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丙吡胺和氟卡尼对兔心肌内向整流钾通道动力学的影响。

Effects of disopyramide and flecainide on the kinetics of inward rectifier potassium channels in rabbit heart muscle.

作者信息

Martin D K, Nakaya Y, Wyse K R, Campbell T J

机构信息

Department of Cardiology, St. Vincent's Hospital, Sydney, N.S.W., Australia.

出版信息

Br J Pharmacol. 1994 Mar;111(3):873-9. doi: 10.1111/j.1476-5381.1994.tb14819.x.

Abstract
  1. Standard patch-clamp techniques were used to study the interaction of therapeutic concentrations of flecainide and disopyramide with single inwardly-rectifying potassium channels in cell-attached membrane patches from rabbit ventricular myocytes. 2. Under drug-free conditions, the potassium channels had a conductance of 31 +/- 2 pS (n = 13), a mean open time of 230 +/- 6 ms (n = 11) recorded at the resting cell potential, and an open probability of 0.66 +/- 0.20 (n = 39). The resting potential of the cells studied was -68.5 +/- 3.6 mV (n = 32). 3. Disopyramide did not reduce the open probability of the channel when the cell was voltage-clamped at the resting cell potential. However, disopyramide increased the mean open time of the channel, recorded at the resting cell potential, by 15% at 5 microM and by 29% at 20 microM. The action potential prolonging actions of disopyramide in therapeutic concentrations appear not to be due to blocking the inward rectifier K+ channel. 4. Flecainide (3.0 microM, but not at 0.5 microM) decreased the open probability without changing the conductance of the channel, at 3 microM (51.0 +/- 7.2%, n = 6, P = 0.03) at the resting cell potential. Flecainide increased the mean open time of the channel, recorded at the resting cell potential, by 12% at 3.0 microM. 5. We propose that flecainide stabilized the inward rectifier K+ channel in an inactivated state, without plugging the conducting pore. In addition, it appeared to bind to an open conformation of the channel,since some of the reduction in open probability could be accounted for by the lengthening of the mean open time. The changes in open-state kinetics suggest that this binding may be in the region of the activation gate.
摘要
  1. 采用标准膜片钳技术研究了治疗浓度的氟卡尼和丙吡胺与兔心室肌细胞贴附式膜片中单个内向整流钾通道的相互作用。2. 在无药物条件下,钾通道的电导为31±2 pS(n = 13),在静息细胞电位下记录的平均开放时间为230±6 ms(n = 11),开放概率为0.66±0.20(n = 39)。所研究细胞的静息电位为-68.5±3.6 mV(n = 32)。3. 当细胞在静息细胞电位下进行电压钳制时,丙吡胺并未降低通道的开放概率。然而,丙吡胺使在静息细胞电位下记录的通道平均开放时间在5 μM时增加了15%,在20 μM时增加了29%。丙吡胺在治疗浓度下延长动作电位的作用似乎并非由于阻断内向整流钾通道。4. 氟卡尼(3.0 μM,但0.5 μM时无此作用)在静息细胞电位下,于3 μM时(51.0±7.2%,n = 6,P = 0.03)降低了开放概率,而不改变通道的电导。氟卡尼在3.0 μM时使在静息细胞电位下记录的通道平均开放时间增加了12%。5. 我们提出,氟卡尼使内向整流钾通道稳定于失活状态,而不堵塞导电孔道。此外,它似乎与通道的开放构象结合,因为开放概率的一些降低可由平均开放时间的延长来解释。开放状态动力学的变化表明这种结合可能发生在激活门区域。

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