AbstractObjectives: The preconditioning effects of the adjunctive, cardiac-specific sodium-hydrogen ion exchange inhibitor cariporide (cariporide mesilate, HOE 642) were studied in hearts subjected to 30 minutes of normothermic ischemia and reperfusion to assess myocardial and endothelial changes. Methods: Sixteen Yorkshire-Duroc pigs (27-34 kg) receiving cardiopulmonary bypass underwent either cardiopulmonary bypass alone (control, n = 4) or 30 minutes of normothermic ischemia, followed by 30 minutes of blood reperfusion (n = 12). Six hearts were treated with 5 mg/kg cariporide administered intravenously 15 minutes before ischemia. Results: Cardiopulmonary bypass alone caused no changes. Conversely, 30 minutes of global normothermic ischem...
Intracellular myocardial Na+ overload during ischemia is an important cause of reperfusion injury vi...
AbstractBackground: Preconditioning and inhibition of sodium-proton exchange attenuate myocardial is...
AbstractBackground: Activation of the sodium-hydrogen ion exchange mechanism results in accumulation...
AbstractObjectives: The preconditioning effects of the adjunctive, cardiac-specific sodium-hydrogen ...
International audienceCariporide, an Na/H exchanger inhibitor, is a drug with cardioprotective prope...
Background—The transmembrane sodium/hydrogen exchanger maintains myocardial cell pH integrity during...
Background. The EXPEDITION study addressed the efficacy and safety of inhibiting the sodium hydrogen...
AbstractBackgroundA mechanism for myocardial dysfunction after ischemia and reperfusion is Na+/H+ ex...
International audienceHyperglycemia encountered during diabetes triggers abnormalities of vascular f...
BACKGROUND: The EXPEDITION study addressed the efficacy and safety of inhibiting the sodium hydrogen...
AbstractObjective: This study was designed to compare ischemic preconditioning with opening of mitoc...
The protective effect of the Na+/H+ exchange inhibitor HOE 694 was tested in porcine hearts subjecte...
AbstractObjective: We sought to determine whether pretreatment with a sodium/hydrogen-exchange inhib...
Intracellular myocardial Na+ overload during ischemia is an important cause of reperfusion injury vi...
Hypoxia often leads to severe cardiac malfunctions. It is assumed that intracellular calcium overloa...
Intracellular myocardial Na+ overload during ischemia is an important cause of reperfusion injury vi...
AbstractBackground: Preconditioning and inhibition of sodium-proton exchange attenuate myocardial is...
AbstractBackground: Activation of the sodium-hydrogen ion exchange mechanism results in accumulation...
AbstractObjectives: The preconditioning effects of the adjunctive, cardiac-specific sodium-hydrogen ...
International audienceCariporide, an Na/H exchanger inhibitor, is a drug with cardioprotective prope...
Background—The transmembrane sodium/hydrogen exchanger maintains myocardial cell pH integrity during...
Background. The EXPEDITION study addressed the efficacy and safety of inhibiting the sodium hydrogen...
AbstractBackgroundA mechanism for myocardial dysfunction after ischemia and reperfusion is Na+/H+ ex...
International audienceHyperglycemia encountered during diabetes triggers abnormalities of vascular f...
BACKGROUND: The EXPEDITION study addressed the efficacy and safety of inhibiting the sodium hydrogen...
AbstractObjective: This study was designed to compare ischemic preconditioning with opening of mitoc...
The protective effect of the Na+/H+ exchange inhibitor HOE 694 was tested in porcine hearts subjecte...
AbstractObjective: We sought to determine whether pretreatment with a sodium/hydrogen-exchange inhib...
Intracellular myocardial Na+ overload during ischemia is an important cause of reperfusion injury vi...
Hypoxia often leads to severe cardiac malfunctions. It is assumed that intracellular calcium overloa...
Intracellular myocardial Na+ overload during ischemia is an important cause of reperfusion injury vi...
AbstractBackground: Preconditioning and inhibition of sodium-proton exchange attenuate myocardial is...
AbstractBackground: Activation of the sodium-hydrogen ion exchange mechanism results in accumulation...