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The distribution of sodium and potassium channels in single demyelinated axons of the frog.

机译:钠和钾通道在青蛙的单个脱髓鞘轴突中的分布。

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摘要

1. Frog sciatic nerves were focally demyelinated by intraneural injection of lysolecithin. Fibres were examined 1-8 days later. At early times axons contained zones just a few micrometers long that were covered by myelin debris. These zones lengthened and the debris was cleared over the next several days. 2. The loose patch clamp technique was used to measure ionic currents in the demyelinated axolemma in both internodal and paranodal regions. 3. Transient inward currents that have been identified as Na+ currents on the basis of voltage dependence and sensitivity to tetrodotoxin were recorded at all stages tested. There was no significant increase in internodal peak Na+ current with time over the first 8 days after injection. 4. Peak inward currents varied relatively little with distance along the internode at 1 day post-injection. However, sharp gradients were detected at demyelinated paranodal and nodal membranes. 5. By combining the patch clamp with external stimulation proximal to the patch site it has been possible to record membrane current responses to propagating signals invading the demyelinated zone. With demyelination only in the distal heminode the extent of Na+ channel activation is similar to that predicted for normal nodes of Ranvier by Frankenhaeuser & Huxley (1964). 6. The ratio of K+ conductance to Na+ conductance is much higher in demyelinated internodes than in normal nodes of Ranvier. 7. It is concluded that Na+ channels are likely to be present in normal internodes. The total number of these internodal channels may be about 40 times the total number at nodes. Steep gradients of Na+ channel density remain at nodal regions at least up to 6 days following demyelination.
机译:1.神经内注射溶血卵磷脂使青蛙坐骨神经局部脱髓鞘。 1-8天后检查纤维。在早期,轴突包含的区域只有几微米长,被髓磷脂碎片覆盖。这些区域变长,在接下来的几天中清除了碎屑。 2.使用松散的膜片钳技术来测量节间和节间区域中脱髓鞘的腋窝中的离子电流。 3.在所有测试阶段均记录了基于电压依赖性和对河豚毒素的敏感性而被识别为Na +电流的瞬态内向电流。注射后头8天内,节间性Na +电流未随时间显着增加。 4.注射后1天,峰值内向电流沿节间距离变化相对较小。但是,在脱髓鞘的旁淋巴结和淋巴结膜上检测到陡峭的梯度。 5.通过将膜片钳与靠近膜片部位的外部刺激相结合,已经可能记录对侵入脱髓鞘区域的传播信号的膜电流响应。仅在远端的十二指肠进行脱髓鞘作用,Na +通道激活的程度与Frankenhaeuser&Huxley(1964)预测的Ranvier正常结类似。 6.脱髓鞘节间的K +电导与Na +电导之比比Ranvier的正常节高得多。 7.结论是正常节点间可能存在Na +通道。这些节点间通道的总数可能约为节点总数的40倍。 Na +通道密度的陡峭梯度至少在脱髓鞘后至少6天保留在淋巴结区域。

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