Sansom S C, Agulian S, Muto S, Illig V, Giebisch G
Department of Physiology, Yale University School of Medicine, New Haven, Connecticut 06510.
Am J Physiol. 1989 Jan;256(1 Pt 2):F136-42. doi: 10.1152/ajprenal.1989.256.1.F136.
We used liquid ion exchanger and conventional microelectrodes to evaluate the effects of mineralocorticoids on the intracellular K activity (aiK) and K transport properties of principal cells (PC) of isolated cortical collecting ducts (CCDs). Hoffman modulation optics and electrophysiological methods were used to identify PC. K activity was measured with two single-barreled electrodes. We found that aiK of PC from deoxycorticosterone acetate (DOCA)-treated rabbits (97.6 mM) was not different from controls (94.8 mM). The driving forces for K transport across the basolateral membrane favored cell to bath (reabsorption) in PCs from controls and bath to cell (secretion) in PCs from DOCA-treated rabbits. However, the driving force for K secretion across the apical membrane was not significantly different between the two groups. We used the intracellular aiKs and bath ion substitutions (gluconate for Cl and K for Na) to evaluate the effects of DOCA on the ion-selective properties of the basolateral membrane of PC. DOCA increased PK/PCl from 0.33 to 0.89. Our conclusion was as follows: in PC of control rabbits K is above electrochemical equilibrium across the basolateral membrane. However, the basolateral K conductance is probably too small for significant K recycling. In PC of DOCA-treated rabbits the aiK is below electrochemical equilibrium across the basolateral membrane and the K conductance is increased. These effects enhance K secretion across this border while maintaining cell K constant.
我们使用液体离子交换剂和传统微电极来评估盐皮质激素对分离的皮质集合管(CCD)主细胞(PC)的细胞内钾活性(aiK)和钾转运特性的影响。采用霍夫曼调制光学和电生理方法来识别主细胞。用两个单管电极测量钾活性。我们发现,醋酸脱氧皮质酮(DOCA)处理的兔子的主细胞的aiK(97.6 mM)与对照组(94.8 mM)没有差异。钾跨基底外侧膜转运的驱动力有利于对照组主细胞从细胞到胞外液(重吸收),而有利于DOCA处理的兔子的主细胞从胞外液到细胞(分泌)。然而,两组之间钾跨顶端膜分泌的驱动力没有显著差异。我们利用细胞内的aiK和胞外液离子置换(用葡萄糖酸盐替代氯离子,用钾替代钠离子)来评估DOCA对主细胞基底外侧膜离子选择性特性的影响。DOCA使PK/PCl从0.33增加到0.89。我们的结论如下:在对照兔子的主细胞中,钾在基底外侧膜上处于电化学平衡之上。然而,基底外侧钾电导可能太小,无法进行显著的钾再循环。在DOCA处理的兔子的主细胞中,aiK在基底外侧膜上低于电化学平衡,且钾电导增加。这些效应增强了钾跨此边界的分泌,同时保持细胞内钾恒定。