 1.0 °C), both with and without dehydration. Relative humidity ranged from 50 to 70%. Blood samples were taken before and after exercise to measure GSH and oxidized (GSSG) glutathione. In the second experiment, erythrocytes were isolated from blood samples taken at rest and heated in vitro to determine the impact of heat on erythrocyte glutathione content. Tubes with erythrocytes were exposed to water baths at different temperatures; one tube was exposed to a water bath at 35 °C and the other tube to a water bath at 41 °C for a period of 30 min. After exposure to heat, plasma and erythrocytes were extracted for GSH and GSSG analyses. Results: Dehydration decreased circulatory GSH, regardless of ambient temperature (temperate and heat decreased 15.35% and 30.31%, respectively), resulting in an altered redox balance. Heat increased GSH levels in vitro. Conclusion: Our data suggest that dehydration decreases circulatory GSH levels regardless of environmental temperature. In addition, in vitro data suggests that erythrocytes may contribute to the release of GSH during exposure to heat stress.application/pdfengLife. Basel. Vol. 11, no. 11 (Nov. 2021), 1144, 10 p.DesidrataçãoHipertermiaGlutationa : MetabolismoTemperatura altaExercício físicoEritrócitosSistema cardiovascularOxidative stressHeatHydrationExerciseThe impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytesEstrangeiroinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/openAccessreponame:Repositório Institucional da UFRGSinstname:Universidade Federal do Rio Grande do Sul (UFRGS)instacron:UFRGSTEXT001138660.pdf.txt001138660.pdf.txtExtracted Texttext/plain35246http://www.lume.ufrgs.br/bitstream/10183/237086/2/001138660.pdf.txt65fc58bc58a6b692018bca945bbf66c7MD52ORIGINAL001138660.pdfTexto completo (inglês)application/pdf1362299http://www.lume.ufrgs.br/bitstream/10183/237086/1/001138660.pdf1ad484594763df2840283878de6d1ff6MD5110183/2370862023-05-18 03:58:26.207327oai:www.lume.ufrgs.br:10183/237086Repositório InstitucionalPUBhttps://lume.ufrgs.br/oai/requestlume@ufrgs.bropendoar:2023-05-18T06:58:26Repositório Institucional da UFRGS - Universidade Federal do Rio Grande do Sul (UFRGS)false |
dc.title.pt_BR.fl_str_mv |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
title |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
spellingShingle |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes Marins, Denise de Melo Desidratação Hipertermia Glutationa : Metabolismo Temperatura alta Exercício físico Eritrócitos Sistema cardiovascular Oxidative stress Heat Hydration Exercise |
title_short |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
title_full |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
title_fullStr |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
title_full_unstemmed |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
title_sort |
The impact of dehydration and hyperthermia on circulatory glutathione metabolism after exercise in the heat with insights into the role of erythrocytes |
author |
Marins, Denise de Melo |
author_facet |
Marins, Denise de Melo Farinha, Juliano Boufleur Boeno, Francesco Pinto Vieira, Alexandra Ferreira Munhoz, Samuel Vargas Santos, Gabriela Cristina dos Krause, Maurício da Silva Lionello Neto, Orlando Laitano Oliveira, Álvaro Reischak de |
author_role |
author |
author2 |
Farinha, Juliano Boufleur Boeno, Francesco Pinto Vieira, Alexandra Ferreira Munhoz, Samuel Vargas Santos, Gabriela Cristina dos Krause, Maurício da Silva Lionello Neto, Orlando Laitano Oliveira, Álvaro Reischak de |
author2_role |
author author author author author author author author |
dc.contributor.author.fl_str_mv |
Marins, Denise de Melo Farinha, Juliano Boufleur Boeno, Francesco Pinto Vieira, Alexandra Ferreira Munhoz, Samuel Vargas Santos, Gabriela Cristina dos Krause, Maurício da Silva Lionello Neto, Orlando Laitano Oliveira, Álvaro Reischak de |
dc.subject.por.fl_str_mv |
Desidratação Hipertermia Glutationa : Metabolismo Temperatura alta Exercício físico Eritrócitos Sistema cardiovascular |
topic |
Desidratação Hipertermia Glutationa : Metabolismo Temperatura alta Exercício físico Eritrócitos Sistema cardiovascular Oxidative stress Heat Hydration Exercise |
dc.subject.eng.fl_str_mv |
Oxidative stress Heat Hydration Exercise |
description |
Background: Reduced glutathione (GSH) is one of the main thiols involved in antioxidant defense. Changes in circulatory levels of GSH during exercise are associated with hyperthermia and dehydration. The mechanisms by which these alterations occur are not entirely known. We hypothesize that erythrocytes could be an important source of circulatory GSH during heat stress conditions. We performed two separate experiments to address this hypothesis. Methods: In the first experiment, we sought to investigate the impact of exercise in the heat and dehydration on erythrocyte levels of GSH. A total of 10 men performed 60 min of cycling at 60% VO2peak in the heat (38.0 ± 0.9 °C) or in a control temperate environment (23.0 ± 1.0 °C), both with and without dehydration. Relative humidity ranged from 50 to 70%. Blood samples were taken before and after exercise to measure GSH and oxidized (GSSG) glutathione. In the second experiment, erythrocytes were isolated from blood samples taken at rest and heated in vitro to determine the impact of heat on erythrocyte glutathione content. Tubes with erythrocytes were exposed to water baths at different temperatures; one tube was exposed to a water bath at 35 °C and the other tube to a water bath at 41 °C for a period of 30 min. After exposure to heat, plasma and erythrocytes were extracted for GSH and GSSG analyses. Results: Dehydration decreased circulatory GSH, regardless of ambient temperature (temperate and heat decreased 15.35% and 30.31%, respectively), resulting in an altered redox balance. Heat increased GSH levels in vitro. Conclusion: Our data suggest that dehydration decreases circulatory GSH levels regardless of environmental temperature. In addition, in vitro data suggests that erythrocytes may contribute to the release of GSH during exposure to heat stress. |
publishDate |
2021 |
dc.date.issued.fl_str_mv |
2021 |
dc.date.accessioned.fl_str_mv |
2022-04-13T04:50:41Z |
dc.type.driver.fl_str_mv |
Estrangeiro info:eu-repo/semantics/article |
dc.type.status.fl_str_mv |
info:eu-repo/semantics/publishedVersion |
format |
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publishedVersion |
dc.identifier.uri.fl_str_mv |
http://hdl.handle.net/10183/237086 |
dc.identifier.issn.pt_BR.fl_str_mv |
2075-1729 |
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001138660 |
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2075-1729 001138660 |
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http://hdl.handle.net/10183/237086 |
dc.language.iso.fl_str_mv |
eng |
language |
eng |
dc.relation.ispartof.pt_BR.fl_str_mv |
Life. Basel. Vol. 11, no. 11 (Nov. 2021), 1144, 10 p. |
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info:eu-repo/semantics/openAccess |
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openAccess |
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