Zeidel M L, Seifter J L
Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts.
Kidney Int. 1988 Jul;34(1):60-6. doi: 10.1038/ki.1988.145.
Several disturbances of acid-base balance, including chronic metabolic and respiratory acidoses and metabolic alkalosis, are associated with enhanced proximal tubule bicarbonate reabsorption. To determine whether augmented brush border Na/H exchange might mediate enhanced proximal tubule bicarbonate reabsorption in these disorders, we measured Na/H exchange activity in cortical brush border membrane vesicles (BBMV) prepared from rats and rabbits adapted to hypercapnia and other chronic acid-base disturbances. BBMV prepared from control animals and animals with chronic acid-base disturbances were similar as judged by marker enzymes, alkaline phosphatase, and ouabain-sensitive phosphatase. Despite profound respiratory acidosis, no increase in Na/H exchange activity could be detected in vesicles prepared from rats adapted to chronic (8 to 10 days) or subacute (24 hr) respiratory acidosis. In addition, vesicles prepared from rabbits exposed to chronic hypercapnia did not show increased Na/H exchange when compared with contemporaneous controls. By contrast, in agreement with previously published results, amiloride-sensitive sodium uptake was increased by 30% in vesicles derived from animals with ammonium chloride-induced acidosis compared with contemporaneous controls. Two models of chronic metabolic alkalosis were also studied; vesicles from alkalotic rats did not show any alteration in Na/H exchange. We conclude that metabolic acidosis, but not respiratory acidosis or metabolic alkalosis, leads to enhanced activity of the luminal Na/H exchanger.
几种酸碱平衡紊乱,包括慢性代谢性和呼吸性酸中毒以及代谢性碱中毒,都与近端小管碳酸氢盐重吸收增强有关。为了确定在这些疾病中,刷状缘钠/氢交换增加是否可能介导近端小管碳酸氢盐重吸收增强,我们测量了从适应高碳酸血症和其他慢性酸碱紊乱的大鼠和兔子制备的皮质刷状缘膜囊泡(BBMV)中的钠/氢交换活性。通过标记酶、碱性磷酸酶和哇巴因敏感磷酸酶判断,从对照动物和患有慢性酸碱紊乱的动物制备的BBMV相似。尽管存在严重的呼吸性酸中毒,但在适应慢性(8至10天)或亚急性(24小时)呼吸性酸中毒的大鼠制备的囊泡中,未检测到钠/氢交换活性增加。此外,与同期对照相比,暴露于慢性高碳酸血症的兔子制备的囊泡未显示钠/氢交换增加。相比之下,与先前发表的结果一致,与同期对照相比,氯化铵诱导的酸中毒动物来源的囊泡中,氨氯地平敏感的钠摄取增加了30%。还研究了两种慢性代谢性碱中毒模型;碱中毒大鼠的囊泡钠/氢交换未显示任何改变。我们得出结论,代谢性酸中毒而非呼吸性酸中毒或代谢性碱中毒会导致管腔钠/氢交换体活性增强。