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17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats

Prevalence of metabolic syndrome and progression of nephropathy depend on sex. We examined a protective effect of estradiol against nephropathy in metabolic syndrome through the modulation of the arachidonic acid metabolism by activating the 5-lipoxygenase and cytochrome p450 4A pathways. 28 female...

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Autores principales: Zúñiga-Muñoz, A. M., Guarner Lans, V., Soria-Castro, E., Diaz-Diaz, E., Torrico-Lavayen, R., Tena-Betancourt, E., Pérez-Torres, I.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600504/
https://www.ncbi.nlm.nih.gov/pubmed/26491436
http://dx.doi.org/10.1155/2015/149408
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author Zúñiga-Muñoz, A. M.
Guarner Lans, V.
Soria-Castro, E.
Diaz-Diaz, E.
Torrico-Lavayen, R.
Tena-Betancourt, E.
Pérez-Torres, I.
author_facet Zúñiga-Muñoz, A. M.
Guarner Lans, V.
Soria-Castro, E.
Diaz-Diaz, E.
Torrico-Lavayen, R.
Tena-Betancourt, E.
Pérez-Torres, I.
author_sort Zúñiga-Muñoz, A. M.
collection PubMed
description Prevalence of metabolic syndrome and progression of nephropathy depend on sex. We examined a protective effect of estradiol against nephropathy in metabolic syndrome through the modulation of the arachidonic acid metabolism by activating the 5-lipoxygenase and cytochrome p450 4A pathways. 28 female Wistar rats were divided into four groups of seven animals each: control, intact metabolic syndrome, ovariectomized metabolic syndrome, and metabolic syndrome ovariectomized plus estradiol. Blood pressure, body weight, body fat, triglycerides, insulin, HOMA-index, albuminuria, and TNF-α were increased in ovariectomized metabolic syndrome rats (p < 0.001). The perfusion pressure in isolated kidneys of ovariectomized metabolic syndrome rats in presence of 4 μg of arachidonic acid was increased. The inhibitors of the arachidonic acid metabolism Baicalein, Miconazole, and Indomethacin in these rats decreased the perfusion pressure by 57.62%, 99.83%, and 108.5%, respectively and they decreased creatinine clearance and the arachidonic acid percentage. Phospholipase A(2) expression in the kidney of ovariectomized metabolic syndrome rats was not modified. 5-lipoxygenase was increased in metabolic syndrome ovariectomized rats while cytochrome p450 4A was decreased. In conclusion, the loss of estradiol increases renal damage while the treatment with estradiol benefits renal function by modulating arachidonic acid metabolism through the 5-lipoxygenase and cytochrome p450 4A pathways.
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spelling pubmed-46005042015-10-21 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats Zúñiga-Muñoz, A. M. Guarner Lans, V. Soria-Castro, E. Diaz-Diaz, E. Torrico-Lavayen, R. Tena-Betancourt, E. Pérez-Torres, I. Int J Endocrinol Research Article Prevalence of metabolic syndrome and progression of nephropathy depend on sex. We examined a protective effect of estradiol against nephropathy in metabolic syndrome through the modulation of the arachidonic acid metabolism by activating the 5-lipoxygenase and cytochrome p450 4A pathways. 28 female Wistar rats were divided into four groups of seven animals each: control, intact metabolic syndrome, ovariectomized metabolic syndrome, and metabolic syndrome ovariectomized plus estradiol. Blood pressure, body weight, body fat, triglycerides, insulin, HOMA-index, albuminuria, and TNF-α were increased in ovariectomized metabolic syndrome rats (p < 0.001). The perfusion pressure in isolated kidneys of ovariectomized metabolic syndrome rats in presence of 4 μg of arachidonic acid was increased. The inhibitors of the arachidonic acid metabolism Baicalein, Miconazole, and Indomethacin in these rats decreased the perfusion pressure by 57.62%, 99.83%, and 108.5%, respectively and they decreased creatinine clearance and the arachidonic acid percentage. Phospholipase A(2) expression in the kidney of ovariectomized metabolic syndrome rats was not modified. 5-lipoxygenase was increased in metabolic syndrome ovariectomized rats while cytochrome p450 4A was decreased. In conclusion, the loss of estradiol increases renal damage while the treatment with estradiol benefits renal function by modulating arachidonic acid metabolism through the 5-lipoxygenase and cytochrome p450 4A pathways. Hindawi Publishing Corporation 2015 2015-09-27 /pmc/articles/PMC4600504/ /pubmed/26491436 http://dx.doi.org/10.1155/2015/149408 Text en Copyright © 2015 A. M. Zúñiga-Muñoz et al. https://creativecommons.org/licenses/by/3.0/ 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
Zúñiga-Muñoz, A. M.
Guarner Lans, V.
Soria-Castro, E.
Diaz-Diaz, E.
Torrico-Lavayen, R.
Tena-Betancourt, E.
Pérez-Torres, I.
17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title_full 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title_fullStr 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title_full_unstemmed 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title_short 17β Estradiol Modulates Perfusion Pressure and Expression of 5-LOX and CYP450 4A in the Isolated Kidney of Metabolic Syndrome Female Rats
title_sort 17β estradiol modulates perfusion pressure and expression of 5-lox and cyp450 4a in the isolated kidney of metabolic syndrome female rats
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4600504/
https://www.ncbi.nlm.nih.gov/pubmed/26491436
http://dx.doi.org/10.1155/2015/149408
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