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Inactivation of macroscopic late Na+ current and characteristics of unitary late Na+ currents in sensory neurons.

机译:感觉神经元的宏观晚期Na +电流的失活和单一晚期Na +电流的特征。

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Na+ currents in adult rat large dorsal root ganglion neurons were recorded during long duration voltage-clamp steps by patch clamping whole cells and outside-out membrane patches. Na+ current present >60 ms after the onset of a depolarizing pulse (late Na+ current) underwent partial inactivation; it behaved as the sum of three kinetically distinct components, each of which was blocked by nanomolar concentrations of tetrodotoxin. Inactivation of one component (late-1) of the whole cell current reached equilibrium during the first 60 ms; repolarizing to -40 or -50 mV from potentials of -30 mV or more positive gave rise to a characteristic increase in current (tau >/= 5 ms), attributed to removal of inactivation. A second component (late-2) underwent slower inactivation (tau > 80 ms) at potentials more positive than -80 mV, and steady-state inactivation appeared complete at -30 mV. In small membrane patches, bursts of brief openings (gamma = 13-18 pS) were usually recorded. The distribution of burst durations indicated that two populations of channel were present with inactivation rates corresponding to late-1 and late-2 macroscopic currents. The persistent Na+ current in the whole cell that extended to potentials more positive than -30 mV appeared to correspond to sporadic, brief openings that were recorded in patches (mean open time approximately 0.1 ms) over a wide potential range. None of the three types of gating described corresponded to activation/inactivation gating overlap of fast transient currents.
机译:在成年大鼠大背根神经节神经元中,Na +电流在长时间的电压钳制步骤中通过膜片钳夹整个细胞和由外而外的膜片记录。在出现去极化脉冲(Na +电流过低)后> 60 ms时,Na +电流会部分失活;它表现为三种动力学上不同的成分的总和,每种成分都被纳摩尔浓度的河豚毒素所阻断。在整个最初的60毫秒内,整个电池电流的一个成分(后1个)的失活达到平衡。从-30 mV或更高的正电位重新极化至-40或-50 mV会导致电流的特征性增加(tau> / = 5 ms),这归因于灭活的消除。第二个成分(后2个)在比-80 mV更高的电势下进行了更慢的灭活(tau> 80 ms),并且稳态灭活在-30 mV时似乎完成了。在小膜片中,通常会记录短暂的爆发(伽玛= 13-18 pS)。爆发持续时间的分布表明存在两个通道种群,其失活速率分别对应于晚期1和晚期2宏观电流。整个细胞中持续的Na +电流扩展到大于-30 mV的正电势,这似乎对应于分散的短暂开孔,这些开孔记录在很宽的电势范围内的斑片中(平均开路时间约为0.1 ms)。所描述的三种门控均不对应于快速瞬变电流的激活/失活门控重叠。

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