Hubel K A
J Clin Invest. 1973 Dec;52(12):3172-9. doi: 10.1172/JCI107517.
An exchange of Na(+) for H(+) has been proposed to explain why jejunal Na(+) absorption is influenced by luminal concentrations of H(+) and HCO(3) (-). We studied the influence of luminal Na(+) concentration on net HCO(3) (-) absorption by perfusing rat jejunum in vivo. When Na(+) was omitted from the perfusion fluid, HCO(3) (-) absorption diminished by a fixed amount over a range of initial HCO(3) (-) concentrations of 15 to 80 mM. This change was not caused by alterations in transmural PD or direction of water movement. Because the rate of HCO(3) (-) absorption decreased as the luminal HCO(3) (-) concentration lessened, Na(+)-dependent HCO(3) (-) absorption accounted for an increasing percent of total absorption as the luminal concentration of HCO(3) (-) diminished. The effect of Na(+) on HCO(3) (-) absorption is mediated, at least in part, by H(+) secretion, because luminal CO(2) production (manifested by luminal P(CO2)) dimished as HCO(3) (-) absorption decreased. The changes in P(CO2) are caused by reaction of H(+) with HCO(3) (-) in the luminal fluid because luminal P(CO2) is augmented by the presence of HCO(3) (-) and is diminished by addition of phosphate or Tris buffer. Whether all H(+) secretion requires luminal Na(+) cannot be determined with these experimental techniques because mucosal permeability to Na(+) and the unstirred layer make it impossible to eliminate Na(+) ions from the luminal cell surface. The nature of the mechanism for HCO(3) (-) transport that is not sodium dependent remains to be determined.
有人提出钠氢交换机制来解释为何空肠钠吸收受管腔内氢离子和碳酸氢根离子浓度的影响。我们通过对大鼠空肠进行体内灌注,研究了管腔内钠浓度对碳酸氢根净吸收的影响。当灌注液中不含钠时,在15至80 mM的初始碳酸氢根浓度范围内,碳酸氢根吸收减少了固定量。这种变化并非由跨壁电位差或水移动方向的改变引起。由于随着管腔内碳酸氢根浓度降低,碳酸氢根吸收速率下降,因此随着管腔内碳酸氢根浓度降低,钠依赖性碳酸氢根吸收在总吸收中所占百分比增加。钠对碳酸氢根吸收的影响至少部分是由氢离子分泌介导的,因为随着碳酸氢根吸收减少,管腔内二氧化碳生成(以管腔内P(CO2)表示)减少。管腔内P(CO2)的变化是由管腔内液中的氢离子与碳酸氢根反应引起的,因为碳酸氢根的存在会增加管腔内P(CO2),而添加磷酸盐或Tris缓冲液则会使其降低。由于黏膜对钠的通透性和未搅动层使得无法从管腔细胞表面消除钠离子,因此无法用这些实验技术确定所有氢离子分泌是否都需要管腔内的钠。非钠依赖性碳酸氢根转运机制的本质仍有待确定。