Dong Min, Sun Xiaoyin, Prinz Astrid A, Wang Hong-Sheng
Dept. of Pharmacology and Cell Biophysics, Univ. of Cincinnati College of Medicine, Cincinnati, Ohio 45267-0575, USA.
Am J Physiol Heart Circ Physiol. 2006 Aug;291(2):H631-7. doi: 10.1152/ajpheart.00084.2006. Epub 2006 Mar 24.
The transient outward current (I(to)) is a major repolarizing current in the heart. Marked reduction of I(to) density occurs in heart failure and is accompanied by significant action potential duration (APD) prolongation. To understand the species-dependent role of I(to) in regulating the ventricular action potential morphology and duration, we introduced simulated I(to) conductance in guinea pig and canine endocardial ventricular myocytes using the dynamic clamp technique and perforated patch-clamp recordings. The effects of simulated I(to) in both types of cells were complex and biphasic, separated by a clear density threshold of approximately 40 pA/pF. Below this threshold, simulated I(to) resulted in a distinct phase 1 notch and had little effect on or moderately prolonged the APD. I(to) above the threshold resulted in all-or-none repolarization and precipitously reduced the APD. Qualitatively, these results agreed with our previous studies in canine ventricular cells using whole cell recordings. We conclude that 1) contrary to previous gene transfer studies involving the Kv4.3 current, the response of guinea pig ventricular myocytes to a fully inactivating I(to) is similar to that of canine ventricular cells and 2) in animals such as dogs that have a broad cardiac action potential, I(to) does not play a major role in setting the APD.
瞬时外向电流(I(to))是心脏中的主要复极电流。心力衰竭时I(to)密度显著降低,并伴有动作电位时程(APD)明显延长。为了解I(to)在调节心室动作电位形态和时程中的物种依赖性作用,我们使用动态钳技术和穿孔膜片钳记录,在豚鼠和犬心内膜心室肌细胞中引入模拟I(to)电导。模拟I(to)在两种类型细胞中的作用复杂且呈双相性,由约40 pA/pF的明确密度阈值分隔。低于该阈值时,模拟I(to)导致明显的1期切迹,对APD影响不大或使其适度延长。高于阈值的I(to)导致全或无复极并急剧缩短APD。定性地说,这些结果与我们之前使用全细胞记录对犬心室细胞的研究一致。我们得出结论:1)与先前涉及Kv4.3电流的基因转移研究相反,豚鼠心室肌细胞对完全失活的I(to)的反应与犬心室细胞相似;2)在具有宽心脏动作电位的动物如狗中,I(to)在设定APD方面不起主要作用。