Verkman A S, Alpern R J
Biophys J. 1987 Apr;51(4):533-46. doi: 10.1016/S0006-3495(87)83379-9.
An open circuit kinetic model was developed to calculate the time course of proximal tubule cell pH, solute concentrations, and volume in response to induced perturbations in luminal or peritubular fluid composition. Solute fluxes were calculated from electrokinetic equations containing terms for known carrier saturabilities, allosteric dependences, and ion coupling ratios. Apical and basolateral membrane potentials were determined iteratively from the requirements of cell electroneutrality and equal opposing transcellular and paracellular currents. The model converged to membrane potentials accurate to 0.05% in one to four iterations. Model variables included cell concentrations of Na, K, HCO3, glucose, pH (uniform CO2), volume, and apical and basolateral membrane potentials. The basic model contained passive apical membrane transport of Na/H, Na/glucose, H and K, basolateral transport of Na/3HCO3, K, H, and glucose, and paracellular transport of Na, K, Cl, and HCO3; apical H and basolateral 3Na/2K-ATPases were present. Apical Na/H and basolateral K transport were regulated allosterically by pH. Apical Na/H transport, basolateral Na/3HCO3 transport, and the 3Na/2K-ATPase were saturable. Model parameters were chosen from data in the rat proximal tubule. Model predictions for the magnitude and time course of cell pH, Na, and membrane potential in response to rapid changes in apical and peritubular Na and HCO3 were in excellent agreement with experiment. In addition, the model requires that there exist an apical H-ATPase, basolateral Na/3HCO3 transport saturable with HCO3, and electroneutral basolateral K transport.
建立了一个开路动力学模型,以计算近端小管细胞pH值、溶质浓度和体积随管腔或肾小管周围液体成分的诱导扰动而变化的时间进程。溶质通量由包含已知载体饱和度、变构依赖性和离子耦合比项的电动方程计算得出。根据细胞电中性以及跨细胞和细胞旁电流相等且相反的要求,迭代确定顶端和基底外侧膜电位。该模型在一到四次迭代中收敛到精度为0.05%的膜电位。模型变量包括细胞内Na、K、HCO3、葡萄糖、pH(均匀CO2)、体积以及顶端和基底外侧膜电位。基本模型包含Na/H、Na/葡萄糖、H和K的被动顶端膜转运,Na/3HCO3、K、H和葡萄糖的基底外侧转运,以及Na、K、Cl和HCO3的细胞旁转运;存在顶端H和基底外侧3Na/2K-ATP酶。顶端Na/H和基底外侧K转运受pH变构调节。顶端Na/H转运、基底外侧Na/3HCO3转运和3Na/2K-ATP酶是可饱和的。模型参数从大鼠近端小管的数据中选取。该模型对顶端和肾小管周围Na和HCO3快速变化时细胞pH值、Na和膜电位的大小和时间进程的预测与实验结果非常吻合。此外,该模型要求存在顶端H-ATP酶、对HCO3可饱和的基底外侧Na/3HCO3转运以及电中性的基底外侧K转运。