Key result
Hypoxic 7 mM K+ reduces action and resting potentials vs 4 mM K+ in ischemic cells.
Why the study?
The electrophysiological differences between subepicardial and subendocardial cardiac cells under hypoxic and hyperkalemic conditions after coronary occlusion were not fully characterized.
p-value: p=<0.001
During regional hypoxia and hyperkalemia from acute coronary occlusion, heterogeneous electrophysiological changes occur between the subepicardium and subendocardium.
Moderate hyperkalemia may worsen ischemic cell inexcitability; leaves open translation of canine transmural heterogeneity to human arrhythmia risk.
The difference in the electrophysiological properties between the subepicardial cells and the subendocardial cells (Purkinje fibers and ordinary myocardial cells) was examined in dogs using a microelectrode technique. The preparations were obtained one hour after coronary occlusion. Immediately after exposure to a hypoxic solution, spontaneous activities could be recorded in neither the subepicardial nor the subendocardial cells. The electrical activities induced by electrical stimulation disappeared 5-10 min after exposure to the hypoxic solution in the subepicardial cells, while they remained in the subendocardial cells. Vmax, action potential amplitude, action potential duration and resting membrane potential of the subendocardial cells were all reduced significantly in the hypoxic solution containing 7 mK K+ in contrast to those in the hypoxic solution containing 4 mM K+ (p less than 0.001). In the hypoxic solution containing 15 mM K+, all cardiac cells depolarized partially and became electrically quiescent in both normal and ischemic cardiac cells. These findings support the idea that during regional hypoxia and hyperkalemia resulting from acute coronary occlusion, heterogeneous changes in electrical activities occur between the subepicardium and the subendocardium in the ischemic regions.
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Horio et al. (1982) studied Acute coronary occlusion (ischemia). Hypoxic solution with elevated potassium (7 mM or 15 mM K+) vs. Hypoxic solution containing 4 mM K+ was evaluated on Vmax, action potential amplitude, action potential duration, and resting membrane potential (p=<0.001). Exposure of ischemic dog cardiac cells to a hypoxic solution with 7 mM K+ significantly reduced Vmax, action potential amplitude and duration, and resting membrane potential compared to 4 mM K+ (p<0.001).
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