Why the study?
Does increasing cell-cell coupling via Cx32 expression reduce infarct size and prevent ventricular tachycardia in mice following coronary occlusion?
Does increasing cell-cell coupling via Cx32 expression reduce infarct size and prevent ventricular tachycardia in mice following coronary occlusion?
Maintaining open gap junction channels via Cx32 expression following coronary occlusion increases infarct size without providing antiarrhythmic benefits in mice.
Questions benefit of Cx32-enhanced coupling in acute murine ischemia; leaves open connexin modulation for infarct or arrhythmia endpoints in higher species.
Increasing connexin43 (Cx43) gap junctional conductance as a means to improve cardiac conduction has been proposed as a novel antiarrhythmic modality. Yet, transmission of molecules via gap junctions may be associated with increased infarct size. To determine whether maintaining open gap junction channels impacts on infarct size and induction of ventricular tachycardia (VT) following coronary occlusion, we expressed the pH- and voltage-independent connexin isoform connexin32 (Cx32) in ventricle and confirmed Cx32 expression. Wild-type (WT) mice injected with adenovirus-Cx32 (Cx32inj) were examined following coronary occlusion to determine infarct size and inducibility of VT. There was an increased infarct size in Cx32inj hearts as compared to WT (WT 22.9 ± 4%; Cx32inj 44.3 ± 5%; p < 0.05). Programmed electrical stimulation showed no difference in VT inducibility in WT and Cx32inj mice (VT was reproducibly inducible in 55% of shams and 50% of Cx32inj mice (p > 0.05). Following coronary occlusion, improving cell-cell communication increased infarct size, and conferred no antiarrhythmic benefit.
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Prestia et al. (2011) studied this question.
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