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Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats

BACKGROUND: Urinary concentration impairment is a major feature of cyclosporine nephrotoxicity. METHODS: We explored two possible mechanisms that may underlie cyclosporine-induced polyuria; water, and/or osmotic diuresis. Cyclosporine was subcutaneously injected to normal salt-fed Sprague-Dawley rat...

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Autores principales: Lee, Jun Han, Kim, Su A, Jo, Chor Ho, Lee, Chang Hwa, Kim, Gheun-Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society of Electrolyte Metabolism 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7327388/
https://www.ncbi.nlm.nih.gov/pubmed/32655650
http://dx.doi.org/10.5049/EBP.2020.18.1.1
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author Lee, Jun Han
Kim, Su A
Jo, Chor Ho
Lee, Chang Hwa
Kim, Gheun-Ho
author_facet Lee, Jun Han
Kim, Su A
Jo, Chor Ho
Lee, Chang Hwa
Kim, Gheun-Ho
author_sort Lee, Jun Han
collection PubMed
description BACKGROUND: Urinary concentration impairment is a major feature of cyclosporine nephrotoxicity. METHODS: We explored two possible mechanisms that may underlie cyclosporine-induced polyuria; water, and/or osmotic diuresis. Cyclosporine was subcutaneously injected to normal salt-fed Sprague-Dawley rats at a daily dose of 25mg/kg for 2 weeks (Experiment I) and 7.5mg/kg for 6 weeks (Experiment II). RESULTS: In Experiment I, cyclosporine treatment caused an increase in urine volume (2.7±0.5 vs. 10.3±1.13mL/d/100 g BW, p<0.001) and a decrease in urine osmolality (2,831±554 vs. 1,379±478mOsm/kg H(2)O, p<0.05). Aquaporin-2 (AQP2) protein expression decreased in cyclosporine-treated rat kidneys (cortex, 78±8%, p<0.05; medulla, 80±1%, p<0.05). Experiment II also showed that urine volume was increased by cyclosporine treatment (4.97±0.66 vs. 9.65±1.76mL/d/100 g BW, p<0.05). Whereas urine osmolality was not affected, urinary excretion of osmoles was increased (7.5±0.4 vs. 14.9±1.4mosmoles/d/100 g BW, p<0.005). Notably, urinary excretion of glucose increased in cyclosporine-treated rats (7±1 vs. 10,932±2,462 mg/d/100 g BW, p<0.005) without a significant elevation in plasma glucose. In both Experiment I and II, GLUT2 protein expression in the renal cortex was decreased by cyclosporine treatment (Experiment I, 55±6%, p<0.005; Experiment II, 88±3%, p<0.05). CONCLUSION: Both water diuresis and osmotic diuresis are induced by cyclosporine nephrotoxicity. AQP2 and GLUT2 downregulation may underlie water and osmotic diuresis, respectively.
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spelling pubmed-73273882020-07-10 Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats Lee, Jun Han Kim, Su A Jo, Chor Ho Lee, Chang Hwa Kim, Gheun-Ho Electrolyte Blood Press Original Article BACKGROUND: Urinary concentration impairment is a major feature of cyclosporine nephrotoxicity. METHODS: We explored two possible mechanisms that may underlie cyclosporine-induced polyuria; water, and/or osmotic diuresis. Cyclosporine was subcutaneously injected to normal salt-fed Sprague-Dawley rats at a daily dose of 25mg/kg for 2 weeks (Experiment I) and 7.5mg/kg for 6 weeks (Experiment II). RESULTS: In Experiment I, cyclosporine treatment caused an increase in urine volume (2.7±0.5 vs. 10.3±1.13mL/d/100 g BW, p<0.001) and a decrease in urine osmolality (2,831±554 vs. 1,379±478mOsm/kg H(2)O, p<0.05). Aquaporin-2 (AQP2) protein expression decreased in cyclosporine-treated rat kidneys (cortex, 78±8%, p<0.05; medulla, 80±1%, p<0.05). Experiment II also showed that urine volume was increased by cyclosporine treatment (4.97±0.66 vs. 9.65±1.76mL/d/100 g BW, p<0.05). Whereas urine osmolality was not affected, urinary excretion of osmoles was increased (7.5±0.4 vs. 14.9±1.4mosmoles/d/100 g BW, p<0.005). Notably, urinary excretion of glucose increased in cyclosporine-treated rats (7±1 vs. 10,932±2,462 mg/d/100 g BW, p<0.005) without a significant elevation in plasma glucose. In both Experiment I and II, GLUT2 protein expression in the renal cortex was decreased by cyclosporine treatment (Experiment I, 55±6%, p<0.005; Experiment II, 88±3%, p<0.05). CONCLUSION: Both water diuresis and osmotic diuresis are induced by cyclosporine nephrotoxicity. AQP2 and GLUT2 downregulation may underlie water and osmotic diuresis, respectively. The Korean Society of Electrolyte Metabolism 2020-06 2020-06-18 /pmc/articles/PMC7327388/ /pubmed/32655650 http://dx.doi.org/10.5049/EBP.2020.18.1.1 Text en Copyright © 2020 Korean Society for Electrolyte and Blood Pressure Research http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Lee, Jun Han
Kim, Su A
Jo, Chor Ho
Lee, Chang Hwa
Kim, Gheun-Ho
Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title_full Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title_fullStr Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title_full_unstemmed Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title_short Urinary Concentration Defect and Renal Glycosuria in Cyclosporine-treated Rats
title_sort urinary concentration defect and renal glycosuria in cyclosporine-treated rats
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7327388/
https://www.ncbi.nlm.nih.gov/pubmed/32655650
http://dx.doi.org/10.5049/EBP.2020.18.1.1
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