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大鼠侧脑室脉络丛对氯离子的主动转运

Active transport of chloride by lateral ventricle choroid plexus of the rat.

作者信息

Smith Q R, Johanson C E

出版信息

Am J Physiol. 1985 Oct;249(4 Pt 2):F470-7. doi: 10.1152/ajprenal.1985.249.4.F470.

Abstract

The nature of Cl transport and its relation to Na and K transport were analyzed in adult rat lateral ventricle choroid plexus incubated in cerebrospinal fluid (CSF) medium at 37 degrees C and PCO2 = 30 mmHg. In synthetic CSF (extracellular Cl [( Cl]o) = 130 mM), the intracellular Cl [( Cl]i) was three times that estimated for passive distribution. Choroid plexus [Cl]i was not determined by Donnan distribution because [Cl]i remained constant at approximately 50 mM while the [K]i/[K]o ratio was varied 10-fold by drugs and cation substitutions. A [Cl]i/[Cl]o ratio of approximately 0.38 was found when [Cl]o was varied from 15 to 130 mM by isosmotic replacement of Cl with methyl sulfate or isethionate. However, the [Cl]i/[Cl]o ratio increased to greater than 1.0 when [Cl]o was lowered below 5 mM. Reduction in bath temperature to 15 degrees C (CSF PCO2 = 50 mmHg) increased both [Cl]i/[Cl]o and [HCO3]i/[HCO3]o to approximately 0.6. SITS, an inhibitor of Cl-HCO3 transport, reduced [Cl]i by 18 mM, decreasing the [Cl]i/[Cl]o ratio close to the equilibrium value. In contrast, neither furosemide (10(-3) M) nor low CSF [Na]o (3 mM) reduced Cl accumulation. It is concluded that uphill movement of Cl into choroid plexus epithelium occurs primarily by Cl-HCO3 antiport and not by Na-Cl symport.

摘要

在37℃、PCO2 = 30 mmHg的脑脊液(CSF)培养基中孵育的成年大鼠侧脑室脉络丛中,分析了氯(Cl)转运的性质及其与钠(Na)和钾(K)转运的关系。在合成脑脊液中(细胞外氯[Cl]o = 130 mM),细胞内氯[Cl]i是被动分布估计值的三倍。脉络丛[Cl]i不是由唐南分布决定的,因为当[K]i / [K]o比值通过药物和阳离子替代变化10倍时,[Cl]i保持在约50 mM不变。当通过用甲硫酸盐或羟乙基磺酸盐等渗替代Cl使[Cl]o从15 mM变化到130 mM时,发现[Cl]i / [Cl]o比值约为0.38。然而,当[Cl]o降低到5 mM以下时,[Cl]i / [Cl]o比值增加到大于1.0。将孵育温度降低到15℃(CSF PCO2 = 50 mmHg)会使[Cl]i / [Cl]o和[HCO3]i / [HCO3]o都增加到约0.6。Cl-HCO3转运抑制剂SITS使[Cl]i降低了18 mM,使[Cl]i / [Cl]o比值接近平衡值。相比之下,呋塞米(10^(-3) M)和低CSF [Na]o(3 mM)都不会降低Cl的积累。得出的结论是,Cl向脉络丛上皮的上坡转运主要通过Cl-HCO3反向转运而不是通过Na-Cl同向转运发生。

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