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The influence of pH on membrane conductance and intercellular resistance in the rat lens.

机译:pH对大鼠晶状体膜电导和细胞间抗性的影响。

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摘要

1. The conductance of the rat lens was measured using a two-internal-microelectrode technique. The voltage response to a step of current consisted of two components arising from bulk and membrane resistance respectively. 2. The potassium permeability was calculated by applying Goldman theory to 86Rb+ efflux data. 3. The internal pH (pHi) and internal free calcium (pCai) were measured directly using single- and double-barrelled ion-sensitive microelectrodes. 4. Lens pHi was 6.9 in control solution (external pH, pHo = 7.3) and was reduced on lowering pHo. The presence of propionate or 100% CO2 in the external solution accentuated this effect. 5. Internal acidification was accompanied by a depolarization of membrane potential, an increase in membrane and cell-to-cell resistance and a decrease in potassium permeability. The acidification had no effect on pCai. 6. The intracellular pH was increased by perifusing with trimethylamine or NH4Cl. Both treatments induced a membrane depolarization with little change in potassium permeability. Subsequent removal of NH4Cl led to a sustained decrease in pHi. 7. In every case where pHi decreased, the changes in membrane potential and conductance could be explained largely on the basis of a decrease in potassium permeability. The concomitant increase in cell-to-cell resistance was less pronounced and probably insufficient to uncouple the lens system.
机译:1.使用两个内部微电极技术测量大鼠晶状体的电导。电流阶跃的电压响应分别由体积和膜电阻引起的两个分量组成。 2.通过将高盛理论应用于86Rb +外排数据计算钾的渗透率。 3.使用单管和双管离子敏感微电极直接测量内部pH(pHi)和内部游离钙(pCai)。 4.晶状体pHi在对照溶液中(外部pH,pHo = 7.3)为6.9,并且在降低pHo时降低。外部溶液中丙酸酯或100%CO2的存在加剧了这种效应。 5.内部酸化伴随着膜电位的去极化,膜和细胞间抗性的增加以及钾渗透性的降低。酸化对pCai没有影响。 6.通过与三甲胺或NH4Cl渗透增加细胞内pH。两种处理均引起膜去极化,钾渗透性几乎没有变化。随后除去NH 4 Cl导致pHi持续降低。 7.在pHi降低的每种情况下,膜电势和电导率的变化可以在很大程度上基于钾渗透率的下降来解释。随之而来的电池间电阻的增加不太明显,并且可能不足以使透镜系统解耦。

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