Modulation of the cGMP/PKG pathway may be a therapeutic target in the context of myocardial infarction to mediate cardioprotection during myocardial reperfusion.
Does modulation of the cGMP/PKG pathway improve cardioprotection and reduce reperfusion injury in myocardial infarction?
Modulation of the cGMP/PKG pathway represents a promising therapeutic target to mitigate reperfusion injury and reduce infarct size following myocardial infarction.
Cardiomyocyte cell death occurring during myocardial reperfusion (reperfusion injury) contributes to final infarct size after transient coronary occlusion. Different interrelated mechanisms of reperfusion injury have been identified, including alterations in cytosolic Ca(2+) handling, sarcoplasmic reticulum-mediated Ca(2+) oscillations and hypercontracture, proteolysis secondary to calpain activation and mitochondrial permeability transition. All these mechanisms occur during the initial minutes of reperfusion and are inhibited by intracellular acidosis. The cGMP/PKG pathway modulates the rate of recovery of intracellular pH, but has also direct effect on Ca(2+) oscillations and mitochondrial permeability transition. The cGMP/PKG pathway is depressed in cardiomyocytes by ischaemia/reperfusion and preserved by ischaemic postconditioning, which importantly contributes to postconditioning protection. The present article reviews the mechanisms and consequences of the effect of ischaemic postconditioning on the cGMP/PKG pathway, the different pharmacological strategies aimed to stimulate it during myocardial reperfusion and the evidence, limitations and promise of translation of these strategies to the clinical practice. Overall, the preclinical and clinical evidence suggests that modulation of the cGMP/PKG pathway may be a therapeutic target in the context of myocardial infarction.
Inserte et al. (Thu,) conducted a review in Myocardial infarction and reperfusion injury. Modulation of the cGMP/PKG pathway was evaluated. Modulation of the cGMP/PKG pathway may be a therapeutic target in the context of myocardial infarction to mediate cardioprotection during myocardial reperfusion.