Key result
Zofenopril and captopril exerted cardioprotection in isolated ischemic rabbit hearts, improving mechanical function and reducing norepinephrine release, with zofenopril being more potent.
Why the study?
Do zofenopril and captopril reduce functional and metabolic damage in isolated rabbit hearts subjected to ischemia and reperfusion?
Do zofenopril and captopril reduce functional and metabolic damage in isolated rabbit hearts subjected to ischemia and reperfusion?
Zofenopril and captopril provide cardioprotection against ischemia and reperfusion injury in isolated rabbit hearts, potentially mediated by a reduction in norepinephrine release.
Preclinical rabbit data do not alter practice; leaves open whether zofenopril's potency translates to human ischemia-reperfusion injury.
We assessed whether local inhibition of myocardial converting enzyme by captopril and zofenopril reduces the functional and metabolic damage caused by ischemia and reperfusion. First we investigated the effects of zofenopril and captopril on the mechanical function, cellular redox state, and norepinephrine (NE) content of isolated and aerobically perfused rabbit hearts. Both drugs failed to modify the myocardial redox state. At concentrations > 10(-6) M, zofenopril, but not captopril, caused a reduction in myocardial NE content. At 10(-4) M, both drugs caused a reduction in developed pressure and an increase in diastolic pressure and release of creatine phosphokinase (CPK). Second we investigated their effects on ischemic and reperfused myocardium. Both drugs exerted a cardioprotection; zofenopril was always more potent than captopril. Recovery of developed pressure on reperfusion improved, and peak release of NE was reduced, as was release of CPK. Calcium homeostasis and mitochondrial function were maintained. Captopril had no effect on occurrence of oxidative stress during reperfusion, whereas zofenopril reduced it. In hearts treated with the converting enzyme inhibitors, peak release of NE was correlated to mitochondrial calcium content, production of ATP, and recovery of mechanical function on reperfusion. These data suggest that the cardioprotective effect of zofenopril and captopril is independent of hemodynamic changes or reduction of the toxicity of oxygen free radicals and that it could be related to a reduction in release of NE.
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Ferrari et al. (1992) studied Myocardial ischemia and reperfusion. Zofenopril and captopril was evaluated on Mechanical function, cellular redox state, and norepinephrine content. Zofenopril and captopril exerted cardioprotection in isolated ischemic rabbit hearts, improving mechanical function and reducing norepinephrine release, with zofenopril being more potent.
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