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钠和尿素在肥胖沙鼠肾脏浓缩机制中的作用。

Role of sodium and urea in the renal concentrating mechanism in Psammomys obesus.

作者信息

Imbert M, de Rouffignac C

出版信息

Pflugers Arch. 1976 Jan 30;361(2):107-14. doi: 10.1007/BF00583453.

Abstract

Micropunctures were performed at the tip of Henle's loops and vasa recta accessible at the extrarenal surface of the papilla in a desert rodent (Psammomys obesus) studied under mild NaCl ((NaCl 4%, 0.0375 ml/min) and mild urea (urea 4%, 0.0375 ml/min) loading conditions. In Nacl loaded animals, it was confirmed that solute addition (mainly sodium) contributes in a large proportion to the concentrating process along the thin descending limb. Comparison of sodium and urea concentrations in the loops with those in vasa recta at the same level of the papilla demonstrated that 1. the transepithelial sodium gradient was compatible with a diffusion transport of this ion from the interstitium to the thin descending limb; 2. the sodium concentration higher in interstitium than in the loop fluid was not compatible with the existence of a purely passive concentrating process in inner medulla as was recently proposed [8], 3. the transepithelial urea gradient was very limited which indicates that this solute does not play an important part in the concentrating process. In urea loaded psammomys, solute addition (mainly urea) to the thin descending limb fluid was still present but water abstraction was enhanced as compared to salt loaded animals, probably on account to the higher interstitial urea concentration. It is, thus, brought to evidence that the relative contribution of water abstraction and solute addition to the concentrating process along the thin descending limb can vary in a given species as a function of the physiological state.

摘要

在轻度氯化钠(氯化钠4%,0.0375毫升/分钟)和轻度尿素(尿素4%,0.0375毫升/分钟)负荷条件下,对一只沙漠啮齿动物(肥胖沙鼠)进行研究,在肾乳头肾外表面可触及的髓袢升支粗段和直小血管尖端进行微穿刺。在氯化钠负荷的动物中,证实溶质添加(主要是钠)在沿细降支的浓缩过程中占很大比例。比较乳头同一水平的髓袢升支粗段和直小血管中的钠和尿素浓度表明:1. 跨上皮钠梯度与该离子从间质向细降支的扩散转运相一致;2. 间质中钠浓度高于髓袢升支粗段中的钠浓度与最近提出的内髓质中存在纯粹被动浓缩过程不相符[8];3. 跨上皮尿素梯度非常有限,这表明该溶质在浓缩过程中不起重要作用。在尿素负荷的肥胖沙鼠中,细降支液中仍有溶质添加(主要是尿素),但与盐负荷的动物相比,水的重吸收增强,这可能是由于间质尿素浓度较高。因此,有证据表明,在给定物种中,沿细降支的水重吸收和溶质添加对浓缩过程的相对贡献可随生理状态而变化。

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