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犬肾中碳酸酐酶依赖性钠重吸收的低氧消耗

Low oxygen cost of carbonic anhydrase-dependent sodium reabsorption in the dog kidney.

作者信息

Ostensen J, Stokke E S, Hartmann A, Wensell K, Kiil F

机构信息

Institute for Experimental Medical Research, University of Oslo, Ullevaal Hospital, Norway.

出版信息

Acta Physiol Scand. 1989 Oct;137(2):189-98. doi: 10.1111/j.1748-1716.1989.tb08738.x.

Abstract

To examine the oxygen requirement of carbonic anhydrase-dependent sodium reabsorption in the proximal tubule, 18 anaesthetized dogs were studied under conditions of saturated distal NaCl reabsorption; the latter was accomplished by volume expansion (all groups) combined with infusion of loop diuretics (groups 1 and 3). Acetazolamide reduced HCO3- reabsorption by 602 +/- 32 mumol min-1 (55%, group 1) and by 777 +/- 103 mumol min-1 (66%, group 2). This was accompanied with a reduction in sodium reabsorption and oxygen consumption in a molar delta Na/delta O2 ratio of about 45 in both groups of dogs. The delta HCO3/delta O2 ratio averaged 16 +/- 1, which was not significantly different from the theoretical value of 18 expected for transcellular sodium transport by Na+, K+-ATPase. Mannitol (group 3) reduced NaCl reabsorption by 37 +/- 2% without affecting NaHCO3 reabsorption or oxygen consumption significantly. We conclude that carbonic anhydrase-dependent NaCl reabsorption in the proximal tubules is passive, and that NaHCO3 reabsorption is the only important active sodium transport which is sensitive to inhibition of carbonic anhydrase.

摘要

为研究近端小管中碳酸酐酶依赖性钠重吸收的氧需求,在远端氯化钠重吸收饱和的条件下对18只麻醉犬进行了研究;后者通过容量扩张(所有组)联合输注袢利尿剂(第1组和第3组)来实现。乙酰唑胺使HCO₃⁻重吸收分别减少602±32 μmol·min⁻¹(55%,第1组)和777±103 μmol·min⁻¹(66%,第2组)。这伴随着两组犬钠重吸收和氧消耗的减少,摩尔ΔNa/ΔO₂比值约为45。ΔHCO₃/ΔO₂比值平均为16±1,与Na⁺,K⁺-ATP酶介导的跨细胞钠转运预期的理论值18无显著差异。甘露醇(第3组)使NaCl重吸收减少37±2%,但对NaHCO₃重吸收或氧消耗无显著影响。我们得出结论,近端小管中碳酸酐酶依赖性NaCl重吸收是被动的,并且NaHCO₃重吸收是唯一对碳酸酐酶抑制敏感的重要主动钠转运。

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