Bychkov R, Gollasch M, Ried C, Luft F C, Haller H
Franz Volhard Clinic, Virchow University Hospitals, Berlin, Germany.
Am J Physiol. 1997 Jul;273(1 Pt 1):C161-71. doi: 10.1152/ajpcell.1997.273.1.C161.
We investigated pinacidil-activated K+ currents in vascular smooth muscle cells (VSMC) from human coronary arteries with the patch-clamp method. In 19 of 54 VSMC, pinacidil (1 and 20 microM) induced a large, nonrectifying, outward current [IK(ATP)] and increased voltage-dependent outward K+ currents [IK(Ca)] positive to voltages of -25 mV. The pinacidil-induced (1 microM) IK(ATP) was blocked by glibenclamide (3 microM) but was not affected by iberiotoxin (100-300 nM). Pinacidil activated up to 150 functionally active ATP-dependent K+ channels (KATP channels) per cell with a single-channel conductance of approximately 17 pS at physiological membrane potentials (between -80 and -30 mV) and K+ gradients (6 mM/130 mM). In 26 of 54 VSMC, on the other hand, pinacidil (1-20 microM) failed to induce IK(ATP) but increased IK(Ca). This current was completely blocked by iberiotoxin (100-300 nM) and tetraethylammonium (1 mM) but not by glibenclamide (3 microM). The single-channel conductance of the channel underlying IK(Ca) was approximately 150 +/- 16 pS between -10 and +30 mV, consistent with large-conductance, maxi Ca(2+)-activated, K+ channels (BKCa channels). We conclude that pinacidil is a nonselective K+ channel opener targeting KATP and BKCa channels. Furthermore, the conductance of KATP channels in human coronary arteries is likely to be small under physiological conditions.
我们采用膜片钳技术研究了吡那地尔对人冠状动脉血管平滑肌细胞(VSMC)中钾离子电流的激活作用。在54个VSMC中,有19个细胞,吡那地尔(1和20微摩尔)诱导出一种大的、非整流性外向电流[IK(ATP)],并使电压依赖性外向钾离子电流[IK(Ca)]在电压高于 -25 mV时增加。吡那地尔(1微摩尔)诱导的IK(ATP)被格列本脲(3微摩尔)阻断,但不受iberiotoxin(100 - 300纳摩尔)影响。在生理膜电位(-80至 -30 mV之间)和钾离子梯度(6毫摩尔/130毫摩尔)下,吡那地尔每个细胞最多可激活150个功能活跃的ATP依赖性钾离子通道(KATP通道),单通道电导约为17皮西门子。另一方面,在54个VSMC中的26个细胞中,吡那地尔(1 - 20微摩尔)未能诱导出IK(ATP),但增加了IK(Ca)。该电流被iberiotoxin(100 - 300纳摩尔)和四乙铵(1毫摩尔)完全阻断,但不受格列本脲(3微摩尔)影响。IK(Ca)所依赖通道在 -10至 +30 mV之间的单通道电导约为150 ± 16皮西门子,与大电导、最大钙激活钾离子通道(BKCa通道)一致。我们得出结论,吡那地尔是一种靶向KATP和BKCa通道的非选择性钾离子通道开放剂。此外,在生理条件下,人冠状动脉中KATP通道的电导可能较小。