ObjectiveThe inhibition of adenosine deaminase with erythro-9 (2-hydroxy-3-nonyl)-adenine (EHNA) and the es-ENT1 transporter with p-nitro-benzylthioinosine (NBMPR), entraps myocardial intracellular adenosine during on-pump warm aortic crossclamping, leading to a complete recovery of cardiac function and adenosine triphosphate (ATP) during reperfusion. The differential role of entrapped intracellular and circulating adenosine in EHNA/NBMPR-mediated protection is unknown. Selective (8-cyclopentyl-1,3-dipropyl-xanthine) or nonselective [8-(p-sulfophenyl)theophyline] A1 receptor antagonists were used to block adenosine A1-receptor contribution in EHNA/NBMPR-mediated cardiac recovery.MethodsAnesthetized dogs (n = 45), instrumented to measure hea...
To evaluate the role of adenosine receptors in the mediation of adenosine-induced protection of the ...
Adenosine protects myocardium from ischemia and reperfusion damage; however, the mechanism of action...
To determine the mechanism by which AMP 579, an adenosine A1/A2 agonist, administered at reperfusion...
ObjectiveThe inhibition of adenosine deaminase with erythro-9 (2-hydroxy-3-nonyl)-adenine (EHNA) and...
ObjectiveTo determine the role of the p-nitrobenzylthioinosine-sensitive equilibrative nucleoside tr...
Adenosine, a catabolite of ATP, exerts numerous effects in the heart, including modulation of the ca...
Ischemic heart disease is the most common type of cardiovascular disease. The Australian Institute o...
AbstractThis study was designed to determine whether intermittent warm aortic crossclamping induces ...
ObjectiveSimultaneous inhibition of the cardiac equilibrative-p-nitrobenzylthioinosine (NBMPR)–sensi...
The relative roles of mitochondrial (mito) ATP-sensitive K+ (mitoKATP) channels, protein kinase C (P...
Adenosine is a purine nucleoside, which is produced primarily through the metabolism of adenosine tr...
1. By selectively modifying adenosine metabolism via adenosine deaminase or adenosine kinase inhibit...
The relative roles of mitochondrial (mito) ATP-sensitive K+ (mitoKATP) channels, protein kinase C (P...
Recent reports have shown that adenosine A1 receptor-mediated cardioprotection requires concomitant ...
We aimed to test if stimulation of both adenosine A2A and A2B receptors is required to produce an ef...
To evaluate the role of adenosine receptors in the mediation of adenosine-induced protection of the ...
Adenosine protects myocardium from ischemia and reperfusion damage; however, the mechanism of action...
To determine the mechanism by which AMP 579, an adenosine A1/A2 agonist, administered at reperfusion...
ObjectiveThe inhibition of adenosine deaminase with erythro-9 (2-hydroxy-3-nonyl)-adenine (EHNA) and...
ObjectiveTo determine the role of the p-nitrobenzylthioinosine-sensitive equilibrative nucleoside tr...
Adenosine, a catabolite of ATP, exerts numerous effects in the heart, including modulation of the ca...
Ischemic heart disease is the most common type of cardiovascular disease. The Australian Institute o...
AbstractThis study was designed to determine whether intermittent warm aortic crossclamping induces ...
ObjectiveSimultaneous inhibition of the cardiac equilibrative-p-nitrobenzylthioinosine (NBMPR)–sensi...
The relative roles of mitochondrial (mito) ATP-sensitive K+ (mitoKATP) channels, protein kinase C (P...
Adenosine is a purine nucleoside, which is produced primarily through the metabolism of adenosine tr...
1. By selectively modifying adenosine metabolism via adenosine deaminase or adenosine kinase inhibit...
The relative roles of mitochondrial (mito) ATP-sensitive K+ (mitoKATP) channels, protein kinase C (P...
Recent reports have shown that adenosine A1 receptor-mediated cardioprotection requires concomitant ...
We aimed to test if stimulation of both adenosine A2A and A2B receptors is required to produce an ef...
To evaluate the role of adenosine receptors in the mediation of adenosine-induced protection of the ...
Adenosine protects myocardium from ischemia and reperfusion damage; however, the mechanism of action...
To determine the mechanism by which AMP 579, an adenosine A1/A2 agonist, administered at reperfusion...