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有机离子对神经膜电位的影响。

THE EFFECT OF ORGANIC IONS ON THE MEMBRANE POTENTIAL OF NERVES.

机构信息

Department of Physiology, School of Medicine, University of Pennsylvania, Philadelphia, and the Marine Biological Laboratory, Woods Hole.

出版信息

J Gen Physiol. 1937 Mar 20;20(4):519-41. doi: 10.1085/jgp.20.4.519.

DOI:10.1085/jgp.20.4.519
PMID:19873008
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2141515/
Abstract
  1. The effect of osmotic pressure on the nerve resting potential of frog sciatic nerve is in accordance with the assumption of a membrane potential; increased osmotic pressure raises, decreased osmotic pressure lowers the potential. 2. The potential of crab nerves is affected by organic and inorganic cations in the approximate series: Rb > K = diamylamine > dibutylamine > guanidine > tetraethylamine > diethylamine = dimethylamine > dipropylamine > tetramethylamine = choline = Na = Li. 3. The response of the potential to the series of dialkylamines (first decrease, then increase of response ascending in the series) is best understood by the assumption that the nerve membrane is a porous structure. 4. With respect to these salts as well as to other organic cations the dried collodion membrane as a model of a porous membrane shows a striking parallelism to the nerve membrane. 5. Both inorganic and organic anions (NO(3), SCN, acetate, propionate, butyrate, lactate, pyruvate) have a definite, if slight, effect in raising the potential of crab nerves. This effect of anions indicates that the nerve membrane is not completely anion impermeable. 6. The effect of organic ions is, with certain restrictions, reversible. Its possible relation to the resting potential and to the after potentials of the electrical disturbance is discussed. 7. The response of the myelinated sciatic nerve of the frog and of the non-myelinated nerve of the spider crab show considerable agreement. There are some definite differences which are, however, not necessarily due to differences of the cell membranes involved, but may be ascribed to the difference of ionic conditions in Ringer and sea water.
摘要
  1. 渗透压对蛙坐骨神经静息电位的影响符合膜电位假设;渗透压升高会提高电位,降低渗透压会降低电位。

  2. 蟹神经的电位受有机和无机阳离子的影响,大致顺序为:Rb > K = 二戊胺 > 二丁胺 > 胍 > 四乙胺 > 二乙胺 = 二甲胺 > 二丙胺 > 四甲基铵 = 胆碱 = Na = Li。

  3. 电位对二烷基胺系列的反应(先下降,然后随系列上升而增加)最好用神经膜是多孔结构的假设来理解。

  4. 就这些盐以及其他有机阳离子而言,干胶原膜作为多孔膜的模型与神经膜表现出惊人的相似性。

  5. 无机和有机阴离子(NO(3)、SCN、醋酸盐、丙酸盐、丁酸盐、乳酸盐、丙酮酸盐)对提高蟹神经的电位有一定的影响,尽管影响较小。这种阴离子的作用表明神经膜并不是完全不透阴离子的。

  6. 有机离子的作用在一定程度上是可逆的。它与静息电位和电干扰后的电位的可能关系进行了讨论。

  7. 青蛙有髓坐骨神经和蜘蛛蟹无髓神经的反应有相当大的一致性。存在一些明确的差异,但这些差异不一定是由于所涉及的细胞膜的差异造成的,而是可以归因于 Ringer 和海水之间离子条件的差异。

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本文引用的文献

1
Fatigue, retention of action current and recovery in crustacean nerve.甲壳类动物神经中的疲劳、动作电流的保持和恢复
J Physiol. 1927 Jul 7;63(2):113-29. doi: 10.1113/jphysiol.1927.sp002387.
2
Studies on the "Diffusion Effect" upon Ionic Distribution. Some Theoretical Considerations.关于离子分布“扩散效应”的研究。一些理论思考。
Proc Natl Acad Sci U S A. 1935 Mar;21(3):152-61. doi: 10.1073/pnas.21.3.152.