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本文引用的文献

1
Chloride uptake by brush border membrane vesicles isolated from rabbit renal cortex. Coupling to proton gradients and K+ diffusion potentials.从兔肾皮质分离的刷状缘膜囊泡对氯离子的摄取。与质子梯度和钾离子扩散电位的偶联。
J Clin Invest. 1981 Jan;67(1):103-15. doi: 10.1172/JCI110002.
2
Intracellular K+ activity and its relation to basolateral membrane ion transport in Necturus gallbladder epithelium.美西螈胆囊上皮细胞内钾离子活性及其与基底外侧膜离子转运的关系。
J Gen Physiol. 1980 Jul;76(1):33-52. doi: 10.1085/jgp.76.1.33.
3
Chloride activities in epithelia.上皮组织中的氯离子活性。
Fed Proc. 1980 Sep;39(11):2860-4.
4
Chloride movement across the basolateral membrane of proximal tubule cells.氯离子跨近端小管细胞基底外侧膜的转运。
J Membr Biol. 1981 Jan 30;58(1):35-42. doi: 10.1007/BF01871032.
5
Intracellular potentials in rabbit proximal tubules perfused in vitro.体外灌注兔近端小管的细胞内电位。
Am J Physiol. 1981 Mar;240(3):F200-10. doi: 10.1152/ajprenal.1981.240.3.F200.
6
Electrical properties of the basolateral membrane of the straight portion of the rabbit proximal renal tubule.兔近端肾小管直部基底外侧膜的电特性。
J Physiol. 1982 May;326:49-63. doi: 10.1113/jphysiol.1982.sp014176.
7
Barium inhibition of basolateral membrane potassium conductance in tracheal epithelium.钡对气管上皮基底外侧膜钾离子电导的抑制作用。
Am J Physiol. 1983 Jun;244(6):F639-45. doi: 10.1152/ajprenal.1983.244.6.F639.
8
Lack of effect of peritubular protein on passive NaCl transport in the rabbit proximal tubule.肾小管周围蛋白对兔近端小管中氯化钠被动转运无作用。
J Clin Invest. 1983 Feb;71(2):268-81. doi: 10.1172/jci110767.
9
Intracellular Cl- activity of the proximal tubule of Triturus kidney: dependence on extracellular ionic composition and transmembrane potential.蝾螈肾脏近端小管的细胞内氯离子活性:对细胞外离子组成和跨膜电位的依赖性。
Am J Physiol. 1983 Sep;245(3):F359-66. doi: 10.1152/ajprenal.1983.245.3.F359.
10
Anthracene-9-carboxylic acid inhibits renal chloride reabsorption.蒽-9-羧酸抑制肾脏对氯离子的重吸收。
Pflugers Arch. 1983 Jul;398(2):172-4. doi: 10.1007/BF00581068.

兔近端曲管中中性跨细胞氯化钠转运及中性基底外侧氯流出的证据。

Evidence for neutral transcellular NaCl transport and neutral basolateral chloride exit in the rabbit proximal convoluted tubule.

作者信息

Baum M, Berry C A

出版信息

J Clin Invest. 1984 Jul;74(1):205-11. doi: 10.1172/JCI111403.

DOI:10.1172/JCI111403
PMID:6736248
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC425202/
Abstract

The electrical nature of active NaCl transport and the significance of a basolateral membrane chloride conductance were examined in isolated perfused rabbit proximal convoluted tubules (PCT). PCT were perfused with a high chloride solution that simulated late proximal tubular fluid and were bathed in an albumin solution that simulated rabbit serum in the control and recovery periods. The electrical nature of NaCl transport was examined by bathing the tubules in a high chloride albumin solution where there were no anion gradients. Volume reabsorption (Jv) during the control and recovery period was 0.56 and 0.51 nl/mm X min, respectively, and 0.45 nl/mm X min when the tubules were bathed in a high chloride bath. The transepithelial potential difference (PD) during the control and recovery periods averaged 2.3 mV, but decreased to 0.0 mV in the absence of anion gradients, which indicated that NaCl transport is electroneutral. Further evidence that NaCl transport is electroneutral was obtained by examining the effect of addition of 0.01 mM ouabain in PCT perfused and bathed with high chloride solutions. The Jv was 0.54 nl/mm X min in the control period and not statistically different from zero after inhibition of active transport. The PD was not different from zero in both periods. Two groups of studies examined the role of basolateral membrane Cl- conductance in NaCl transport. First, depolarizing the basolateral membrane with 2 mM bath Ba++ did not significantly affect Jv or PD. Second, the effect of the presumptive Cl- conductance inhibitor anthracene-9-CO2H was examined. Anthracene-9-CO2H did not significantly affect Jv or PD. In conclusion, these data show that NaCl transport in the PCT is electroneutral and transcellular and provide evidence against a significant role for basolateral membrane chloride conductance in the rabbit PCT.

摘要

在分离灌注的兔近端曲管(PCT)中,研究了活性氯化钠转运的电性质以及基底外侧膜氯电导的意义。在对照期和恢复期,用模拟近端小管晚期液体的高氯溶液灌注PCT,并将其置于模拟兔血清的白蛋白溶液中。通过将小管置于无阴离子梯度的高氯白蛋白溶液中来研究氯化钠转运的电性质。对照期和恢复期的体积重吸收(Jv)分别为0.56和0.51 nl/mm×min,当小管置于高氯浴中时为0.45 nl/mm×min。对照期和恢复期的跨上皮电位差(PD)平均为2.3 mV,但在无阴离子梯度时降至0.0 mV,这表明氯化钠转运是电中性的。通过研究在灌注和浸泡高氯溶液的PCT中添加0.01 mM哇巴因的效果,获得了进一步证明氯化钠转运是电中性的证据。对照期的Jv为0.54 nl/mm×min,在抑制主动转运后与零无统计学差异。两个时期的PD均与零无差异。两组研究考察了基底外侧膜氯电导在氯化钠转运中的作用。首先,用2 mM浴液Ba++使基底外侧膜去极化对Jv或PD无显著影响。其次,研究了假定的氯电导抑制剂蒽-9-CO2H的作用。蒽-9-CO2H对Jv或PD无显著影响。总之,这些数据表明PCT中的氯化钠转运是电中性的且为跨细胞转运,并提供证据反驳基底外侧膜氯电导在兔PCT中起重要作用的观点。