Arena J P, Kass R S
Department of Physiology, University of Rochester Medical Center, New York 14642.
Circ Res. 1989 Aug;65(2):436-45. doi: 10.1161/01.res.65.2.436.
Pinacidil belongs to a novel group of compounds that enhance the potassium permeability of vascular smooth muscle. Evidence also exists that this drug enhances the potassium permeability of cardiac tissue. The purpose of the present investigation was to determine if pinacidil alters potassium-channel activity in heart and, if so, which potassium channel is the target. We used the whole-cell arrangement of the patch voltage clamp to record membrane currents from isolated guinea pig ventricular cells. In solutions designed to isolate potassium currents, pinacidil enhances a time-independent current positive to the potassium equilibrium potential. Current measured at voltages negative to the potassium equilibrium potential are essentially unaltered by the drug. The potassium sensitivity of outward current indicates that the target for the drug is a potassium channel. Experiments designed to test for voltage-dependent channel gating strongly suggest that the pinacidil-sensitive current is not voltage gated. Pinacidil-sensitive current is blocked by externally applied Ba2+, Cs+, and tetraethylammonium ion. In addition, it is potently blocked after external application of 100 nM glibenclamide. Taken along with the time- and voltage-independent properties of pinacidil-sensitive current, this pharmacology strongly suggests that the target for pinacidil in heart is the ATP-sensitive potassium channel.
吡那地尔属于一类新型化合物,可增强血管平滑肌的钾通透性。也有证据表明该药物可增强心脏组织的钾通透性。本研究的目的是确定吡那地尔是否改变心脏中的钾通道活性,如果是,哪个钾通道是其作用靶点。我们使用膜片钳电压钳的全细胞模式记录分离的豚鼠心室细胞的膜电流。在旨在分离钾电流的溶液中,吡那地尔增强了一个相对于钾平衡电位为正的非时间依赖性电流。在低于钾平衡电位的电压下测量的电流基本上不受该药物影响。外向电流的钾敏感性表明该药物的作用靶点是一个钾通道。旨在测试电压依赖性通道门控的实验强烈表明,吡那地尔敏感电流不是电压门控的。吡那地尔敏感电流被外部施加的Ba2+、Cs+和四乙铵离子阻断。此外,在外部施加100 nM格列本脲后,它被有效阻断。结合吡那地尔敏感电流的时间和电压非依赖性特性,这种药理学强烈表明吡那地尔在心脏中的作用靶点是ATP敏感性钾通道。