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Effects of the transient outward potassium current on action potential upstroke velocities tested using the dynamic clamp technique

机译:瞬态向外钾电流对使用动态钳位技术测试的动作电位上冲速度的影响

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The voltage-gated transient outward potassium current (Ito1) plays a prominent role in the early repolarization phase of the cardiac action potential (AP) and thereby contributes to the refractory period and inotropic state of the myocardium. The current is largely responsible for differences in AP repolarization between species, between left and right ventricle, and transmurally, and it is affected by various pathophysiological conditions, such as heart failure. In voltage clamp experiments, Ito1 already activates during depolarization to potentials near -50 to -30 mV, suggesting that Ito1 may be active during the AP upstroke, but whether it modulates the maximal AP upstroke velocity (dV/dtmax) is unknown. In the present study, we addressed this issue using the dynamic clamp configuration of the patch-clamp technique. Experimental data were acquired from HEK-293 cells expressing the fast sodium current that is responsible for the rapid cardiac AP upstroke. The fast component of Ito1 (Ito, f) was computed in real time and injected into the HEK-293 cell during its upstroke. Ito, f density, activation rate, and voltage dependence were varied. We conclude that Ito, f may modulate dV/dtmax and AP overshoot, but only if its activation is fast and its activation threshold is near -50 to -40 mV.
机译:电压门控的瞬时向外钾电流(Ito1)在心脏动作电位(AP)的早期复极化阶段起着重要作用,从而有助于心肌的不应期和变力状态。电流是造成物种之间,左心室和右心室之间以及透壁的AP复极分化差异的主要原因,并且受各种病理生理状况(例如心力衰竭)的影响。在电压钳实验中,Ito1在去极化过程中已经激活到接近-50至-30 mV的电位,这表明Ito1可能在AP上扬期间处于活动状态,但是尚不清楚它是否调节了最大的AP上扬速度(dV / dtmax)。在本研究中,我们使用膜片钳技术的动态钳位配置解决了这个问题。从表达快速钠电流的HEK-293细胞获得实验数据,该钠电流负责快速心脏AP上冲。实时计算Ito1的快速成分(Ito,f),并在其上冲程期间将其注入HEK-293细胞。 Ito,f密度,激活速率和电压依赖性均发生了变化。我们得出的结论是,Ito,f可能会调制dV / dtmax和AP过冲,但前提是其激活速度很快且其激活阈值接近-50至-40 mV。

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