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无钾溶液中平滑肌细胞的膜电位。

Membrane potential of smooth muscle cells in K-free solution.

作者信息

Casteels R, Droogmans G, Hendrickx H

出版信息

J Physiol. 1971 Sep;217(2):281-95. doi: 10.1113/jphysiol.1971.sp009571.

DOI:10.1113/jphysiol.1971.sp009571
PMID:5097600
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1331777/
Abstract
  1. The changes of the ion content, the membrane potential and of the membrane permeability of taenia coli cells have been studied during exposure to K-free solutions. The relative value of the total membrane conductance was determined by measuring the electrotonic potential during constant current pulses with an intracellular electrode. The P(K) values were calculated from (42)K-efflux in K-free solutions.2. In solutions containing penetrating anions the cells initially depolarize. Thereafter they hyperpolarize to about - 85 mV and again depolarize after 90 min to - 5 mV. These potential changes are much smaller if large anions are used as chloride substitutes. Moreover, the final depolarization is only reached after 4-5 hr. This hyperpolarization is not inhibited by 10(-5)M ouabain.3. These potential changes are accompanied by a progressive exchange of intracellular K by Na. In solutions containing chloride or nitrate the relative value of the total membrane conductance increases to a maximal value, corresponding to the peak value of the calculated P(K). Such changes of the membrane conductance and of P(K) do not occur in K-free solutions containing large anions.4. It is proposed that the initial depolarization is probably caused by an inhibition of an electrogenic Na pump. In chloride or nitrate solution the hyperpolarization is due to an increase of the K/K ratio and to an increase of the K permeability. In the presence of large anions the hyperpolarization remains small because this increase of P(K) does not occur.
摘要
  1. 研究了结肠带细胞在暴露于无钾溶液期间离子含量、膜电位和膜通透性的变化。通过用细胞内电极在恒定电流脉冲期间测量电紧张电位来确定总膜电导的相对值。P(K)值由无钾溶液中的(42)K外流计算得出。

  2. 在含有可通透阴离子的溶液中,细胞最初会发生去极化。此后它们会超极化至约 -85 mV,并在90分钟后再次去极化至 -5 mV。如果使用大阴离子作为氯离子替代物,这些电位变化会小得多。此外,最终的去极化仅在4 - 5小时后才会出现。这种超极化不受10(-5)M哇巴因的抑制。

  3. 这些电位变化伴随着细胞内钾与钠的逐渐交换。在含有氯离子或硝酸根离子的溶液中,总膜电导的相对值增加到最大值,对应于计算出的P(K)的峰值。在含有大阴离子的无钾溶液中不会发生这种膜电导和P(K)的变化。

  4. 有人提出,最初的去极化可能是由电生性钠泵的抑制引起的。在氯离子或硝酸根溶液中,超极化是由于K/K比值的增加和钾通透性的增加。在存在大阴离子的情况下,超极化仍然很小,因为不会发生这种P(K)的增加。

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本文引用的文献

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The effect of sodium ions on the electrical activity of giant axon of the squid.钠离子对鱿鱼巨大轴突电活动的影响。
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The influence of potassium and chloride ions on the membrane potential of single muscle fibres.钾离子和氯离子对单根肌纤维膜电位的影响。
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Membrane potentials recorded with high-resistance micro-electrodes; and the effects of changes in ionic environment on the electrical and mechanical activity of the smooth muscle of the taenia coli of the guineapig.用高电阻微电极记录的膜电位;以及离子环境变化对豚鼠结肠带平滑肌电活动和机械活动的影响。
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Membrane potentials of smooth muscle fibres of the taenia coli of the guinea-pig.豚鼠结肠带平滑肌纤维的膜电位
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Electrical activity and intracellular sodium concentration in frog muscle.青蛙肌肉中的电活动和细胞内钠浓度。
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The action of ouabain on the smooth muscle cells of the guinea-pig's taenia coli.哇巴因对豚鼠结肠带平滑肌细胞的作用。
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