Background: Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductance calcium‐activated potassium (SK) channels are present in PCs remains unclear. We tested the hypotheses that subtype 2 SK (SK2) channel proteins and apamin‐sensitive SK currents are abundantly present in PCs. Methods and Results: We studied 25 normal rabbit ventricles, including 13 patch‐clamp studies, 4 for Western blotting, and 8 for immunohistochemical staining. Transmembrane action potentials were recorded in current‐clamp mode using the perforated‐patch technique. For PCs, the apamin (100 nmol/L) significantly prolonged action potential duration measured to 80% repolarization by an average of 10.4 ms (95% CI, 0.11–20.72) (n=9, P=0.047)....
Background Apamin sensitive small-conductance Ca2+-activated K+ (SK) channels are gated by intracel...
Ability of intracellular calcium to open K+-selective channels in an excitable membrane and to haste...
Small-conductance Ca2+-activated K+ (SK, KCa2) channels are encoded by KCNN genes, including KCNN1, ...
Background Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
BACKGROUND: The transmural distribution of apamin-sensitive small conductance Ca(2+)-activated K(+) ...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
Background: Small conductance potassium channels (SK) channels have been shown to participate specif...
Background: Hypokalemia increases the vulnerability to ventricular fibrillation (VF). We hypothesize...
BACKGROUND: We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Background-—We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Small-conductance Ca2+-activated K+ (SK) currents are important in the repolarization of normal atri...
BACKGROUND: Ventricular fibrillation (VF) during heart failure is characterized by stable reentra...
Cardiac Purkinje fibers (PFs) play a very important role in cardiac electrophysiology. They are cru...
Background Apamin sensitive small-conductance Ca2+-activated K+ (SK) channels are gated by intracel...
Ability of intracellular calcium to open K+-selective channels in an excitable membrane and to haste...
Small-conductance Ca2+-activated K+ (SK, KCa2) channels are encoded by KCNN genes, including KCNN1, ...
Background Purkinje cells (PCs) are important in cardiac arrhythmogenesis. Whether small‐conductanc...
BACKGROUND: The transmural distribution of apamin-sensitive small conductance Ca(2+)-activated K(+) ...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
Background: Small conductance potassium channels (SK) channels have been shown to participate specif...
Background: Hypokalemia increases the vulnerability to ventricular fibrillation (VF). We hypothesize...
BACKGROUND: We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Background-—We previously reported that IKAS are heterogeneously upregulated in failing rabbit ventr...
BackgroundHypokalemia increases the vulnerability to ventricular fibrillation. We hypothesize that t...
Small-conductance Ca2+-activated K+ (SK) currents are important in the repolarization of normal atri...
BACKGROUND: Ventricular fibrillation (VF) during heart failure is characterized by stable reentra...
Cardiac Purkinje fibers (PFs) play a very important role in cardiac electrophysiology. They are cru...
Background Apamin sensitive small-conductance Ca2+-activated K+ (SK) channels are gated by intracel...
Ability of intracellular calcium to open K+-selective channels in an excitable membrane and to haste...
Small-conductance Ca2+-activated K+ (SK, KCa2) channels are encoded by KCNN genes, including KCNN1, ...