NAD(P)H oxidase-generated superoxide anion accounts for reduced control of myocardial O2 consumption by NO in old Fischer 344 rats
- 1 September 2003
- journal article
- Published by American Physiological Society in American Journal of Physiology-Heart and Circulatory Physiology
- Vol. 285 (3) , H1015-H1022
- https://doi.org/10.1152/ajpheart.01047.2002
Abstract
We investigated the role of nitric oxide (NO) in the control of myocardial O2 consumption in Fischer 344 rats. In Fischer rats at 4, 14, and 23 mo of age, we examined cardiac function using echocardiography, the regulation of cardiac O2 consumption in vitro, endothelial NO synthase (eNOS) protein levels, and potential mechanisms that regulate superoxide. Aging was associated with a reduced ejection fraction [from 75 ± 2%at4moto66 ± 3% ( P < 0.05) at 23 mo] and an increased cardiac diastolic volume [from 0.60 ± 0.04 to 1.00 ± 0.10 ml ( P < 0.01)] and heart weight (from 0.70 ± 0.02 to 0.90 ± 0.02 g). The NO-mediated control of cardiac O2 consumption by bradykinin or enalaprilat was not different between 4 mo (36 ± 2 or 34 ± 3%) and 14 mo (29 ± 1 or 25 ± 3%) but markedly ( P < 0.05) reduced in 23-mo-old Fischer rats (15 ± 3 or 7 ± 2%). The response to the NO donor S-nitroso- N-acetyl penicillamine was not different across groups (35%, 35%, and 44%). Interestingly, the eNOS protein level was not different at 4, 14, and 23 mo. The addition of tempol (1 mmol/l) to the tissue bath eliminated the depression in the control of cardiac O2 consumption by bradykinin (25 ± 3%) or enalaprilat (28 ± 3%) in 23-mo-old Fischer rats. We next examined the levels of enzymes involved in the production and breakdown of superoxide. The expression of Mn SOD, Cu/Zn SOD, extracellular SOD, and p67phox, however, did not differ between 4- and 23-mo-old rats. Importantly, there was a marked increase in gp91phox, and apocynin restored the defect in NO-dependent control of cardiac O2 consumption at 23 mo to that seen in 4-mo-old rats, identifying the role of NADPH oxidase. Thus increased biological activity of superoxide and not decreases in the enzyme that produces NO are responsible for the altered control of cardiac O2 consumption by NO in 23-mo-old Fischer rats. Increased oxidant stress in aging, by decreasing NO bioavailability, may contribute not only to changes in myocardial function but also to altered regulation of vascular tone and the progression of cardiac or vascular disease.Keywords
This publication has 31 references indexed in Scilit:
- NAD(P)H Oxidase Inhibition Improves Endothelial Function in Rat and Human Blood VesselsHypertension, 2002
- Impaired Regulation of Renal Oxygen Consumption in Spontaneously Hypertensive RatsJournal of the American Society of Nephrology, 2002
- Free radical generation and oxidative stress with ageing and exercise: Differential effects in the myocardium and liverActa Physiologica Scandinavica, 2000
- Endothelial Cell Oxidant Production: Effect of NADPH Oxidase InhibitorsEndothelium, 2000
- Mitochondrial Electron Transport Complex I Is a Potential Source of Oxygen Free Radicals in the Failing MyocardiumCirculation Research, 1999
- NO modulates myocardial O2consumption in the nonhuman primate: an additional mechanism of action of amlodipineAmerican Journal of Physiology-Heart and Circulatory Physiology, 1999
- Age-dependent changes in myocardial susceptibility to zero flow ischemia and reperfusion in isolated perfused rat hearts: relation to antioxidant statusMechanisms of Ageing and Development, 1998
- Nonuniformity of Endothelial Constitutive Nitric Oxide Synthase Distribution in Cardiac EndotheliumCirculation Research, 1998
- Function and Production of Nitric Oxide in the Coronary Circulation of the Conscious Dog During ExerciseCirculation Research, 1996
- Myocyte cell loss and myocyte hypertrophy in the aging rat heartJournal of the American College of Cardiology, 1986