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大鼠有髓神经纤维膜电流的电压钳分析

Potential clamp analysis of membrane currents in rat myelinated nerve fibres.

作者信息

Brismar T

出版信息

J Physiol. 1980 Jan;298:171-84. doi: 10.1113/jphysiol.1980.sp013074.

Abstract
  1. Large myelinated nerve fibres were isolated from rats and the membrane action potential was recorded in single nodes of Ranvier. Potential clamp experiments were performed at 24 degrees C and in one fibre also at 33 degrees C. 2. Positive potential steps were associated with an initial, mainly Na carried, current with an equilibrium potential (Ue) of 40 +/- 13 mV. The INa vs. U curve showed rectification at large positive potentials. 3. The Na permeability (PNa) curve was characteristically S-shaped with a half value at -48 +/- 6 mV and a ceiling value of 3.7 +/- 0.7 cm.sec-1.10(-3). PNa as defined by the constant field equation accounted for the rectification of the INa/U curve. 4. The potential and time dependence of the rapid inactivation (h) process was described quantitatively in terms of its steady state (h infinity) vs. U curve and its rate constants (alpha h and beta h) vs. U curves. h infinity (U = -80 mV) was 0.68 +/- 0.09. 5. The delayed currents were small and the ionic specificity of the delayed permeability changes was not identified. Tentatively calculated PK at large potentials was 0.21 +/- 0.06 cm.sec-1.10(-3). The leak conductance (gL) was 130 +/- 33 mS.cm-2. 6. A temperature rise in one experiment from 24 to 33 degrees C increased the rate constants (alpha h and beta h), but did not significantly change the size of the delayed currents. 7. INa was completely blocked by 25 nM-TTX in the outside solution. External application of 5 mM-TEA only slowly and incompletely blocked the small delayed currents. This effect was not fully reversible. 8. A comparison with frog fibres showed that the node in rat fibres had (a) a lower Ue of the initial current (probably because of a lower Na selectivity of the channel for the initial current), (b) approximately equal max. peak PNa, (c) about 10 mV negatively shifted PNa vs. U and h infinity vs. U curves, (d) quantitatively similar relations between rate constants of inactivation (alpha h and beta h) and U at 20--24 degrees C, (e) PK that was 1/5 of PK in frog fibres, (f) 4--5 times larger leak conductance, (g) membrane action potentials of smiliar amplitude and duration.
摘要
  1. 从大鼠中分离出大型有髓神经纤维,并在单个郎飞结处记录膜动作电位。在24℃下进行电压钳实验,对一根纤维还在33℃下进行了实验。2. 正向电压阶跃与初始的、主要由钠携带的电流相关,其平衡电位(Ue)为40±13mV。INa与U曲线在大的正电位时显示出整流特性。3. 钠通透性(PNa)曲线呈典型的S形,半值在-48±6mV,峰值为3.7±0.7cm·sec⁻¹·10⁻³。由恒定场方程定义的PNa解释了INa/U曲线的整流现象。4. 快速失活(h)过程的电位和时间依赖性通过其稳态(h∞)与U曲线以及其速率常数(αh和βh)与U曲线进行了定量描述。h∞(U = -80mV)为0.68±0.09。5. 延迟电流较小,且未确定延迟通透性变化的离子特异性。在大电位下初步计算的PK为0.21±0.06cm·sec⁻¹·10⁻³。漏电导(gL)为130±33mS·cm⁻²。6. 在一次实验中,温度从24℃升至33℃增加了速率常数(αh和βh),但未显著改变延迟电流的大小。7. 外部溶液中25nM的TTX完全阻断了INa。外部施加5mM的TEA仅缓慢且不完全地阻断了小的延迟电流。这种效应并非完全可逆。8. 与蛙纤维的比较表明,大鼠纤维的郎飞结具有:(a)初始电流的Ue较低(可能是因为通道对初始电流的钠选择性较低),(b)最大峰值PNa大致相等,(c)PNa与U以及h∞与U曲线负向偏移约10mV,(d)在20 - 24℃下失活速率常数(αh和βh)与U之间的定量关系相似,(e)PK为蛙纤维中PK的1/5,(f)漏电导大4 - 5倍,(g)膜动作电位的幅度和持续时间相似。

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