1997•Journal of Cardiovascular PharmacologyRequires access

L-Arginine Enhances Functional Recovery and Ca2+-Dependent Nitric Oxide Synthase Activity After Ischemia and Reperfusion in the Rat Heart

Qing‐Dong Wang, Edward Morcos, Peter N. Wiklund, John Pernow

Open publisher page 47 citations

Abstract

The effects of L-arginine on ischemia/reperfusion-induced myocardial dysfunction as well as the tissue activity of nitric oxide synthase (NOS) were investigated in rat isolated Langendorff-perfused hearts. Hearts were subjected to nonischemic perfusion or 30 min of global ischemia followed by 30 min of reperfusion. The hearts subjected to ischemia/reperfusion received either vehicle, L-arginine (1 mM), D-arginine (1 mM), the NOS inhibitor NG-nitro-L-arginine (L-NNA, 1 mM), or L-arginine (1 mM) plus L-NNA (1 mM) at the beginning of ischemia. L-Arginine but not D-arginine significantly enhanced the recoveries of left ventricular double product and coronary flow compared with the vehicle group. There was a substantial activity of Ca(2+)-dependent NOS but no significant Ca(2+)-independent NOS activity in the hearts undergoing 60 min of nonischemic perfusion. After ischemia/reperfusion, Ca(2+)-dependent NOS activity significantly decreased (by > 90%) in comparison with that of nonischemic hearts. L-Arginine increased the Ca(2+)-dependent NOS activity compared with the vehicle group to a level that was similar to that observed in nonischemic hearts. There was no difference in Ca(2+)-dependent NOS activity between vehicle- and D-arginine-treated groups. Administration of L-NNA abolished the beneficial effects of L-arginine on functional recovery and on Ca(2+)-dependent NOS activity. There were no significant Ca(2+)-independent NOS activities in any of the ischemic groups. These results suggest that myocardial ischemia/reperfusion reduces Ca(2+)-dependent NOS activity in the heart. Administration of L-arginine enhances myocardial function and preserves Ca(2+)-dependent NOS activity after ischemia/reperfusion through a pathway involving NOS activity.

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The effects of L-arginine on ischemia/reperfusion-induced myocardial dysfunction as well as the tissue activity of nitric oxide synthase (NOS) were investigated in rat isolated Langendorff-perfused hearts. Hearts were subjected to nonischemic perfusion or 30 min of global ischemia followed by 30 min of reperfusion. The hearts subjected to ischemia/reperfusion received either vehicle, L-arginine (1 mM), D-arginine (1 mM), the NOS inhibitor NG-nitro-L-arginine (L-NNA, 1 mM), or L-arginine (1 mM) plus L-NNA (1 mM) at the beginning of ischemia. L-Arginine but not D-arginine significantly enhanced the recoveries of left ventricular double product and coronary flow compared with the vehicle group. There was a substantial activity of Ca(2+)-dependent NOS but no significant Ca(2+)-independent NOS activity in the hearts undergoing 60 min of nonischemic perfusion. After ischemia/reperfusion, Ca(2+)-dependent NOS activity significantly decreased (by > 90%) in comparison with that of nonischemic hearts. L-Arginine increased the Ca(2+)-dependent NOS activity compared with the vehicle group to a level that was similar to that observed in nonischemic hearts. There was no difference in Ca(2+)-dependent NOS activity between vehicle- and D-arginine-treated groups. Administration of L-NNA abolished the beneficial effects of L-arginine on functional recovery and on Ca(2+)-dependent NOS activity. There were no significant Ca(2+)-independent NOS activities in any of the ischemic groups. These results suggest that myocardial ischemia/reperfusion reduces Ca(2+)-dependent NOS activity in the heart. Administration of L-arginine enhances myocardial function and preserves Ca(2+)-dependent NOS activity after ischemia/reperfusion through a pathway involving NOS activity.

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Available abstract

The effects of L-arginine on ischemia/reperfusion-induced myocardial dysfunction as well as the tissue activity of nitric oxide synthase (NOS) were investigated in rat isolated Langendorff-perfused hearts. Hearts were subjected to nonischemic perfusion or 30 min of global ischemia followed by 30 min of reperfusion. The hearts subjected to ischemia/reperfusion received either vehicle, L-arginine (1 mM), D-arginine (1 mM), the NOS inhibitor NG-nitro-L-arginine (L-NNA, 1 mM), or L-arginine (1 mM) plus L-NNA (1 mM) at the beginning of ischemia. L-Arginine but not D-arginine significantly enhanced the recoveries of left ventricular double product and coronary flow compared with the vehicle group. There was a substantial activity of Ca(2+)-dependent NOS but no significant Ca(2+)-independent NOS activity in the hearts undergoing 60 min of nonischemic perfusion. After ischemia/reperfusion, Ca(2+)-dependent NOS activity significantly decreased (by > 90%) in comparison with that of nonischemic hearts. L-Arginine increased the Ca(2+)-dependent NOS activity compared with the vehicle group to a level that was similar to that observed in nonischemic hearts. There was no difference in Ca(2+)-dependent NOS activity between vehicle- and D-arginine-treated groups. Administration of L-NNA abolished the beneficial effects of L-arginine on functional recovery and on Ca(2+)-dependent NOS activity. There were no significant Ca(2+)-independent NOS activities in any of the ischemic groups. These results suggest that myocardial ischemia/reperfusion reduces Ca(2+)-dependent NOS activity in the heart. Administration of L-arginine enhances myocardial function and preserves Ca(2+)-dependent NOS activity after ischemia/reperfusion through a pathway involving NOS activity.

Key concepts: Arginine, Ischemia, Nitric oxide, Nitric oxide synthase, Perfusion, Internal medicine, Medicine, Nitroarginine

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L-Arginine Enhances Functional Recovery and Ca2+-Dependent Nitric Oxide Synthase Activity After Ischemia and Reperfusion in the Rat Heart — Research Paper | ScholarLens