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甲状旁腺激素对兔肾连接小管的作用:跨壁电压的双相反应。

Effect of parathyroid hormone on the connecting tubule from the rabbit kidney: biphasic response of transmural voltage.

作者信息

Shimizu T, Yoshitomi K, Nakamura M, Imai M

机构信息

Shionogi Research Laboratories, Shionogi & Co. Ltd. Osaka, Japan.

出版信息

Pflugers Arch. 1990 May;416(3):254-61. doi: 10.1007/BF00392061.

Abstract

The effect of parathyroid hormone (PTH) on ion transport was examined by observing transmural (VT) and basolateral membrane voltage (VB) in the in vitro perfused rabbit connecting tubule. Addition of 10 nmol/l PTH to the bath induced a biphasic response of VT, with hyperpolarization followed by depolarization. Chlorophenylthioadenosine cyclic 3',5'-monophosphate mimicked the effect of PTH, which did not change the VB in the connecting tubule cell, but mainly caused changes in the apical membrane voltage. The VT of distal convoluted tubule and the cortical collecting duct were not affected by PTH. Elimination of Na+ from the lumen abolished the PTH-induced VT responses in the connecting tubule. In the presence of 10 mumol/l amiloride, PTH caused an initial hyperpolarization but did not induce the late depolarization. The same was seen in the absence of luminal Ca2+. Either addition of 0.1 mmol/l ouabain to the bath or elimination of bath Na+ completely abolished the PTH-induced VT changes. The presence of 5 mmol/l Ba2+ in the lumen did not affect the response to PTH. These findings indicate that the initial hyperpolarization may be caused by an increase in Na+ influx across the luminal membrane through an amiloride-insensitive Na+ conductive pathway and that the late depolarization may be caused by the decrease in Na+ influx through the amiloride-sensitive Na+ conductive pathway. Luminal Ca2+ is necessary for the late depolarization caused by PTH.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过观察体外灌注兔连接小管的跨膜电压(VT)和基底外侧膜电压(VB),研究了甲状旁腺激素(PTH)对离子转运的影响。向浴槽中添加10 nmol/l的PTH可诱导VT出现双相反应,先是超极化,随后是去极化。氯苯硫代腺苷环3',5'-单磷酸模拟了PTH的作用,其不会改变连接小管细胞的VB,但主要引起顶端膜电压的变化。PTH对远曲小管和皮质集合管的VT没有影响。从管腔中去除Na+可消除PTH诱导的连接小管VT反应。在存在10 μmol/l氨氯吡咪的情况下,PTH引起初始超极化,但未诱导后期去极化。在无管腔Ca2+的情况下也观察到同样的现象。向浴槽中添加0.1 mmol/l哇巴因或去除浴槽中的Na+均可完全消除PTH诱导的VT变化。管腔中存在5 mmol/l Ba2+不影响对PTH的反应。这些发现表明,初始超极化可能是由通过氨氯吡咪不敏感的Na+传导途径使跨管腔膜的Na+内流增加所致,而后期去极化可能是由通过氨氯吡咪敏感的Na+传导途径的Na+内流减少所致。管腔Ca2+对于PTH引起的后期去极化是必需的。(摘要截短于250字)

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