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Effect of temperature on membrane potential and ionic fluxes in intact and dialysed barnacle muscle fibres

机译:温度对完整和透析藤壶肌纤维膜电位和离子通量的影响

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摘要

1. The temperature-dependent component of the resting potential in intact, cannulated and dialysed fibres from the muscle of the barnacle Balanus nubilus was studied under a variety of different experimental conditions. A decrease in temperature from 22 to 12° C produced a mean depolarization of 10 mV.2. Neither addition of strophanthidin, nor replacement of external sodium by lithium affect the voltage shift induced by temperature. However, the magnitude of the voltage shift depends on the external chloride and potassium concentration.3. The dialysis technique was applied to measure the potassium, chloride and sodium fluxes as a function of temperature. The Q10 for the passive fluxes of these ions was 1·9, 1·7, and 1·4 respectively.4. The temperature-dependent changes in the passive ionic fluxes combined with the inability of inhibitors of the sodium pump to alter the temperature dependence of the resting potential suggest that the change induced by temperature on the resting potential is primarily caused by a change in the passive permeability ratios, and is not related to active ion transport.
机译:1.在各种不同的实验条件下,研究了藤壶Balanus nubilus肌肉的完整,空心和透析纤维中静息电位的温度依赖性成分。温度从22降至12°C产生的平均去极化为10 mV.2。既不添加鸟嘌呤,也不用锂代替外部钠都不会影响温度引起的电压漂移。但是,电压偏移的大小取决于外部氯化物和钾的浓度。3。透析技术用于测量钾,氯和钠通量随温度的变化。这些离子的被动通量的Q10分别为1·9、1·7和1·4。4。被动离子通量随温度的变化以及钠泵抑制剂无法改变静息电势的温度依赖性表明,温度对静息电势的变化主要是由被动磁导率的变化引起的比率,与主动离子传输无关。

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