Computer model of unstirred layer and intracellular pH changes. Determinants of unstirred layer pH

被引:4
|
作者
Marrannes, Roger
机构
[1] 2300 Turnhout
关键词
Computer model; Unstirred layer pH; Intracellular pH; Proton transport; Buffer; Carbonic anhydrase; Disequilibrium pH; pH; EXTRACELLULAR CARBONIC-ANHYDRASE; LIPID-BILAYER-MEMBRANES; H+ BUFFERING POWER; SURFACE PH; DISSOCIATION-CONSTANT; CHEMICAL-REACTIONS; PROTON TRANSPORT; ACID TRANSPORT; WEAK ACIDS; CO2;
D O I
10.1007/s10867-013-9309-9
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Transmembrane acid-base fluxes affect the intracellular pH and unstirred layer pH around a superfused biological preparation. In this paper the factors influencing the unstirred layer pH and its gradient are studied. An analytical expression of the unstirred layer pH gradient in steady state is derived as a function of simultaneous transmembrane fluxes of (weak) acids and bases with the dehydration reaction of carbonic acid in equilibrium. Also a multicompartment computer model is described consisting of the extracellular bulk compartment, different unstirred layer compartments and the intracellular compartment. With this model also transient changes and the influence of carbonic anhydrase (CA) can be studied. The analytical expression and simulations with the multicompartment model demonstrate that in steady state the unstirred layer pH and its gradient are influenced by the size and type of transmembrane flux of acids and bases, their dissociation constant and diffusion coefficient, the concentration, diffusion coefficient and type of mobile buffers and the activity and location of CA. Similar principles contribute to the amplitude of the unstirred layer pH transients. According to these models an immobile buffer does not influence the steady-state pH, but reduces the amplitude of pH transients especially when these are fast. The unstirred layer pH provides useful information about transmembrane acid-base fluxes. This paper gives more insight how the unstirred layer pH and its transients can be interpreted. Methodological issues are discussed.
引用
收藏
页码:515 / 564
页数:50
相关论文
共 50 条