Kodama I, Wakabayashi S, Toyama J, Shibata S, Yamada K
Department of Circulation and Respiration, Nagoya University, Japan.
J Cardiovasc Pharmacol. 1988 Jun;11(6):687-93. doi: 10.1097/00005344-198806000-00009.
The effects of KT-362, a newly synthesized vasodilating and antiarrhythmic agent, on transmembrane action potentials were examined in isolated papillary muscles of guinea pig. KT-362 (3 x 10(-6) to 3 x 10(-5) M) caused a dose-dependent decrease in the maximum upstroke velocity (Vmax) of the action potential without affecting the resting potential. In the presence of KT-362, trains of stimuli at rates greater than or equal to 0.2 Hz led to an exponential decline in Vmax. This use-dependent block was enhanced at higher stimulation frequency. The time constant for the recovery of Vmax from the use-dependent block was 2.8-2.9 s. The curves relating membrane potential and Vmax were shifted by KT-362 (10(-5) M) in the direction of more negative potentials (8.6 mV). In papillary muscles treated with KT-362 (10(-5) M), the Vmax of test action potential preceded by conditioning clamp pulses to 0 mV was progressively decreased with increasing number of pulses, while it was little affected by the duration of each clamp pulse within the range from 10 to 700 ms. These findings suggest that KT-362 has quinidine-like use-dependent inhibitory action on the fast sodium channel of cardiac muscles by the binding to the channel mainly during its activated state. At high concentrations (greater than or equal to 3 x 10(-5) M), KT-362 also suppressed the slow action potential in K+ depolarized papillary muscles.
研究了新合成的血管舒张和抗心律失常药物KT - 362对豚鼠离体乳头肌跨膜动作电位的影响。KT - 362(3×10⁻⁶至3×10⁻⁵M)可使动作电位的最大上升速度(Vmax)呈剂量依赖性降低,而不影响静息电位。在存在KT - 362的情况下,频率大于或等于0.2Hz的刺激序列会导致Vmax呈指数下降。这种使用依赖性阻滞在较高刺激频率下增强。Vmax从使用依赖性阻滞中恢复的时间常数为2.8 - 2.9秒。膜电位与Vmax的关系曲线因KT - 362(10⁻⁵M)而向更负电位方向移动(8.6mV)。在用KT - 362(10⁻⁵M)处理的乳头肌中,在给予0mV的条件钳制脉冲后,测试动作电位的Vmax随着脉冲数增加而逐渐降低,而在10至700ms范围内,每个钳制脉冲的持续时间对其影响很小。这些发现表明,KT - 362主要在其激活状态下与心肌快速钠通道结合,对其具有类似奎尼丁的使用依赖性抑制作用。在高浓度(大于或等于3×10⁻⁵M)时,KT - 362还可抑制K⁺去极化乳头肌中的慢动作电位。