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慢性肾功能衰竭大鼠肾脏中钠转运体NHE - 3、NaPi - II、钠钾ATP酶、BSC - 1和TSC的表达改变。

Altered expression of Na transporters NHE-3, NaPi-II, Na-K-ATPase, BSC-1, and TSC in CRF rat kidneys.

作者信息

Kwon T H, Frøkiaer J, Fernández-Llama P, Maunsbach A B, Knepper M A, Nielsen S

机构信息

Department of Cell Biology, Institute of Anatomy, University of Aarhus, DK-8000 Aarhus, Denmark.

出版信息

Am J Physiol. 1999 Aug;277(2):F257-70. doi: 10.1152/ajprenal.1999.277.2.F257.

Abstract

In chronic renal failure (CRF), reduction in renal mass leads to an increase in the filtration rates of the remaining nephrons and increased excretion of sodium per nephron. To address the mechanisms involved in the increased sodium excretion, we determined the total kidney levels and the densities per nephron of the major renal NaCl transporters in rats with experimental CRF. Two weeks after 5/6 nephrectomy (reducing the total number of nephrons to approximately 24 +/- 8%), the rats were azotemic and displayed increased Na excretion. Semiquantitative immunoblotting revealed significant reduction in the total kidney levels of the proximal tubule Na transporters NHE-3 (48% of control), NaPi-II (13%), and Na-K-ATPase (30%). However, the densities per nephron of NHE-3, NaPi-II, and Na-K-ATPase were not significantly altered in remnant kidneys, despite the extensive hypertrophy of remaining nephrons. Immunocytochemistry confirmed the reduction in NHE-3 and Na-K-ATPase labeling densities in the proximal tubule. In contrast, there was no significant reduction in the total kidney levels of the thick ascending limb and distal convoluted tubule NaCl transporters BSC-1 and TSC, respectively. This corresponded to a 3.6 and 2.5-fold increase in densities per nephron, respectively (confirmed by immunocytochemistry). In conclusion, in this rat CRF model: 1) increased fractional sodium excretion is associated with altered expression of proximal tubule Na transporter expression (NHE-3, NaPi-II, and Na-K-ATPase), consistent with glomerulotubular imbalance in the face of increased single-nephron glomerular filtration rate; and 2) compensatory increases in BSC-1 and TSC expression per nephron occur in distal segments.

摘要

在慢性肾衰竭(CRF)中,肾单位数量减少会导致剩余肾单位的滤过率增加,且每个肾单位的钠排泄量增多。为了探究钠排泄增加所涉及的机制,我们测定了实验性CRF大鼠主要肾NaCl转运体的全肾水平及每个肾单位的密度。在进行5/6肾切除术后两周(将肾单位总数减少至约24±8%),大鼠出现氮质血症且钠排泄增加。半定量免疫印迹显示,近端小管钠转运体NHE-3(为对照的48%)、NaPi-II(13%)和Na-K-ATP酶(30%)的全肾水平显著降低。然而,尽管剩余肾单位广泛肥大,但NHE-3、NaPi-II和Na-K-ATP酶在残余肾单位中的密度并未显著改变。免疫细胞化学证实了近端小管中NHE-3和Na-K-ATP酶标记密度降低。相比之下,髓袢升支粗段和远曲小管NaCl转运体BSC-1和TSC的全肾水平并未显著降低。这分别对应每个肾单位密度增加3.6倍和2.5倍(经免疫细胞化学证实)。总之,在这个大鼠CRF模型中:1)钠排泄分数增加与近端小管钠转运体表达(NHE-3、NaPi-II和Na-K-ATP酶)改变有关,这与单个肾单位肾小球滤过率增加时的肾小球肾小管失衡一致;2)远端节段每个肾单位的BSC-1和TSC表达出现代偿性增加。

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