Intense treadmill exercise for 45 minutes significantly decreased the expression of endothelial NO synthase and tissue NOx levels in the hearts of rats compared to resting controls.
Cardiac myocytes produce nitric oxide (NO). We studied the effects of intense exercise on the expression of NO synthase (NOS) and the tissue level of nitrite (NO(2)(-))/nitrate (NO(3)(-)) (i.e., NOx), which are stable end products of NO in the heart. Rats ran on a treadmill for 45 min. Immediately after this exercise, the heart was quickly removed. Control rats remained at rest during the same 45-min period. The mRNA level of endothelial NOS (eNOS) in the heart was markedly lower in the exercised rats than in the control rats. Western blot analysis confirmed downregulation of eNOS protein in the heart after exercise. Tissue NOx level in the heart was significantly lower in the exercised rats than in the control rats. The present study revealed for the first time that production of NO in the heart is decreased by intense exercise. Because NO attenuates positive inotropic and chronotropic responses to beta(1)-adrenergic stimulation in the heart, the decrease in cardiac production of NO by intense exercise may contribute to the acceleration of increase in myocardial contractility and heart rate during intense exercise.
Iemitsu et al. (2000) studied Cardiac NO production. Intense exercise (treadmill running) vs. Rest was evaluated on eNOS mRNA/protein expression and tissue NOx level in the heart. Intense treadmill exercise for 45 minutes significantly decreased the expression of endothelial NO synthase and tissue NOx levels in the hearts of rats compared to resting controls.