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酸中毒和钾缺乏时大鼠肾近端小管细胞的细胞内电位及钾活性

Intracellular potential and K+ activity in rat kidney proximal tubular cells in acidosis and K+ depletion.

作者信息

Cemerikić D, Wilcox C S, Giebisch G

出版信息

J Membr Biol. 1982;69(2):159-65. doi: 10.1007/BF01872275.

Abstract

Techniques were developed for the measurement of intracellular potentials and potassium activities in rat proximal tubule cells using double barreled K+ liquid-ion-exchanger microelectrodes. After obtaining measurements of stable and reliable control values, the effects of K+ depletion and metabolic and respiratory acidosis on the intracellular potential and K+ activity in rat kidney proximal tubular cells were determined. At a peritubular membrane potential of -66.3 +/- 1.3 mV (mean +/- SE), intracellular K+ activity was 65.9 +/- 2.0 mEq/liter in the control rats. In metabolic acidosis [70 mg NH4Cl/100 g body wt) the peritubular membrane potential was significantly reduced to -47.5 +/- 1.9 mV, and cellular K+ activity to 53.5 +/- 2.0 mEq/liter. In contrast, in respiratory acidosis (15% CO2) the peritubular membrane potential was significantly lowered to -46.1 +/- 1.39 mV, but the cellular K+ activity was maintained at an almost unchanged level of 63.7 +/- 1.9 mEq/liter. In K+ depleted animals (6 weeks on low K+ diet), the peritubular membrane potential was significantly higher than in control animals, -74.8 +/- 2.1 mV, and cellular K+ activity was moderately but significantly reduced to 58.1 +/- 2.7 mEq/liter, Under all conditions studied, cellular K+ was above electrochemical equilibrium. Consequently, an active mechanism for cellular K+ accumulation must exist at one or both cell membranes. Furthermore, peritubular HCO3- appears to be an important factor in maintaining normal K+ distribution across the basolateral cell membrane.

摘要

采用双管钾离子液体离子交换微电极开发了测量大鼠近端小管细胞内电位和钾活性的技术。在获得稳定可靠的对照值测量结果后,确定了钾缺乏以及代谢性和呼吸性酸中毒对大鼠肾近端小管细胞内电位和钾活性的影响。在管周膜电位为-66.3±1.3 mV(平均值±标准误)时,对照大鼠的细胞内钾活性为65.9±2.0 mEq/升。在代谢性酸中毒(70 mg NH4Cl/100 g体重)时,管周膜电位显著降低至-47.5±1.9 mV,细胞钾活性降至53.5±2.0 mEq/升。相比之下,在呼吸性酸中毒(15% CO2)时,管周膜电位显著降低至-46.1±1.39 mV,但细胞钾活性维持在几乎不变的水平,即63.7±1.9 mEq/升。在钾缺乏的动物(低钾饮食6周)中,管周膜电位显著高于对照动物,为-74.8±2.1 mV,细胞钾活性适度但显著降低至58.1±2.7 mEq/升。在所有研究条件下,细胞内钾均高于电化学平衡。因此,在一个或两个细胞膜上必定存在细胞钾积累的主动机制。此外,管周HCO3-似乎是维持钾在基底外侧细胞膜上正常分布的一个重要因素。

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