Jakobsson E
Am J Physiol. 1980 May;238(5):C196-206. doi: 10.1152/ajpcell.1980.238.5.C196.
Equations have been written and solved that describe for animal cells the relationships among membrane transport, cell volume, membrane potential, and distribution of permeant solute. The essential system consists of n + 2 equations, where n is the number of permeant solute species. The n of the equations are the n transport equations for the permeant species, one for each species. The other two equations are statements of 1) the condition for bulk electroneutrality inside the cell and 2) the condition for isotonicity between the interior and exterior of the cell. Numerical solutions have been obtained in both the steady-state and time-varying cases for transport equations that are physically and phenomenologically reasonable. In addition to numerical solutions analytic expressions are presented that show the ranges of membrane parameters essential for volume regulation; for values of membrane parameters beyond explicitly defined bounds, the equations do not have real, positive solutions for cell volume.
已经编写并求解了一些方程,这些方程描述了动物细胞中膜运输、细胞体积、膜电位和渗透溶质分布之间的关系。基本系统由n + 2个方程组成,其中n是渗透溶质种类的数量。其中n个方程是针对渗透物质的n个运输方程,每种物质一个方程。另外两个方程分别表述为:1)细胞内整体电中性的条件;2)细胞内外等渗的条件。对于物理和现象学上合理的运输方程,已经在稳态和时变情况下获得了数值解。除了数值解之外,还给出了解析表达式,这些表达式显示了体积调节所需的膜参数范围;对于超出明确界定范围的膜参数值,这些方程对于细胞体积没有实数正解。