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用新型pH敏感玻璃微电极测量蜗牛神经元的细胞内pH值。

Intracellular pH of snail neurones measured with a new pH-sensitive glass mirco-electrode.

作者信息

Thomas R C

出版信息

J Physiol. 1974 Apr;238(1):159-80. doi: 10.1113/jphysiol.1974.sp010516.

Abstract
  1. The construction and properties of a new design of pH-sensitive micro-electrode are described. The electrodes are very durable, and have a recessed configuration so that only the extreme tip, which can be as small as 1 mum in diameter, needs to enter the cell.2. The average intracellular pH in thirty-two snail neurones was 7.4. This was not in accord with a passive distribution of H(+) ions across the cell membrane.3. Changing membrane potential or external pH had only slow effects on internal pH.4. Removing external K had no effect, and removing external Na had only slow and variable effects on intracellular pH.5. Anoxia, azide and DNP all caused a slow fall in internal pH.6. External CO(2) caused large and rapid decreases in internal pH, which external bicarbonate appeared to offset slowly. Injected bicarbonate increased internal pH.7. The size of the pH changes caused by CO(2) suggested a minimum intracellular buffering power of 25 m-equiv H(+)/unit pH per l., equivalent to that of 150 mM Tris maleate, pH 7.4.8. External ammonia caused a large and rapid increase in internal pH, while the injection of ammonium ions had the opposite effect.
摘要
  1. 本文描述了一种新型pH敏感微电极的构造与特性。这些电极非常耐用,呈凹陷结构,因此只有直径小至1微米的最尖端需要进入细胞。

  2. 32个蜗牛神经元的平均细胞内pH值为7.4。这与H⁺离子在细胞膜上的被动分布不一致。

  3. 改变膜电位或外部pH值对内部pH值的影响缓慢。

  4. 去除外部K⁺没有影响,去除外部Na⁺对细胞内pH值只有缓慢且多变的影响。

  5. 缺氧、叠氮化物和二硝基苯酚均导致内部pH值缓慢下降。

  6. 外部CO₂导致内部pH值大幅快速下降,外部碳酸氢盐似乎能缓慢抵消这种下降。注入碳酸氢盐会提高内部pH值。

  7. 由CO₂引起的pH值变化大小表明,细胞内的最小缓冲能力为每升25毫当量H⁺/单位pH,相当于150 mM马来酸三乙胺,pH 7.4。

  8. 外部氨导致内部pH值大幅快速上升,而注入铵离子则产生相反的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f9cd/1330868/af770302b943/jphysiol00933-0208-a.jpg

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