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Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine

The purpose was to determine the role of renal nerves in mediating the effects of antihypertensive treatment with L-arginine in a renovascular hypertension model. The 2K1C (two-kidney one-clip model) hypertensive rats were submitted to bilateral surgical-pharmacological renal denervation. The animal...

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Autores principales: Gouvea, Sonia Alves, Tiradentes, Renata V., Santuzzi, Cintia H., Mengal, Vinícius, Futuro Neto, Henrique de A., Silva, Nyam F., Abreu, Gláucia R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4199080/
https://www.ncbi.nlm.nih.gov/pubmed/25349722
http://dx.doi.org/10.1155/2014/735627
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author Gouvea, Sonia Alves
Tiradentes, Renata V.
Santuzzi, Cintia H.
Mengal, Vinícius
Futuro Neto, Henrique de A.
Silva, Nyam F.
Abreu, Gláucia R.
author_facet Gouvea, Sonia Alves
Tiradentes, Renata V.
Santuzzi, Cintia H.
Mengal, Vinícius
Futuro Neto, Henrique de A.
Silva, Nyam F.
Abreu, Gláucia R.
author_sort Gouvea, Sonia Alves
collection PubMed
description The purpose was to determine the role of renal nerves in mediating the effects of antihypertensive treatment with L-arginine in a renovascular hypertension model. The 2K1C (two-kidney one-clip model) hypertensive rats were submitted to bilateral surgical-pharmacological renal denervation. The animals were subdivided into six experimental groups: normotensive control rats (SHAM), 2K1C rats, 2K1C rats treated with L-arginine (2K1C + L-arg), denervated normotensive (DN) rats, denervated 2K1C (2K1C + DN) rats, and denervated 2K1C + L-arg (2K1C + DN + L-arg) rats. Arterial blood pressure, water intake, urine volume, and sodium excretion were measured. The 2K1C rats exhibited an increase in the mean arterial pressure (MAP) (from 106 ± 3 to 183 ± 5.8 mmHg, P < 0.01), whereas L-arg treatment induced a reduction in the MAP (143 ± 3.4 mmHg) without lowering it to the control level. Renal nerve denervation reduced the MAP to normotensive levels in 2K1C rats with or without chronic L-arg treatment. L-arg and denervation induced increases in water intake and urine volume, and L-arg caused a significant natriuretic effect. Our results suggest that renal sympathetic activity participates in the genesis and the maintenance of the hypertension and also demonstrate that treatment with L-arg alone is incapable of normalizing the MAP and that the effect of such treatment is not additive with the effect of kidney denervation.
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spelling pubmed-41990802014-10-27 Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine Gouvea, Sonia Alves Tiradentes, Renata V. Santuzzi, Cintia H. Mengal, Vinícius Futuro Neto, Henrique de A. Silva, Nyam F. Abreu, Gláucia R. Int J Hypertens Research Article The purpose was to determine the role of renal nerves in mediating the effects of antihypertensive treatment with L-arginine in a renovascular hypertension model. The 2K1C (two-kidney one-clip model) hypertensive rats were submitted to bilateral surgical-pharmacological renal denervation. The animals were subdivided into six experimental groups: normotensive control rats (SHAM), 2K1C rats, 2K1C rats treated with L-arginine (2K1C + L-arg), denervated normotensive (DN) rats, denervated 2K1C (2K1C + DN) rats, and denervated 2K1C + L-arg (2K1C + DN + L-arg) rats. Arterial blood pressure, water intake, urine volume, and sodium excretion were measured. The 2K1C rats exhibited an increase in the mean arterial pressure (MAP) (from 106 ± 3 to 183 ± 5.8 mmHg, P < 0.01), whereas L-arg treatment induced a reduction in the MAP (143 ± 3.4 mmHg) without lowering it to the control level. Renal nerve denervation reduced the MAP to normotensive levels in 2K1C rats with or without chronic L-arg treatment. L-arg and denervation induced increases in water intake and urine volume, and L-arg caused a significant natriuretic effect. Our results suggest that renal sympathetic activity participates in the genesis and the maintenance of the hypertension and also demonstrate that treatment with L-arg alone is incapable of normalizing the MAP and that the effect of such treatment is not additive with the effect of kidney denervation. Hindawi Publishing Corporation 2014 2014-09-30 /pmc/articles/PMC4199080/ /pubmed/25349722 http://dx.doi.org/10.1155/2014/735627 Text en Copyright © 2014 Sonia Alves Gouvea 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
Gouvea, Sonia Alves
Tiradentes, Renata V.
Santuzzi, Cintia H.
Mengal, Vinícius
Futuro Neto, Henrique de A.
Silva, Nyam F.
Abreu, Gláucia R.
Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title_full Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title_fullStr Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title_full_unstemmed Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title_short Role of Renal Nerves in the Treatment of Renovascular Hypertensive Rats with L-Arginine
title_sort role of renal nerves in the treatment of renovascular hypertensive rats with l-arginine
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4199080/
https://www.ncbi.nlm.nih.gov/pubmed/25349722
http://dx.doi.org/10.1155/2014/735627
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