Tsuchida K, Kaneko K, Aihara H
Research Center, Taisho Pharmaceutical Co., Ltd., Saitama, Japan.
J Cardiovasc Pharmacol. 1991 Nov;18(5):769-76. doi: 10.1097/00005344-199111000-00016.
We examined the calcium antagonistic action of CD-349, a dihydropyridine derivative, on goat cardiac Purkinje fibers using the two-microelectrode voltage-clamp method. CD-349 at a concentration of 10(-5) M shortened the action potential duration without changing the maximum rise in the action potential (Vmax) in goat Purkinje fibers. CD-349 at 3 x 10(-7) to 3 x 10(-6) M inhibited the slow inward current (Isi) in a concentration-dependent manner. At the holding potential of -55 mV, CD-349 exerted a tonic block of Isi, and, furthermore, it exerted a use-dependent block at a frequency range of 1 Hz, but it did not exert a use-dependent block at 0.5 and 0.2 Hz. This may be because CD-349 delayed the recovery process from the inactivation of Isi. The amplitude of the block of Isi was larger at the holding potential of -45 mV than at -55 mV. The inactivation curve of Isi shifted toward a negative potential in the presence of CD-349. Nifedipine also exerted a tonic block of Isi. The onset of the action of nifedipine was quicker than that of CD-349 or nitrendipine. A use-dependent block at 1 Hz and delay of the recovery process from inactivation was also observed with nifedipine. The inactivation curve shifted toward the negative potential with nifedipine. On washout of the drugs, the effects of CD-349 or nitrendipine were not readily reversed compared with those of nifedipine. CD-349 had no effect on either inward rectifying (IK1) or delayed outward potassium (IK) or hyperpolarization-activated inward (If) currents. These observations suggest that, in cardiac tissues, CD-349 selectively inhibits the calcium current, presumably by acting on the inactivated channel.
我们采用双微电极电压钳法,研究了二氢吡啶衍生物CD - 349对山羊心脏浦肯野纤维的钙拮抗作用。浓度为10(-5) M的CD - 349可缩短山羊浦肯野纤维的动作电位时程,而不改变动作电位的最大上升速率(Vmax)。浓度为3×10(-7)至3×10(-6) M的CD - 349以浓度依赖的方式抑制慢内向电流(Isi)。在 - 55 mV的钳制电位下,CD - 349对Isi产生持续性阻断,此外,在1 Hz的频率范围内它还产生使用依赖性阻断,但在0.5 Hz和0.2 Hz时不产生使用依赖性阻断。这可能是因为CD - 349延迟了Isi失活后的恢复过程。在 - 45 mV的钳制电位下,Isi的阻断幅度比在 - 55 mV时更大。在CD - 349存在的情况下,Isi的失活曲线向负电位方向移动。硝苯地平也对Isi产生持续性阻断。硝苯地平的作用起效比CD - 349或尼群地平更快。硝苯地平在1 Hz时也观察到使用依赖性阻断以及失活后恢复过程的延迟。硝苯地平使失活曲线向负电位方向移动。与硝苯地平相比,洗脱药物后,CD - 349或尼群地平的作用不容易逆转。CD - 349对内向整流钾电流(IK1)、延迟外向钾电流(IK)或超极化激活内向电流(If)均无影响。这些观察结果表明,在心脏组织中,CD - 349可能通过作用于失活通道选择性地抑制钙电流。