Jentsch T J, Matthes H, Keller S K, Wiederholt M
Pflugers Arch. 1985 Feb;403(2):175-85. doi: 10.1007/BF00584097.
Using intracellular microelectrode technique, the effect of anion substitution on the voltage responses to extracellular bicarbonate and sodium was explored in cultured bovine corneal endothelial cells. The overall amplitude of voltage changes induced by periodic changes of [HCO-3]o (depolarization upon removal of HCO-3 and hyperpolarization upon readdition) was reduced when Cl- was replaced by organic anions (cyclamate, methylsulfate, benzenesulfonate) or by SO4(2-), and to a lesser extent by substitution with Br-. There was a similar effect of anion substitution on the response to changes of [Na+]o. In both cases, in the absence of Cl, the voltage V returned at a slower rate to baseline levels after it had been transiently changed by either an imposed Na- or HCO3- gradient, indicating a slower dissipation of these gradients. The direct response of V to these imposed gradients was affected only to a minor degree. Replacement of Cl- by SO4(2-) or organic anions led to a slow, reversible depolarization of the cell, while substitution with Br- had only a slight effect. The effect of anion substitution on the voltage responses to HCO-3 or Na+ could not be mimicked by a depolarization induced by Ba2+ (1 mM). Furosemide (10(-3) M) led to a slight reduction of the voltage responses to HCO-3, but could not suppress the effect of anion substitution on these reactions. It could neither suppress the depolarization induced by anion substitution and had no effect on steady-state PD. It is suggested, that cultured bovine corneal endothelial cells, in addition to a previously demonstrated electrogenic HCO-3-Na+-cotransport, which is probably not dependent on Cl, possess an electroneutral mechanism for HCO-3 and/or Na+-movement, which depends on Cl. No evidence for a Cl-conductance could be obtained.
采用细胞内微电极技术,在培养的牛角膜内皮细胞中研究了阴离子替代对细胞外碳酸氢盐和钠离子电压反应的影响。当氯离子被有机阴离子(环己基氨基磺酸盐、甲基硫酸盐、苯磺酸盐)或硫酸根离子替代时,由细胞外[HCO₃⁻]周期性变化诱导的电压变化的总体幅度(去除HCO₃⁻时去极化,重新添加时超极化)降低,而用溴离子替代时降低程度较小。阴离子替代对[Na⁺]ₒ变化反应也有类似影响。在这两种情况下,在无氯离子时,电压V在被施加的钠离子或碳酸氢根离子梯度短暂改变后,以较慢速率恢复到基线水平,表明这些梯度消散较慢。V对这些施加梯度的直接反应仅受到轻微影响。用硫酸根离子或有机阴离子替代氯离子导致细胞缓慢、可逆的去极化,而用溴离子替代仅有轻微影响。阴离子替代对碳酸氢根离子或钠离子电压反应的影响不能被1 mM钡离子诱导的去极化模拟。呋塞米(10⁻³ M)导致对碳酸氢根离子电压反应略有降低,但不能抑制阴离子替代对这些反应的影响。它既不能抑制阴离子替代诱导的去极化,对稳态跨膜电位也无影响。研究表明,培养的牛角膜内皮细胞除了先前证明的可能不依赖氯离子的电生性HCO₃⁻-Na⁺共转运外,还具有一种依赖氯离子的HCO₃⁻和/或Na⁺移动的电中性机制。未获得氯离子电导的证据。