首页> 美国卫生研究院文献>The Journal of Physiology >Membrane currents in visually identified motoneurones of neonatal rat spinal cord.
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Membrane currents in visually identified motoneurones of neonatal rat spinal cord.

机译:视觉鉴定新生大鼠脊髓运动神经元中的膜电流。

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摘要

1. Ionic currents induced by depolarization of motoneurones were analysed by tight-seal, whole-cell recording in thin slices of neonatal rat lumbar spinal cord. Identification of motoneurones viewed under Nomarski optics was confirmed by retrograde labelling with the fluorescent dye, Evans Blue. 2. Under whole-cell voltage clamp, depolarizing command pulses from a holding potential of about -70 mV evoked a fast inward current followed by an outward current. The former was suppressed either by lowering external Na+ concentration or by application of tetrodotoxin (TTX). The apparent dissociation constant of TTX was about 13 nM. 3. The outward current remaining after TTX application was activated by depolarization above -50 mV, showing marked outward rectification in the current-voltage relation. Outward tail currents reversed in polarity near the K+ equilibrium potential calculated from the external and pipette K+ concentrations. 4. When external Ca2+ was replaced by Mg2+, the outward K+ current was suppressed markedly and reversibly. Subtraction of current recorded in Ca2+-free-Mg2+ solution from that in control solution revealed a Ca2(+)-dependent K+ current, IK(Ca) with both a transient, IC, and a sustained component IAHP; its tail current lasted for several hundred milliseconds. 5. The sustained outward current observed in Ca2(+)-free-Mg2+ solution was largely suppressed by external application of tetraethylammonium chloride (30 mM), suggesting that it was mostly the delayed rectifier current, IK. In Ca2(+)-free-Mg2+ solution containing TEA and TTX, another transient outward current was observed, which was inactivated by depolarizing pre-pulses in a time- and voltage-dependent manner. The steady-state inactivation curve indicated 50% inactivation at about -77 mV. 4-Aminopyridine (4-AP, 4 mM) largely and reversibly suppressed this current, whereas it did not affect IK observed in the absence of TEA. It is suggested that the transient outward current corresponds to the A-current (IA). 6. Action potentials were recorded in current-clamp mode. Replacement of external Ca2+ by Mg2+ markedly diminished the after-hyperpolarization. Concomitantly, the repolarizing phase of action potentials was slightly prolonged. In Ca2(+)-free-Mg2+ solution, application of 4-AP markedly prolonged action potential repolarization. In Ca2(+)-free-Mg2+ solution containing 4-AP, addition of TEA-Cl further prolonged the duration of the action potential. It is concluded that three different potassium currents, IC, IA and IK may all contribute to action potential repolarization in rat spinal motoneurones.
机译:1.通过紧密密封的全细胞记录在新生大鼠腰脊髓的薄片中分析了运动神经元去极化引起的离子电流。 Nomarski光学显微镜下观察到的运动神经元的识别通过荧光染料Evans Blue的逆行标记得以确认。 2.在全电池电压钳制下,约-70 mV的保持电势使去极化命令脉冲引起快速的内向电流,然后是外向电流。前者通过降低外部Na +浓度或应用河豚毒素(TTX)受到抑制。 TTX的表观解离常数约为13 nM。 3.在TTX施加后,-50 mV以上的去极化激活了剩余的向外电流,在电流-电压关系中显示出明显的向外整流。由外部和移液器的K +浓度计算得出,在接近K +平衡电位时,外向尾流的极性反转。 4.当外部Ca 2+被Mg 2+代替时,向外的K +电流被显着且可逆地抑制。从对照溶液中减去不含Ca2 +的Mg2 +溶液中记录的电流,可以得出一个依赖Ca2(+)的K +电流IK(Ca),其中既有瞬态,IC,又有一个持续成分IAHP。它的尾电流持续了几百毫秒。 5.通过外部施加氯化四乙铵(30 mM),很大程度上抑制了在无Ca2 +的Mg2 +溶液中观察到的持续向外电流,这表明它主要是延迟的整流器电流IK。在包含TEA和TTX的不含Ca2(+)的Mg2 +溶液中,观察到另一个瞬态向外电流,该电流通过与时间和电压相关的预脉冲去极化而失活。稳态失活曲线表明在约-77 mV时失活50%。 4-氨基吡啶(4-AP,4 mM)在很大程度上可逆地抑制了该电流,而在没有TEA的情况下,它不会影响IK。建议瞬态向外电流对应于A电流(IA)。 6.以电流钳模式记录动作电位。用Mg2 +代替外部Ca2 +明显减少了超极化后的情况。同时,动作电位的复极化阶段稍微延长了。在无Ca2 +的Mg2 +溶液中,应用4-AP可以显着延长动作电位的复极化。在含有4-AP的无Ca2 +的Mg2 +溶液中,添加TEA-Cl进一步延长了动作电位的持续时间。结论是,三种不同的钾电流,IC,IA和IK均可促进大鼠脊髓运动神经元的动作电位复极化。

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