Role of superoxide in modulating the renal effects of angiotensin II

被引:72
作者
López, B [1 ]
Salom, MG [1 ]
Arregui, B [1 ]
Valero, F [1 ]
Fenoy, FJ [1 ]
机构
[1] Univ Murcia, Fac Med, Dept Fisiol, Murcia, Spain
关键词
antioxidants; kidney; oxygen; nitric oxide; angiotensin II;
D O I
10.1161/01.HYP.0000101968.09376.79
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
Angiotensin II is known to stimulate NADPH oxidase - dependent superoxide ( O-2(-)) generation, which may contribute to the acute renal vasoconstrictor and antinatriuretic actions of this peptide. To evaluate this hypothesis, the effects of a superoxide dismutase mimetic ( tempol) or a NADPH inhibitor ( apocynin) on the angiotensin renal actions were studied. Renal cortical nitric oxide ( NO) was measured electrochemically in vivo. Tempol increased sodium excretion and NO levels. Apocynin raised renal blood flow, glomerular filtration rate, sodium excretion, and NO levels. These results indicate the presence of an endogenous NADPH oxidase - dependent O-2(-) generation that may modulate renal function by scavenging NO. Angiotensin II infusion reduced renal blood flow, glomerular filtration, sodium excretion, and NO levels in a dose- dependent manner. The angiotensin receptor antagonist valsartan, tempol, or apocynin blunted the angiotensin effects on renal excretion and NO, suggesting that angiotensin receptors stimulation induces the NADPH oxidase - dependent O-2(-) generation that might reduce NO bioavailability. This idea is supported by the finding that angiotensin increased O-2(-) generation in renal homogenates, and this effect was prevented by valsartan, apocynin, or tempol. These results indicate that some of the acute renal effects of angiotensin II may be enhanced by an increased NADPH oxidase - derived O-2(-) production that reduces renal NO bioavailability.
引用
收藏
页码:1150 / 1156
页数:7
相关论文
共 34 条
[1]  
BAUD L, 1986, AM J PHYSIOL, V251, P765
[2]  
Beckman JS, 1996, AM J PHYSIOL-CELL PH, V271, pC1424
[3]   Investigation into the sources of superoxide in human blood vessels - Angiotensin II increases superoxide production in human internal mammary arteries [J].
Berry, C ;
Hamilton, CA ;
Brosnan, J ;
Magill, FG ;
Berg, GA ;
McMurray, JJV ;
Dominiczak, AF .
CIRCULATION, 2000, 101 (18) :2206-2212
[4]   Role of the angiotensin type 2 receptor in the regulation of blood pressure and renal function [J].
Carey, RM ;
Wang, ZQ ;
Siragy, HM .
HYPERTENSION, 2000, 35 (01) :155-163
[5]   Expression and cellular localization of classic NADPH oxidase subunits in the spontaneously hypertensive rat kidney [J].
Chabrashvili, T ;
Tojo, A ;
Onozato, ML ;
Kitiyakara, C ;
Quinn, MT ;
Fujita, T ;
Welch, WJ ;
Wilcox, CS .
HYPERTENSION, 2002, 39 (02) :269-274
[6]   Increased H2O2 counteracts the vasodilator and natriuretic effects of superoxide dismutation by tempol in renal medulla [J].
Chen, YF ;
Cowley, AW ;
Zou, AP .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2003, 285 (04) :R827-R833
[7]   Upregulation of p67phox and gp91phox in aortas from angiotensin II-infused mice [J].
Cifuentes, ME ;
Rey, FE ;
Carretero, OA ;
Pagano, PJ .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2000, 279 (05) :H2234-H2240
[8]   Nitric oxide release in penile corpora cavernosa in a rat model of erection [J].
Escrig, A ;
Gonzalez-Mora, JL ;
Mas, M .
JOURNAL OF PHYSIOLOGY-LONDON, 1999, 516 (01) :261-269
[9]   ROLE OF NITRIC-OXIDE ON PAPILLARY BLOOD-FLOW AND PRESSURE NATRIURESIS [J].
FENOY, FJ ;
FERRER, P ;
CARBONELL, L ;
GARCIASALOM, M .
HYPERTENSION, 1995, 25 (03) :408-414
[10]   o-phenylenediamine-modified carbon fiber electrodes for the detection of nitric oxide [J].
Friedemann, MN ;
Robinson, SW ;
Gerhardt, GA .
ANALYTICAL CHEMISTRY, 1996, 68 (15) :2621-2628