Baruscotti M, DiFrancesco D, Robinson R B
Department of Pharmacology, Columbia University, New York, New York 10032, USA.
Am J Physiol Heart Circ Physiol. 2000 Nov;279(5):H2303-9. doi: 10.1152/ajpheart.2000.279.5.H2303.
Isolated newborn, but not adult, rabbit sinoatrial node (SAN) cells exhibit spontaneous activity that (unlike adult) are highly sensitive to the Na(+) current (I(Na)) blocker TTX. To investigate this TTX action on automaticity, cells were voltage clamped with ramp depolarizations mimicking the pacemaker phase of spontaneous cells (-60 to -20 mV, 35 mV/s). Ramps elicited a TTX-sensitive current in newborn (peak density 0.89 +/- 0.14 pA/pF, n = 24) but not adult (n = 5) cells. When depolarizing ramps were preceded by steplike depolarizations to mimic action potentials, ramp current decreased 54.6 +/- 8.0% (n = 3) but was not abolished. Additional experiments demonstrated that ramp current amplitude depended on the slope of the ramp and that TTX did not alter steady-state holding current at pacemaker potentials. This excluded a steady-state Na(+) window component and suggested a kinetic basis, which was investigated by measuring TTX-sensitive I(Na) during long step depolarizations. I(Na) exhibited a slow but complete inactivation time course at pacemaker voltages (tau = 33.9 +/- 3.9 ms at -50 mV), consistent with the rate-dependent ramp data. The data indicate that owing to slow inactivation of I(Na) at diastolic potentials, a small TTX-sensitive current flows during the diastolic depolarization in neonatal pacemaker myocytes.
新生兔而非成年兔的孤立窦房结(SAN)细胞表现出自发活动,且(与成年细胞不同)对钠离子电流(I(Na))阻滞剂河豚毒素(TTX)高度敏感。为研究TTX对自律性的作用,采用斜坡去极化对细胞进行电压钳制,模拟自发细胞的起搏相(-60至-20 mV,35 mV/s)。斜坡刺激在新生细胞中引发了TTX敏感电流(峰值密度0.89±0.14 pA/pF,n = 24),但在成年细胞中未引发(n = 5)。当在去极化斜坡之前进行阶梯状去极化以模拟动作电位时,斜坡电流降低了54.6±8.0%(n = 3),但未被消除。额外实验表明,斜坡电流幅度取决于斜坡斜率,且TTX不会改变起搏电位下的稳态钳制电流。这排除了稳态钠“窗口”成分,并提示了一个动力学基础,通过在长时间阶梯状去极化期间测量TTX敏感的I(Na)对此进行了研究。在起搏电压下,I(Na)表现出缓慢但完全的失活时间进程(在-50 mV时,τ = 33.9±3.9 ms),与速率依赖性斜坡数据一致。数据表明,由于舒张电位下I(Na)的缓慢失活,新生儿起搏心肌细胞在舒张期去极化期间会有一小股TTX敏感电流流动。