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脂肪族碳氢化合物对鱿鱼巨大轴突膜电容和离子电流的某些影响。

Some effects of aliphatic hydrocarbons on the electrical capacity and ionic currents of the squid giant axon membrane.

作者信息

Haydon D A, Requena J, Urban B W

出版信息

J Physiol. 1980 Dec;309:229-45. doi: 10.1113/jphysiol.1980.sp013506.

Abstract
  1. The electrical properties of squid giant axons were examined by means of admittance bridges at frequencies from 0.5 to 300 kHz. A simple equivalent circuit was used to estimate the membrane capacity. 2. The calculated membrane capacities decreased monotonically over the whole frequency range. 3. At 100 kHz and higher frequencies the membrane capacity was independent of potential. 4. At frequencies greater than 20 kHz, exposure of the axons to saturated or 0.9 saturated solutions of n-pentane (275-306 micrometer) reduced the capacity per unit area by 0.1-0.15 micro F cm-2. 5. At 1 kHz the effect of the saturated pentane solutions depended on the membrane potential. In axons having potentials between -60 and zero mV the pentane solutions lowered the capacity, whereas for potentials between -160 and -60 mV they produced little or no change. 6. Saturated solutions of n-hexane, n-heptane and n-octane exhibited qualitatively similar, but quantitatively smaller influences on the membrane capacity, the changes declining as the chain length increased. 7. Under voltage clamp, the peak inward and steady-state outward currents were partially suppressed by the hydrocarbons. Saturated solutions of n-pentane usually reduced the former (reversibly) by 60-80% and the latter by 20-40%. Solutions of n-hexane, n-heptane and n-octane appeared to have successively less effect. Except in deteriorating axons, none of the hydrocarbons produced any consistent changes in the passive membrane resistance, the resting potential or in the reversal potential of the transient inward current. 8. Both the changes in the clamp currents and in the membrane capacity were largely, though not usually completely, reversible. In the hydrocarbon solution the axons deteriorated more rapidly than normal. 9. The responses of axons of Doryteuthis plei to the hydrocarbons were very similar to those of Loligo forbesi with the exception that for the former all observed changes were some five times faster. 10. The time courses of the peak inward and steady-state outward currents on exposure of the axons to n-pentane resembled the time course of the change in membrane capacity at 100 kHz. 11. The simplest interpretation of the high frequency capacity results is suggested to be that, as for lipid bilayers, the membranes become thicker through adsorption of the hydrocarbon.
摘要
  1. 利用导纳桥在0.5至300千赫兹的频率范围内检测了鱿鱼巨大轴突的电学特性。使用一个简单的等效电路来估算膜电容。2. 计算得到的膜电容在整个频率范围内单调下降。3. 在100千赫兹及更高频率下,膜电容与电位无关。4. 在频率大于20千赫兹时,将轴突暴露于正戊烷(275 - 306微米)的饱和或0.9饱和溶液中,每单位面积的电容降低了0.1 - 0.15微法/平方厘米。5. 在1千赫兹时,饱和戊烷溶液的效应取决于膜电位。在电位介于 - 60和0毫伏之间的轴突中,戊烷溶液降低了电容,而对于电位介于 - 160和 - 60毫伏之间的轴突,它们几乎没有产生变化或没有变化。6. 正己烷、正庚烷和正辛烷的饱和溶液对膜电容表现出定性相似但定量上较小的影响,随着链长增加,变化程度下降。7. 在电压钳制下,内向峰值电流和外向稳态电流部分被碳氢化合物抑制。正戊烷的饱和溶液通常使前者(可逆地)降低60 - 80%,使后者降低20 - 40%。正己烷、正庚烷和正辛烷的溶液似乎影响依次减小。除了在逐渐恶化的轴突中,没有一种碳氢化合物对被动膜电阻、静息电位或瞬态内向电流的反转电位产生任何一致的变化。8. 钳制电流和膜电容的变化在很大程度上(尽管通常不完全)是可逆的。在碳氢化合物溶液中,轴突比正常情况下恶化得更快。9. 杜氏枪乌贼轴突对碳氢化合物的反应与福布斯氏枪乌贼的非常相似,不同之处在于对于前者,所有观察到的变化速度大约快五倍。10. 轴突暴露于正戊烷时,内向峰值电流和外向稳态电流的时间进程类似于100千赫兹时膜电容变化的时间进程。11. 高频电容结果的最简单解释被认为是,与脂质双层一样,膜通过吸附碳氢化合物而变厚。

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