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首页> 外文期刊>Journal of cardiovascular electrophysiology >L-type calcium current reactivation contributes to arrhythmogenesis associated with action potential triangulation.
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L-type calcium current reactivation contributes to arrhythmogenesis associated with action potential triangulation.

机译:L型钙电流的重新激活有助于与动作电位三角测量相关的心律失常。

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INTRODUCTION: The morphology of the mammalian cardiac action potential (AP) is an important factor in the susceptibility to drug-induced early afterdepolarizations (EADs) that may initiate torsade de pointes (TdP). AP triangulation has been shown to be an important predictor of drug-induced TdP. METHODS AND RESULTS: APs from guinea pig and rabbit left ventricular single myocytes were recorded using a microelectrode-recording technique. I(Ca-L) currents were recorded in ventricular myocytes of guinea pig and rabbit using patch-clamping technique. At a stimulus frequency of 0.5 Hz, guinea pig ventricular myocytes displayed a square-like AP, whereas rabbit ventricular myocytes exhibited a triangle-like AP. Dofetilide-induced EADs were observed only in rabbit ventricular myocytes. Under the guinea pig AP clamping condition, the normalized I(Ca-L) instant reactivation currents in guinea pig and rabbit myocytes at voltages of -40 mV were 0.13 +/- 0.01 and 0.14 +/- 0.01, respectively. However, when rabbit AP served as the first clamping voltage, the normalized I(Ca-L) reactivation currents at -40 mV in guinea pig and rabbit myocytes were 0.20 +/- 0.01, 0.21 +/- 0.01, respectively, indicating that the I(Ca-L) recovery from inactivation in the rabbit triangular AP condition was significantly faster than in the guinea pig square AP condition. Comparison of the voltage clamp using the triangular waveform with the square waveform further confirmed that triangulation accelerates I(Ca-L) recovery from inactivation. CONCLUSIONS: In rabbit ventricular myocardium, AP triangulation accelerates I(Ca-L) channel recovery from inactivation, leading to instability of the cell membrane potential during repolarization, which is capable of initiating TdP.
机译:简介:哺乳动物心脏动作电位(AP)的形态是易感性药物诱发的早期除极极化(EAD)的重要因素,而这种极化可能会引发尖端扭转型室速(TdP)。 AP三角剖分已显示是药物诱导的TdP的重要预测因子。方法与结果:采用微电极记录技术记录了豚鼠和兔左心室单核细胞的AP。使用膜片钳技术在豚鼠和兔的心室肌细胞中记录I(Ca-L)电流。在0.5 Hz的刺激频率下,豚鼠心室肌​​细胞表现出正方形AP,而兔心室肌细胞表现出三角形AP。多非利特诱导的EAD仅在兔心室肌细胞中观察到。在豚鼠AP钳位条件下,豚鼠和兔心肌细胞在-40 mV电压下的标准化I(Ca-L)即时再激活电流分别为0.13 +/- 0.01和0.14 +/- 0.01。但是,当兔AP作为第一个钳位电压时,豚鼠和兔心肌细胞在-40 mV的归一化I(Ca-L)再激活电流分别为0.20 +/- 0.01、0.21 +/- 0.01。 I(Ca-L)在兔子三角AP状态下从失活中恢复的速度明显快于豚鼠方形AP状态。使用三角波形和方波形的电压钳比较结果进一步证实,三角剖分可加速I(Ca-L)从失活中的恢复。结论:在兔心室心肌中,AP三角剖分加速了失活过程中I(Ca-L)通道的恢复,从而导致复极化过程中细胞膜电位的不稳定,从而能够启动TdP。

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