Key result
The late Na(V)1.5 current inhibitor 2d (F 15741) prevented ischemia-reperfusion damage and reduced infarct size in a pig model of myocardial infarction without hemodynamic effects.
Why the study?
Does the late Na+ current inhibitor 2d (F 15741) reduce infarct size and ischemia-reperfusion damage in a pig model of myocardial infarction?
Does the late Na+ current inhibitor 2d (F 15741) reduce infarct size and ischemia-reperfusion damage in a pig model of myocardial infarction?
The novel late Na+ current inhibitor 2d (F 15741) demonstrates cardioprotective effects by reducing infarct size in a preclinical model of ischemia-reperfusion without altering hemodynamics.
Cardioprotection in pig MI model without hemodynamic effects; leaves open clinical translation of late NaV1.5 inhibition.
We report the discovery of a selective, potent inhibitor of the late current mediated by the cardiac isoform of the sodium channel (Na(V)1.5). The compound, 3,4-dihydro-N-[(2S)-3-[(2-hydroxy-3-methylphenyl)thio]-2-methylpropyl]-2H-(3R)-1,5-benzoxathiepin-3-amine (2d) (F 15741), blocks the late component of the Na(+) currents and greatly reduces veratridine- or ischemia-induced contracture in isolated tissue and whole heart. The cardioprotective action of 2d was further established in a model of myocardial infarction in the pig in which 2d prevents ischemia-reperfusion damage after 60 min of coronary occlusion and 48 h reperfusion. Under these experimental conditions, only 2d and cariporide reduce infarct size. Remarkably, myocardial protection afforded by 2d occurs in the absence of hemodynamic effects. These data expand the therapeutic potential of late I(Na) blockers and suggest that 2d could be useful in pathologies for which pharmacological treatments are not yet available.
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Grand et al. (2009) studied Myocardial infarction / ischemia-reperfusion damage. 2d (F 15741) was evaluated on Infarct size and ischemia-reperfusion damage. The late Na(V)1.5 current inhibitor 2d (F 15741) prevented ischemia-reperfusion damage and reduced infarct size in a pig model of myocardial infarction without hemodynamic effects.
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