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蜗牛神经元内的氯离子活性及乙酰胆碱的作用

Intracellular chloride activity and the effects of acetylcholine in snail neurones.

作者信息

Neild T O, Thomas R C

出版信息

J Physiol. 1974 Oct;242(2):453-70. doi: 10.1113/jphysiol.1974.sp010717.

Abstract
  1. Cl(-)-sensitive micro-electrodes were used to measure intracellular Cl(-) in snail neurones. The electrodes consisted of a sharpened and chlorided silver wire mounted inside a glass micropipette.2. The electrodes appeared to record changes in internal Cl(-) accurately but in H cells the chloride equilibrium potential (E(Cl)) as measured by the Cl(-)-sensitive electrode was always less negative than E(ACh).3. In some H cells ACh caused a measurable increase in internal Cl(-) when the cell was at its resting potential. In voltage-clamped cells there was a close correlation between the change in internal Cl(-) and the extra clamp current caused by a brief application of ACh. This confirmed that ACh increases the cell's membrane permeability only to Cl(-) ions, and that E(ACh) was equal to E(Cl).4. There was good agreement between the measured change in internal Cl(-) and that calculated from the cell size and clamp charge only when it was assumed that a constant voltage offset was added to the potential of the Cl(-)-sensitive electrode while it was inside the nerve cell.5. Cl(-)-sensitive electrodes with AgCl as the sensitive material appear to be unsuitable for intracellular measurement of Cl(-), although they might be suitable for following changes in E(Cl).6. In certain D cells ACh also caused an increase in internal Cl(-) although it decreased the membrane potential. In the presence of hexamethonium, ACh caused a hyperpolarization and a smaller increase in internal chloride.7. It is concluded that the intracellular Cl(-) in both H and D cells is about 8.3 mM, giving an E(Cl) of about -58 mV.
摘要
  1. 用对Cl(-)敏感的微电极测量蜗牛神经元内的Cl(-)。电极由安装在玻璃微吸管内的经锐化和氯化处理的银丝组成。

  2. 这些电极似乎能准确记录细胞内Cl(-)的变化,但在H细胞中,用对Cl(-)敏感的电极测得的氯离子平衡电位(E(Cl))总是比E(ACh)的负值小。

  3. 在一些H细胞中,当细胞处于静息电位时,乙酰胆碱(ACh)会使细胞内Cl(-)有可测量的增加。在电压钳制的细胞中,细胞内Cl(-)的变化与短暂施加ACh引起的额外钳制电流之间存在密切相关性。这证实了ACh仅增加细胞对Cl(-)离子的膜通透性,且E(ACh)等于E(Cl)。

  4. 只有当假设在Cl(-)敏感电极置于神经细胞内时,给其电位加上一个恒定的电压偏移量,细胞内Cl(-)的测量变化与根据细胞大小和钳制电荷计算出的变化才会有良好的一致性。

  5. 以AgCl作为敏感材料的Cl(-)敏感电极似乎不适合用于细胞内Cl(-)的测量,尽管它们可能适合跟踪E(Cl)的变化。

  6. 在某些D细胞中,ACh也会使细胞内Cl(-)增加,尽管它会降低膜电位。在六甲铵存在的情况下,ACh会引起超极化以及细胞内氯离子较小的增加。

  7. 得出的结论是,H细胞和D细胞内的Cl(-)约为8.3 mM,E(Cl)约为 -58 mV。

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