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代谢性碱中毒时皮质远端小管的跨上皮pH梯度

Transepithelial pH gradients in cortical distal tubules during metabolic alkalosis.

作者信息

Lopes M J, Malnic G

机构信息

Departamento de Fisiologia e Biofísica, Universidade de São Paulo, Brasil.

出版信息

Braz J Med Biol Res. 1993 Jul;26(7):779-94.

PMID:8268827
Abstract
  1. The cortical distal tubule of the rat kidney participates in the regulation of acid-base balance, showing bicarbonate reabsorption, secretion or absence of transport under different experimental conditions. In the present study, we measured differences in transepithelial pH using double ion-exchange resin/reference microelectrodes in control and alkalotic (chronic plus acute) male Wistar rats and in alkalotic rats receiving a K+ supplement in diet and infusion. 2. pH was measured in the tubule lumen during stationary microperfusion with 25 mM bicarbonate Ringer solution, and in peritubular vessels next to the perfused tubules. 3. Differences in transepithelial pH were 0.70 +/- 0.12 (N = 16) pH units in early distal tubules (ED) and 1.03 +/- 0.050 (N = 15) in late distal tubules LD) of control rats, 0.22 +/- 0.056 (N = 17) in ED and 0.25 +/- 0.050 (N = 20) in LD of alkalotic rats, and -0.02 +/- 0.039 (N = 24) in ED and -0.02 +/- 0.040 (N = 24) in LD of K(+)-supplemented alkalotic rats. 4. In control rats, the transepithelial potential difference (PD) (-8.9 +/- 1.45 mV (N = 16) in ED and -32.7 +/- 2.99 mV (N = 15) in LD) was not large enough to explain transepithelial H+ and HCO3- gradients, suggesting the presence of an active transport mechanism responsible for their maintenance. 5. The present data show that the cortical distal tubule is able to establish transepithelial pH (HCO3-) differences, that these differences are reduced by alkalosis and abolished by alkalosis plus K+ supplementation, and that, although inversion of pH gradients (evidence for bicarbonate secretion) was observed in individual tubules, this inversion was not significant in the groups studied.
摘要
  1. 大鼠肾脏的皮质远曲小管参与酸碱平衡的调节,在不同实验条件下表现出碳酸氢盐的重吸收、分泌或无转运。在本研究中,我们使用双离子交换树脂/参比微电极测量了对照和碱中毒(慢性加急性)雄性Wistar大鼠以及饮食和输注中补充钾的碱中毒大鼠的跨上皮pH差异。2. 在使用25 mM碳酸氢盐林格溶液进行固定微灌注期间,测量小管腔中的pH,并在灌注小管旁边的肾小管周围血管中测量pH。3. 对照大鼠早期远曲小管(ED)的跨上皮pH差异为0.70±0.12(N = 16)pH单位,晚期远曲小管(LD)为1.03±0.050(N = 15);碱中毒大鼠的ED为0.22±0.056(N = 17),LD为0.25±0.050(N = 20);补充钾的碱中毒大鼠的ED为-0.02±0.039(N = 24),LD为-0.02±0.040(N = 24)。4. 在对照大鼠中,跨上皮电位差(PD)(ED中为-8.9±1.45 mV(N = 16),LD中为-32.7±2.99 mV(N = 15))不足以解释跨上皮H⁺和HCO₃⁻梯度,提示存在负责维持这些梯度的主动转运机制。5. 目前的数据表明,皮质远曲小管能够建立跨上皮pH(HCO₃⁻)差异,这些差异在碱中毒时减小,在碱中毒加补充钾时消失,并且,尽管在个别小管中观察到pH梯度反转(碳酸氢盐分泌的证据),但在研究的组中这种反转并不显著。

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