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激素对小鼠髓袢升支粗段钙和镁转运的刺激作用:细胞旁途径通透性改变的证据

Hormonal stimulation of Ca2+ and Mg2+ transport in the cortical thick ascending limb of Henle's loop of the mouse: evidence for a change in the paracellular pathway permeability.

作者信息

Wittner M, Mandon B, Roinel N, de Rouffignac C, Di Stefano A

机构信息

Département de Biologie Cellulaire et Moléculaire, CE Saclay, Gif sur Yvette, France.

出版信息

Pflugers Arch. 1993 Jun;423(5-6):387-96. doi: 10.1007/BF00374932.

Abstract

Recent studies from our laboratory have shown that in the cortical thick ascending limb of Henle's loop of the mouse (cTAL) Ca2+ and Mg2+ are reabsorbed passively, via the paracellular shunt pathway. In the present study, cellular mechanisms responsible for the hormone-stimulated Ca2+ and Mg2+ transport were investigated. Transepithelial voltages (PDte) and transepithelial ion net fluxes (JNa, JCl, JK, JCa, JMg) were measured in isolated perfused mouse cTAL segments. Whether parathyroid hormone (PTH) is able to stimulate Ca2+ and Mg2+ reabsorption when active NaCl reabsorption and thus PDte, is abolished by luminal furosemide was first tested. With symmetrical lumen and bath Ringer's solutions, no Ca2+ and Mg2+ net transport was detectable, either in the absence or in the presence of PTH. In the presence of luminal furosemide and a chemically imposed lumen-to-bath directed NaCl gradient, which generates a lumen-negative PDte, PTH slightly but significantly increased Ca2+ and Mg2+ net secretion. In the presence of luminal furosemide and a chemically imposed bath-to-lumen-directed NaCl gradient, which generates a lumen-positive PDte, PTH slightly but significantly increased Ca2+ and Mg2+ net reabsorption. In view of the observed small effect of PTH on passive Ca2+ and Mg2+ movement, a possible interference of furosemide with the hormonal response was considered. To investigate this possibility, Ca2+ and Mg2+ transport was first stimulated with PTH in tubules under control conditions. Then active NaCl reabsorption was abolished by furosemide and the effect of PTH on JCa and JMg measured. In the absence of PDte and under symmetrical conditions, no Ca2+ and Mg2+ transport was detectable, either in the presence or absence of PTH. In the presence of a bath-to-lumen-directed NaCl gradient, Ca2+ and Mg2+ reabsorption was significantly higher in the presence than in the absence of PTH. Finally, when active NaCl transport was not inhibited by furosemide, but reduced by a bath-to-lumen-directed NaCl gradient, PTH strongly increased JCa and JMg, whereas only a small increase in PDte was noted. In conclusion, these data suggest that PTH exerts a dual action on Ca2+ and Mg2+ transport in the mouse cTAL by increasing the transepithelial driving force for Ca2+ and Mg2+ reabsorption through hormone-mediated PDte alterations and by modifying the passive permeability for Ca2+ and Mg2+ of the epithelium, very probably at the level of the paracellular shunt pathway.

摘要

我们实验室最近的研究表明,在小鼠亨氏袢皮质厚升支(cTAL)中,Ca2+和Mg2+通过细胞旁分流途径被动重吸收。在本研究中,对激素刺激的Ca2+和Mg2+转运的细胞机制进行了研究。在分离灌注的小鼠cTAL节段中测量跨上皮电压(PDte)和跨上皮离子净通量(JNa、JCl、JK、JCa、JMg)。首先测试了当管腔呋塞米消除主动NaCl重吸收从而消除PDte时,甲状旁腺激素(PTH)是否能够刺激Ca2+和Mg2+重吸收。在管腔和浴液均为林格氏液的对称条件下,无论有无PTH,均未检测到Ca2+和Mg2+的净转运。在存在管腔呋塞米和化学施加的管腔到浴液方向的NaCl梯度(产生管腔负PDte)的情况下,PTH轻微但显著增加了Ca2+和Mg2+的净分泌。在存在管腔呋塞米和化学施加的浴液到管腔方向的NaCl梯度(产生管腔正PDte)的情况下,PTH轻微但显著增加了Ca2+和Mg2+的净重吸收。鉴于观察到PTH对Ca2+和Mg2+被动转运的影响较小,考虑了呋塞米对激素反应的可能干扰。为了研究这种可能性,首先在对照条件下用PTH刺激肾小管中的Ca2+和Mg2+转运。然后用呋塞米消除主动NaCl重吸收,并测量PTH对JCa和JMg的影响。在无PDte且对称的条件下,无论有无PTH,均未检测到Ca2+和Mg2+的转运。在存在浴液到管腔方向的NaCl梯度的情况下,存在PTH时Ca2+和Mg2+的重吸收显著高于无PTH时。最后,当主动NaCl转运未被呋塞米抑制但被浴液到管腔方向的NaCl梯度降低时,PTH强烈增加JCa和JMg,而仅观察到PDte有小幅增加。总之,这些数据表明,PTH通过增加激素介导的PDte改变对Ca2+和Mg2+重吸收的跨上皮驱动力,以及通过改变上皮细胞对Ca2+和Mg2+的被动通透性(很可能在细胞旁分流途径水平),对小鼠cTAL中的Ca2+和Mg2+转运发挥双重作用。

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