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Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change

Although acute exposure to hypoxia can disrupt metabolism, longer-term exposure may normalize glucose homeostasis or even improve glucose disposal in the presence of obesity. We examined the effects of two-week exposure to room air (Air), continuous 10% oxygen (C10%), and 12 hr nocturnal periods of...

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Autores principales: Ioja, Simona, Singamsetty, Srikanth, Corey, Catherine, Guo, Lanping, Shah, Faraaz, Jurczak, Michael J., McVerry, Bryan J., Shiva, Sruti, O'Donnell, Christopher P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5817288/
https://www.ncbi.nlm.nih.gov/pubmed/29507654
http://dx.doi.org/10.1155/2018/9649608
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author Ioja, Simona
Singamsetty, Srikanth
Corey, Catherine
Guo, Lanping
Shah, Faraaz
Jurczak, Michael J.
McVerry, Bryan J.
Shiva, Sruti
O'Donnell, Christopher P.
author_facet Ioja, Simona
Singamsetty, Srikanth
Corey, Catherine
Guo, Lanping
Shah, Faraaz
Jurczak, Michael J.
McVerry, Bryan J.
Shiva, Sruti
O'Donnell, Christopher P.
author_sort Ioja, Simona
collection PubMed
description Although acute exposure to hypoxia can disrupt metabolism, longer-term exposure may normalize glucose homeostasis or even improve glucose disposal in the presence of obesity. We examined the effects of two-week exposure to room air (Air), continuous 10% oxygen (C10%), and 12 hr nocturnal periods of 10% oxygen (N10%) on glucose disposal, insulin responsiveness, and mitochondrial function in lean and obese C57BL/6J mice. Both C10% and N10% improved glucose disposal relative to Air in lean and obese mice without evidence of an increase in insulin responsiveness; however, only the metabolic improvements with N10% exposure occurred in the absence of confounding effects of weight loss. In lean mice, N10% exposure caused a decreased respiratory control ratio (RCR) and increased reactive oxygen species (ROS) production in the mitochondria of the muscle and liver compared to Air-exposed mice. In the absence of hypoxia, obese mice exhibited a decreased RCR in the muscle and increased ROS production in the liver compared to lean mice; however, any additional effects of hypoxia in the presence of obesity were minimal. Our data suggest that the development of mitochondrial inefficiency may contribute to metabolic adaptions to hypoxia, independent of weight, and metabolic adaptations to adiposity, independent of hypoxia.
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spelling pubmed-58172882018-03-05 Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change Ioja, Simona Singamsetty, Srikanth Corey, Catherine Guo, Lanping Shah, Faraaz Jurczak, Michael J. McVerry, Bryan J. Shiva, Sruti O'Donnell, Christopher P. Oxid Med Cell Longev Research Article Although acute exposure to hypoxia can disrupt metabolism, longer-term exposure may normalize glucose homeostasis or even improve glucose disposal in the presence of obesity. We examined the effects of two-week exposure to room air (Air), continuous 10% oxygen (C10%), and 12 hr nocturnal periods of 10% oxygen (N10%) on glucose disposal, insulin responsiveness, and mitochondrial function in lean and obese C57BL/6J mice. Both C10% and N10% improved glucose disposal relative to Air in lean and obese mice without evidence of an increase in insulin responsiveness; however, only the metabolic improvements with N10% exposure occurred in the absence of confounding effects of weight loss. In lean mice, N10% exposure caused a decreased respiratory control ratio (RCR) and increased reactive oxygen species (ROS) production in the mitochondria of the muscle and liver compared to Air-exposed mice. In the absence of hypoxia, obese mice exhibited a decreased RCR in the muscle and increased ROS production in the liver compared to lean mice; however, any additional effects of hypoxia in the presence of obesity were minimal. Our data suggest that the development of mitochondrial inefficiency may contribute to metabolic adaptions to hypoxia, independent of weight, and metabolic adaptations to adiposity, independent of hypoxia. Hindawi 2018-02-04 /pmc/articles/PMC5817288/ /pubmed/29507654 http://dx.doi.org/10.1155/2018/9649608 Text en Copyright © 2018 Simona Ioja 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
Ioja, Simona
Singamsetty, Srikanth
Corey, Catherine
Guo, Lanping
Shah, Faraaz
Jurczak, Michael J.
McVerry, Bryan J.
Shiva, Sruti
O'Donnell, Christopher P.
Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title_full Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title_fullStr Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title_full_unstemmed Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title_short Nocturnal Hypoxia Improves Glucose Disposal, Decreases Mitochondrial Efficiency, and Increases Reactive Oxygen Species in the Muscle and Liver of C57BL/6J Mice Independent of Weight Change
title_sort nocturnal hypoxia improves glucose disposal, decreases mitochondrial efficiency, and increases reactive oxygen species in the muscle and liver of c57bl/6j mice independent of weight change
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5817288/
https://www.ncbi.nlm.nih.gov/pubmed/29507654
http://dx.doi.org/10.1155/2018/9649608
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