AbstractThe effects of divalent cations on the E-4031-sensitive repolarization current (IKr) were studied in single ventricular myocytes isolated from rabbit hearts. One group of divalent cations (Cd2+, Ni2+, Co2+, and Mn2+) produced a rightward shift of the IKr activation curve along the voltage axis, increased the maximum IKr amplitude (i.e., relieved the apparent inward rectification of the channel), and accelerated IKr tail current kinetics. Another group (Ca2+, Mg2+ and Sr2+) had relatively little effect on IKr. The only divalent cation that blocked IKr was Zn2+ (0.1–1mM). Under steady-state conditions, Ba2+ caused a substantial block of IK1, as previously reported. However, block by Ba2+ was time dependent, which precluded a study of ...
Ferret atrial myocytes can display an E-4031-sensitive current (IKr) that is similar to that previou...
International audienceAdult ventricular myocytes lose T-tubules over few days in culture, which caus...
The inward rectifier K+ current (IK1) plays an important role in terminal repolarization and stabili...
AbstractThe effects of divalent cations on the E-4031-sensitive repolarization current (IKr) were st...
We have measured the E-4031-sensitive repolarization current (IKr) in single ventricular myocytes is...
The delayed rectifier potassium current IKr (hERG) participates in repolarization of the cardiac act...
Currents contributing repolarization in rabbit ventricular myocytes are very complex because the I-I...
AbstractWe investigated the effect of combined inhibition of oxidative and glycolytic metabolism on ...
Key points[Ca2+ ]i enhanced rabbit ventricular slowly activating delayed rectifier K+ current (IKs )...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
BackgroundElectrophysiological remodeling and increased susceptibility for cardiac arrhythmias are h...
Astract: The aim of this work was to investigate whether the inward rectifying current Ik1 participa...
Astract: The aim of this work was to investigate whether the inward rectifying current Ik1 participa...
Using various voltage clamp protocols, we have examined the activation and deactivation kinetics of ...
The potassium selective, inward rectifier current (IK1) is known to be responsible for maintaining t...
Ferret atrial myocytes can display an E-4031-sensitive current (IKr) that is similar to that previou...
International audienceAdult ventricular myocytes lose T-tubules over few days in culture, which caus...
The inward rectifier K+ current (IK1) plays an important role in terminal repolarization and stabili...
AbstractThe effects of divalent cations on the E-4031-sensitive repolarization current (IKr) were st...
We have measured the E-4031-sensitive repolarization current (IKr) in single ventricular myocytes is...
The delayed rectifier potassium current IKr (hERG) participates in repolarization of the cardiac act...
Currents contributing repolarization in rabbit ventricular myocytes are very complex because the I-I...
AbstractWe investigated the effect of combined inhibition of oxidative and glycolytic metabolism on ...
Key points[Ca2+ ]i enhanced rabbit ventricular slowly activating delayed rectifier K+ current (IKs )...
Introduction Apamin-sensitive small-conductance calcium-activated potassium current (IKAS) is inc...
BackgroundElectrophysiological remodeling and increased susceptibility for cardiac arrhythmias are h...
Astract: The aim of this work was to investigate whether the inward rectifying current Ik1 participa...
Astract: The aim of this work was to investigate whether the inward rectifying current Ik1 participa...
Using various voltage clamp protocols, we have examined the activation and deactivation kinetics of ...
The potassium selective, inward rectifier current (IK1) is known to be responsible for maintaining t...
Ferret atrial myocytes can display an E-4031-sensitive current (IKr) that is similar to that previou...
International audienceAdult ventricular myocytes lose T-tubules over few days in culture, which caus...
The inward rectifier K+ current (IK1) plays an important role in terminal repolarization and stabili...