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钠和葡萄糖在米兰高血压大鼠肾刷状缘膜上的转运

Sodium and glucose transport across renal brush border membranes of Milan hypertensive rats.

作者信息

Parenti P, Hanozet G M, Bianchi G

出版信息

Hypertension. 1986 Oct;8(10):932-9. doi: 10.1161/01.hyp.8.10.932.

Abstract

Sodium transport across luminal membranes of proximal tubules isolated from the kidney cortex of young, prehypertensive rats of the Milan hypertensive strain (MHS) and their corresponding normotensive controls, the Milan normotensive strain (MNS), was measured. A higher sodium uptake was observed in vesicles from MHS, although membrane preparations from both strains behaved similarly as far as enzyme profile and sodium-dependent glucose transport were concerned. In the presence of an inwardly directed sodium gradient, sodium uptake depended on the relative permeability of the counterion: in the presence of 100 mM NaCl, sodium transport in MHS was 26% higher than that in normotensive controls (p less than 0.05). Also, a significantly faster sodium uptake by membrane vesicles from MHS was observed when a pH gradient and an electrical potential difference (inside-negative) were imposed across the membrane. In this condition, sodium uptake by membrane vesicles from MHS was up to 39% higher than that in control MNS (p less than 0.01). Therefore, the difference in sodium transport observed between preparations of luminal membrane from the proximal tubule of MNS and MHS seems to be due to a higher rheogenic sodium pathway in the MHS. The present results are in keeping with previous data showing an increased sodium transport across renal tubules of the MHS and support the hypothesis that the abnormality in sodium and water handling by kidneys from MHS can be related to an alteration in sodium transport across the luminal membrane of the proximal tubule cells.

摘要

对米兰高血压大鼠品系(MHS)幼年、高血压前期大鼠以及相应的正常血压对照品系米兰正常血压大鼠(MNS)肾皮质分离出的近端小管腔膜上的钠转运进行了测量。在MHS来源的囊泡中观察到更高的钠摄取量,尽管就酶谱和钠依赖性葡萄糖转运而言,两个品系的膜制剂表现相似。在存在内向钠梯度的情况下,钠摄取取决于抗衡离子的相对通透性:在100 mM NaCl存在时,MHS中的钠转运比正常血压对照高26%(p<0.05)。此外,当跨膜施加pH梯度和电势差(内侧为负)时,观察到MHS来源的膜囊泡摄取钠的速度明显更快。在这种情况下,MHS来源的膜囊泡摄取钠的量比对照MNS高39%(p<0.01)。因此,在MNS和MHS近端小管腔膜制剂之间观察到的钠转运差异似乎是由于MHS中存在更高的生电钠途径。目前的结果与先前的数据一致,先前的数据表明MHS的肾小管钠转运增加,并支持以下假设:MHS肾脏对钠和水的处理异常可能与近端小管细胞腔膜上钠转运的改变有关。

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