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Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function

The effects of a fructose-rich diet and chronic stress on copper metabolism in the kidneys are still understudied. We investigated whether fructose and/or chronic unpredictable stress modulate copper metabolism in a way that affects redox homeostasis, thus contributing to progression of metabolic di...

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Autores principales: Tasić, Danica, Opačić, Miloš, Kovačević, Sanja, Nikolić Kokić, Aleksandra, Dimitrijević, Milena, Nikolić, Dušan, Vojnović Milutinović, Danijela, Blagojević, Duško, Djordjevic, Ana, Brkljačić, Jelena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409054/
https://www.ncbi.nlm.nih.gov/pubmed/36012287
http://dx.doi.org/10.3390/ijms23169023
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author Tasić, Danica
Opačić, Miloš
Kovačević, Sanja
Nikolić Kokić, Aleksandra
Dimitrijević, Milena
Nikolić, Dušan
Vojnović Milutinović, Danijela
Blagojević, Duško
Djordjevic, Ana
Brkljačić, Jelena
author_facet Tasić, Danica
Opačić, Miloš
Kovačević, Sanja
Nikolić Kokić, Aleksandra
Dimitrijević, Milena
Nikolić, Dušan
Vojnović Milutinović, Danijela
Blagojević, Duško
Djordjevic, Ana
Brkljačić, Jelena
author_sort Tasić, Danica
collection PubMed
description The effects of a fructose-rich diet and chronic stress on copper metabolism in the kidneys are still understudied. We investigated whether fructose and/or chronic unpredictable stress modulate copper metabolism in a way that affects redox homeostasis, thus contributing to progression of metabolic disturbances in the kidney. We determined protein level of copper transporters, chaperones, and cuproenzymes including cytochrome c oxidase, as well as antioxidant enzymes function in the kidneys of male Wistar rats subjected to 20% liquid fructose supplementation and/or chronic stress. Liquid fructose supplementation increased level of copper chaperone of superoxide dismutase and decreased metallothionein level, while rendering the level of copper importer and copper chaperones involved in copper delivery to mitochondria and trans Golgi network unaffected. Stress had no effect on renal copper metabolism. The activity and expression of renal antioxidant enzymes remained unaltered in all experimental groups. In conclusion, fructose, independently of stress, decreased renal copper level, and modulated renal copper metabolism as to preserve vital cellular function including mitochondrial energy production and antioxidative defense, at the expense of intracellular copper storage.
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spelling pubmed-94090542022-08-26 Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function Tasić, Danica Opačić, Miloš Kovačević, Sanja Nikolić Kokić, Aleksandra Dimitrijević, Milena Nikolić, Dušan Vojnović Milutinović, Danijela Blagojević, Duško Djordjevic, Ana Brkljačić, Jelena Int J Mol Sci Article The effects of a fructose-rich diet and chronic stress on copper metabolism in the kidneys are still understudied. We investigated whether fructose and/or chronic unpredictable stress modulate copper metabolism in a way that affects redox homeostasis, thus contributing to progression of metabolic disturbances in the kidney. We determined protein level of copper transporters, chaperones, and cuproenzymes including cytochrome c oxidase, as well as antioxidant enzymes function in the kidneys of male Wistar rats subjected to 20% liquid fructose supplementation and/or chronic stress. Liquid fructose supplementation increased level of copper chaperone of superoxide dismutase and decreased metallothionein level, while rendering the level of copper importer and copper chaperones involved in copper delivery to mitochondria and trans Golgi network unaffected. Stress had no effect on renal copper metabolism. The activity and expression of renal antioxidant enzymes remained unaltered in all experimental groups. In conclusion, fructose, independently of stress, decreased renal copper level, and modulated renal copper metabolism as to preserve vital cellular function including mitochondrial energy production and antioxidative defense, at the expense of intracellular copper storage. MDPI 2022-08-12 /pmc/articles/PMC9409054/ /pubmed/36012287 http://dx.doi.org/10.3390/ijms23169023 Text en © 2022 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
Tasić, Danica
Opačić, Miloš
Kovačević, Sanja
Nikolić Kokić, Aleksandra
Dimitrijević, Milena
Nikolić, Dušan
Vojnović Milutinović, Danijela
Blagojević, Duško
Djordjevic, Ana
Brkljačić, Jelena
Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title_full Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title_fullStr Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title_full_unstemmed Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title_short Effects of Fructose and Stress on Rat Renal Copper Metabolism and Antioxidant Enzymes Function
title_sort effects of fructose and stress on rat renal copper metabolism and antioxidant enzymes function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409054/
https://www.ncbi.nlm.nih.gov/pubmed/36012287
http://dx.doi.org/10.3390/ijms23169023
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