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大鼠髓袢升支粗段顶端膜钠/氢交换的功能作用

Functional roles of apical membrane Na+/H+ exchange in rat medullary thick ascending limb.

作者信息

Good D W, Watts B A

机构信息

Department of Medicine, University of Texas Medical Branch, Galveston 77555, USA.

出版信息

Am J Physiol. 1996 Apr;270(4 Pt 2):F691-9. doi: 10.1152/ajprenal.1996.270.4.F691.

Abstract

The medullary thick ascending limb (MTAL) of the rat actively absorbs both HCO3- and ammonium. The roles of apical membranes Na+/H+ exchange in these processes and in determining steady-state intracellular pH (pHi) were examined in MTAL perfused in vitro with solutions containing 146 mM Na+ and 25 mM HCO3- (pH 7.4). Addition of 1 mM amiloride or 50 microM ethylisopropylamiloride (EIPA) to the lumen decreased HCO3- absorption (JHCO3) from 10.6 +/- 0.5 to 2.3 +/- 0.3 pmol.min-1.mm-1 (P < 0.001) and pHi from 7.10 +/- 0.02 to 6.86 +/- 0.03 (P < 0.001). The combination of lumen Na+ replacement plus amiloride abolished JHCO3. Chronic metabolic acidosis (CMA) caused a 32% increase in JHCO3 that was inhibited by luminal amiloride. Addition of 4 mM NH4Cl to perfusate and bath markedly decreased pHi (from 7.10 to 6.70) but did not stimulate luminal H+ secretion as assessed by HCO3- absorption. With 4 mM NH4Cl in perfusate and bath, luminal addition of amiloride decreased pHi from 6.70 +/- 0.06 to 6.50 +/- 0.05 (P < 0.005) but had no effect on net ammonium absorption. These results demonstrate that 1) apical membrane Na+/H+ exchange mediates virtually all of HCO3- absorption and is an important determinant of steady-state pHi in the MTAL; 2) the adaptive increase in HCO3- absorption in CMA is mediated by an increase in apical membrane Na+/H+ exchange; 3) ammonium markedly acidifies the cells but does not stimulate luminal acidification, suggesting that pHi is not a predominant influence on apical Na+/H+ exchange activity and that H+ generated in the cells as the result of transcellular ammonium absorption is extruded across the basolateral membrane; and 4) apical membrane Na+/H+ exchange is not important for ammonium absorption.

摘要

大鼠的髓袢升支粗段(MTAL)能主动重吸收HCO₃⁻和铵。在体外以含146 mM Na⁺和25 mM HCO₃⁻(pH 7.4)的溶液灌注MTAL,研究了顶端膜Na⁺/H⁺交换在这些过程以及在决定稳态细胞内pH(pHi)中的作用。向管腔内加入1 mM氨氯吡脒或50 μM乙基异丙基氨氯吡脒(EIPA),可使HCO₃⁻重吸收(JHCO₃)从10.6±0.5降至2.3±0.3 pmol·min⁻¹·mm⁻¹(P<0.001),pHi从7.10±0.02降至6.86±0.03(P<0.001)。管腔Na⁺置换加氨氯吡脒可消除JHCO₃。慢性代谢性酸中毒(CMA)使JHCO₃增加32%,该增加被管腔氨氯吡脒抑制。向灌注液和浴液中加入4 mM NH₄Cl可使pHi显著降低(从7.10降至6.70),但如通过HCO₃⁻重吸收评估,并未刺激管腔H⁺分泌。在灌注液和浴液中有4 mM NH₄Cl时,向管腔内加入氨氯吡脒可使pHi从6.70±0.06降至6.50±0.05(P<0.005),但对净铵重吸收无影响。这些结果表明:1)顶端膜Na⁺/H⁺交换几乎介导了所有HCO₃⁻重吸收,是MTAL中稳态pHi的重要决定因素;2)CMA中HCO₃⁻重吸收的适应性增加是由顶端膜Na⁺/H⁺交换增加介导的;3)铵可使细胞显著酸化,但不刺激管腔酸化,这表明pHi对顶端Na⁺/H⁺交换活性不是主要影响因素,且跨细胞铵重吸收产生的细胞内H⁺通过基底外侧膜排出;4)顶端膜Na⁺/H⁺交换对铵重吸收不重要。

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