Velázquez H, Wright F S, Good D W
Am J Physiol. 1982 Jan;242(1):F46-55. doi: 10.1152/ajprenal.1982.242.1.F46.
Electrolyte transport by the renal distal tubule of rats was studied by in vivo continuous microperfusion to determine whether replacing luminal chloride with sulfate would stimulate net potassium secretion. Results in a first series of experiments showed that replacing all Cl in the perfusion fluid with SO4 reduced net Na absorption, reversed the direction of net Cl transport from net absorption to net secretion, increased the lumen-negative transepithelial voltage, and increased net K secretion. In a second series of experiments adding NaCl to a perfusion fluid containing SO4 increased net Na absorption, reversed the direction of net Cl transport from net secretion to net absorption, decreased the transepithelial voltage, and decreased net K secretion. In a third series of experiments addition of 10(-6) M amiloride to a SO4-containing perfusion fluid reduced the transepithelial voltage but did not prevent the increase in K secretion, indicating that the changes in K secretion cannot be explained solely by changes in electrical driving forces. Since net fluid absorption was controlled, the changes in K secretion cannot be attributed to solvent drag effects. In all three series of experiments the rate of net K secretion was increased when luminal Cl concentration was reduced to less than 10 mM. The results suggest the existence of a cotransport system mediating K and Cl absorption by the distal tubule. Inhibition of K absorption by low lumen Cl may contribute to the increased net K secretion seen when nonchloride anions are present in distal fluid.
通过体内连续微灌注研究大鼠肾远端小管的电解质转运,以确定用硫酸根替代管腔氯离子是否会刺激钾的净分泌。第一系列实验结果表明,用硫酸根替代灌注液中的所有氯离子会降低钠的净吸收,使氯离子的净转运方向从净吸收转变为净分泌,增加管腔负跨上皮电压,并增加钾的净分泌。在第二系列实验中,向含有硫酸根的灌注液中添加氯化钠会增加钠的净吸收,使氯离子的净转运方向从净分泌转变为净吸收,降低跨上皮电压,并降低钾的净分泌。在第三系列实验中,向含有硫酸根的灌注液中添加10⁻⁶ M氨氯吡咪会降低跨上皮电压,但不能阻止钾分泌的增加,这表明钾分泌的变化不能仅用电驱动力的变化来解释。由于净液体吸收受到控制,钾分泌的变化不能归因于溶剂拖曳效应。在所有三个系列实验中,当管腔氯离子浓度降低到小于10 mM时,钾的净分泌速率增加。结果表明存在一种共转运系统介导远端小管对钾和氯的吸收。低管腔氯离子对钾吸收的抑制可能导致当远端液中存在非氯离子阴离子时钾净分泌增加。