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钾离子诱导大鼠膈肌肌肉的电位变化。

Potassium induced potential changes in rat diaphragm muscle.

作者信息

Den Hertog A, Mooij J J

出版信息

Pflugers Arch. 1976 Mar 11;362(1):69-79. doi: 10.1007/BF00588683.

Abstract

The effect of different potassium concentrations on the membrane potential and membrane resistance of rat diaphragm muscle fibres was measured by means of a double sucrose gap method and a microelectrode technique. Concentration measurements showed that the muscle fibres gained sodium and lost potassium in the equilibration period. In the absence of external chloride changing the external potassium concentration from 2.8 mM to potassium-free caused a depolarization of the membrane of about 30 mV and a small increase in membrane resistance. This K-dependent potential change (K-response) was induced by ouabain, K-strophanthin, 2,4-dinitrophenol and cyanide, indicating that an energy requiring process is involved. The temperature dependence of the K-response found is consistent with this assumption. Variation in potassium permeability in the absence and presence of external potassium could account for only 13% of the K-response. The K-response amplitude appeared to depend on the external potassium and the internal sodium concentration. Hyperpolarization of the membrane could not only be produced after readmission of potassium but also after addition of thallium, the latter being more potent. Raising the external chloride concentration resulted in a decrease of the K-response and membrane resistance. The current, generating the K-response was shown to be hardly influenced by conditional polarization of the membrane. It is concluded from these results that the K-response is mainly due to the operation of an electrogenic sodium pump.

摘要

采用双蔗糖间隙法和微电极技术,测量了不同钾浓度对大鼠膈肌肌纤维膜电位和膜电阻的影响。浓度测量结果表明,在平衡期肌纤维摄取钠并丢失钾。在无细胞外氯离子的情况下,将细胞外钾浓度从2.8 mM 变为无钾,可使膜去极化约30 mV,并使膜电阻略有增加。哇巴因、毒毛花苷 K、2,4-二硝基苯酚和氰化物可诱导这种钾依赖性电位变化(钾反应),表明这一过程涉及能量需求。所发现的钾反应的温度依赖性与这一假设一致。有无细胞外钾时钾通透性的变化仅能解释钾反应的13%。钾反应幅度似乎取决于细胞外钾和细胞内钠浓度。膜的超极化不仅可在重新加入钾后产生,也可在加入铊后产生,后者作用更强。提高细胞外氯离子浓度会导致钾反应和膜电阻降低。产生钾反应的电流几乎不受膜条件极化的影响。从这些结果可以得出结论,钾反应主要是由于生电钠泵的作用。

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