Mangoni M E, Fontanaud P, Noble P J, Noble D, Benkemoun H, Nargeot J, Richard S
UPR 1142 CNRS, Institut de Génétique Humaine, 141 rue de la Cardonille, Cedex 5, Montpellier, France.
Cardiovasc Res. 2000 Dec;48(3):375-92. doi: 10.1016/s0008-6363(00)00182-6.
The L-type Ca(2+) current (I(Ca,L)) contributes to the generation and modulation of the pacemaker action potential (AP). We investigated facilitation of I(Ca,L) in sino-atrial cells.
Facilitation was studied in regularly-beating cells isolated enzymatically from young albino rabbits (0.8-1 kg). We used the whole-cell patch-clamp technique to vary the frequency of the test depolarizations evoked at -10 mV or the conditioning diastolic membrane potential prior to the test pulse.
High frequencies (range 0.2-3.5 Hz) slowed the decay kinetics of I(Ca,L) evoked from a holding potential (HP) of -80 mV in 68% of cells resulting in a larger Ca(2+) influx during the test pulse. The amount of facilitation increased progressively between 0.2 and 3.0 Hz. When the frequency was changed from 0.1 to 1 Hz, the averaged increase in the time integral of I(Ca,L) was 27+/-7% (n=22). Application of conditioning voltages between -80 and -50 mV induced similar facilitation of I(Ca,L) in 73% of cells. The maximal increase of Ca(2+) entry occurred between -60 and -50 mV, and was on average 38+/-14% for conditioning prepulses of 5 s in duration (n=15). Numerical simulations of the pacemaker activity showed that facilitation of I(Ca,L) promotes stability of sino-atrial rate by enhancing Ca(2+) entry, thus establishing a negative feedback control against excessive heart rate slowing.
Facilitation of I(Ca,L) is present in rabbit sino-atrial cells. The underlying mechanism reflects modulation of I(Ca,L) decay kinetics by diastolic membrane potential and frequency of depolarization. This phenomenon may provide an important regulatory mechanism of sino-atrial automaticity.
L型钙电流(I(Ca,L))有助于起搏动作电位(AP)的产生和调节。我们研究了窦房结细胞中I(Ca,L)的易化作用。
在从年轻白化兔(0.8 - 1千克)酶解分离的规则跳动细胞中研究易化作用。我们使用全细胞膜片钳技术来改变在-10 mV诱发的测试去极化频率或测试脉冲之前的调节舒张期膜电位。
在68%的细胞中,高频(范围0.2 - 3.5 Hz)减缓了从-80 mV的钳制电位诱发的I(Ca,L)的衰减动力学,导致测试脉冲期间更大的Ca(2+)内流。易化量在0.2至3.0 Hz之间逐渐增加。当频率从0.1变为1 Hz时,I(Ca,L)时间积分的平均增加为27±7%(n = 22)。在-80至-50 mV之间施加调节电压在73%的细胞中诱导了类似的I(Ca,L)易化。Ca(2+)内流的最大增加发生在-60至-50 mV之间,对于持续5 s的调节预脉冲,平均为38±14%(n = 15)。起搏活动的数值模拟表明,I(Ca,L)的易化通过增强Ca(2+)内流促进窦房结率的稳定性,从而建立针对过度心率减慢的负反馈控制。
兔窦房结细胞中存在I(Ca,L)的易化作用。其潜在机制反映了舒张期膜电位和去极化频率对I(Ca,L)衰减动力学的调节。这种现象可能提供窦房结自律性的重要调节机制。