Literature DB >> 8831509

Function and production of nitric oxide in the coronary circulation of the conscious dog during exercise.

R D Bernstein1, F Y Ochoa, X Xu, P Forfia, W Shen, C I Thompson, T H Hintze.   

Abstract

This study determined the changes in NO production from the coronary circulation of the conscious dog during exercise. The role of endogenous NO as it relates to coronary flow, myocardial work, and metabolism was also studied. Mongrel dogs were chronically instrumented for measurements of coronary blood flow (CBF), ventricular and aortic pressure, and ventricular diameter, with catheters in the aorta and coronary sinus. Acute exercise (5 minutes at 3.6, 5.9, and 9.1 mph) was performed, and hemodynamic measurements and blood samples were taken at each exercise level. Nitro-L-arginine (NLA, 35 mg/kg IV) was given to block NO synthesis, and the exercise was repeated. Blood samples were analyzed for oxygen, plasma nitrate/nitrite (an index of NO), lactate, glucose, and free fatty acid (FFA) levels. Acute exercise caused significant elevations in NO production by the coronary circulation (46 +/- 23, 129 +/- 44, and 63 +/- 32 nmol/min at each speed respectively, P < .05). After NLA, there was no measurable NO production at rest or during exercise. Blockade of NO synthesis resulted in elevations in myocardial oxygen consumption and reductions in myocardial FFA consumption for comparable levels of CBF and cardiac work. The metabolic changes after NLA occurred in the absence of alterations in myocardial lactate or glucose consumptions. NO production by the coronary circulation is increased with exercise and blocked by NLA. The absence of NO in the coronary circulation during exercise does not affect levels of CBF, because it shifts the relationship between cardiac work and myocardial oxygen consumption, suggesting that endogenous NO modulates myocardial metabolism.

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Year:  1996        PMID: 8831509     DOI: 10.1161/01.res.79.4.840

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  28 in total

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4.  Functional contribution of P2Y1 receptors to the control of coronary blood flow.

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7.  Periadventitial adipose tissue impairs coronary endothelial function via PKC-beta-dependent phosphorylation of nitric oxide synthase.

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8.  Contribution of BK(Ca) channels to local metabolic coronary vasodilation: Effects of metabolic syndrome.

Authors:  Léna Borbouse; Gregory M Dick; Gregory A Payne; Brittany D Payne; Mark C Svendsen; Zachary P Neeb; Mouhamad Alloosh; Ian N Bratz; Michael Sturek; Johnathan D Tune
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9.  Effects of exercise training on responsiveness of the mesenteric arterial bed to phenylephrine and KCl in male rats.

Authors:  C Jansakul; P Hirunpan
Journal:  Br J Pharmacol       Date:  1999-08       Impact factor: 8.739

10.  Potential mechanisms of low-sodium diet-induced cardiac disease: superoxide-NO in the heart.

Authors:  Nobuhiro Suematsu; Caroline Ojaimi; Fabio A Recchia; Zipping Wang; Yester Skayian; Xiaobin Xu; Suhua Zhang; Pawel M Kaminski; Dong Sun; Michael S Wolin; Gabor Kaley; Thomas H Hintze
Journal:  Circ Res       Date:  2009-12-10       Impact factor: 17.367

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