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High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism

Physiological levels of estrogen appear to enhance angiotensin type 2 receptor- (AT(2)R-) mediated vasodilatation. However, the effects of supraphysiological levels of estrogen, analogous to those achieved with high-dose estrogen replacement therapy in postmenopausal women, remain unknown. Therefore...

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Autores principales: Safari, Tahereh, Nematbakhsh, Mehdi, Evans, Roger G., Denton, Kate M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4670851/
https://www.ncbi.nlm.nih.gov/pubmed/26681937
http://dx.doi.org/10.1155/2015/682745
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author Safari, Tahereh
Nematbakhsh, Mehdi
Evans, Roger G.
Denton, Kate M.
author_facet Safari, Tahereh
Nematbakhsh, Mehdi
Evans, Roger G.
Denton, Kate M.
author_sort Safari, Tahereh
collection PubMed
description Physiological levels of estrogen appear to enhance angiotensin type 2 receptor- (AT(2)R-) mediated vasodilatation. However, the effects of supraphysiological levels of estrogen, analogous to those achieved with high-dose estrogen replacement therapy in postmenopausal women, remain unknown. Therefore, we pretreated ovariectomized rats with a relatively high dose of estrogen (0.5 mg/kg/week) for two weeks. Subsequently, renal hemodynamic responses to intravenous angiotensin II (Ang II, 30–300 ng/kg/min) were tested under anesthesia, while renal perfusion pressure was held constant. The role of AT(2)R was examined by pretreating groups of rats with PD123319 or its vehicle. Renal blood flow (RBF) decreased in a dose-related manner in response to Ang II. Responses to Ang II were enhanced by pretreatment with estradiol. For example, at 300 ng kg(−1) min(−1), Ang II reduced RBF by 45.7 ± 1.9% in estradiol-treated rats but only by 27.3 ± 5.1% in vehicle-treated rats. Pretreatment with PD123319 blunted the response of RBF to Ang II in estradiol-treated rats, so that reductions in RBF were similar to those in rats not treated with estradiol. We conclude that supraphysiological levels of estrogen promote AT(2)R-mediated renal vasoconstriction. This mechanism could potentially contribute to the increased risk of cardiovascular disease associated with hormone replacement therapy using high-dose estrogen.
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spelling pubmed-46708512015-12-17 High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism Safari, Tahereh Nematbakhsh, Mehdi Evans, Roger G. Denton, Kate M. Adv Pharmacol Sci Research Article Physiological levels of estrogen appear to enhance angiotensin type 2 receptor- (AT(2)R-) mediated vasodilatation. However, the effects of supraphysiological levels of estrogen, analogous to those achieved with high-dose estrogen replacement therapy in postmenopausal women, remain unknown. Therefore, we pretreated ovariectomized rats with a relatively high dose of estrogen (0.5 mg/kg/week) for two weeks. Subsequently, renal hemodynamic responses to intravenous angiotensin II (Ang II, 30–300 ng/kg/min) were tested under anesthesia, while renal perfusion pressure was held constant. The role of AT(2)R was examined by pretreating groups of rats with PD123319 or its vehicle. Renal blood flow (RBF) decreased in a dose-related manner in response to Ang II. Responses to Ang II were enhanced by pretreatment with estradiol. For example, at 300 ng kg(−1) min(−1), Ang II reduced RBF by 45.7 ± 1.9% in estradiol-treated rats but only by 27.3 ± 5.1% in vehicle-treated rats. Pretreatment with PD123319 blunted the response of RBF to Ang II in estradiol-treated rats, so that reductions in RBF were similar to those in rats not treated with estradiol. We conclude that supraphysiological levels of estrogen promote AT(2)R-mediated renal vasoconstriction. This mechanism could potentially contribute to the increased risk of cardiovascular disease associated with hormone replacement therapy using high-dose estrogen. Hindawi Publishing Corporation 2015 2015-11-23 /pmc/articles/PMC4670851/ /pubmed/26681937 http://dx.doi.org/10.1155/2015/682745 Text en Copyright © 2015 Tahereh Safari 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
Safari, Tahereh
Nematbakhsh, Mehdi
Evans, Roger G.
Denton, Kate M.
High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title_full High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title_fullStr High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title_full_unstemmed High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title_short High-Dose Estradiol-Replacement Therapy Enhances the Renal Vascular Response to Angiotensin II via an AT(2)-Receptor Dependent Mechanism
title_sort high-dose estradiol-replacement therapy enhances the renal vascular response to angiotensin ii via an at(2)-receptor dependent mechanism
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4670851/
https://www.ncbi.nlm.nih.gov/pubmed/26681937
http://dx.doi.org/10.1155/2015/682745
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