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渗透性利尿期间的肾血流量、早期远端钠及血浆肾素浓度。

Renal blood flow, early distal sodium, and plasma renin concentrations during osmotic diuresis.

作者信息

Leyssac P P, Holstein-Rathlou N H, Skøtt O

机构信息

Department of Medical Physiology, The Panum Institute, University of Copenhagen, DK-2200 Copenhagen, Denmark.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2000 Oct;279(4):R1268-76. doi: 10.1152/ajpregu.2000.279.4.R1268.

Abstract

Inconsistencies in previous reports regarding changes in early distal NaCl concentration (ED(NaCl)) and renin secretion during osmotic diuresis motivated our reinvestigation. After intravenous infusion of 10% mannitol, ED(NaCl) fell from 42.6 to 34.2 mM. Proximal tubular pressure increased by 12.6 mmHg. Urine flow increased 10-fold, and sodium excretion increased by 177%. Plasma renin concentration (PRC) increased by 58%. Renal blood flow and glomerular filtration rate decreased, however end-proximal flow remained unchanged. After a similar volume of hypotonic glucose (152 mM), ED(NaCl) increased by 3.6 mM, (P < 0.01) without changes in renal hemodynamics, urine flow, sodium excretion rate, or PRC. Infusion of 300 micromol NaCl in a smaller volume caused ED(NaCl) to increase by 6.4 mM without significant changes in PRC. Urine flow and sodium excretion increased significantly. There was a significant inverse relationship between superficial nephron ED(NaCl) and PRC. We conclude that ED(Na) decreases during osmotic diuresis, suggesting that the increase in PRC was mediated by the macula densa. The results suggest that the natriuresis during osmotic diuresis is a result of impaired sodium reabsorption in distal tubules and collecting ducts.

摘要

先前关于渗透性利尿期间早期远端氯化钠浓度(ED(NaCl))变化和肾素分泌的报道存在不一致,这促使我们重新进行研究。静脉输注10%甘露醇后,ED(NaCl)从42.6 mM降至34.2 mM。近端肾小管压力升高12.6 mmHg。尿流量增加10倍,钠排泄增加177%。血浆肾素浓度(PRC)增加58%。肾血流量和肾小球滤过率降低,然而近端末段流量保持不变。输注相似体积的低渗葡萄糖(152 mM)后,ED(NaCl)升高3.6 mM,(P < 0.01),而肾血流动力学、尿流量、钠排泄率或PRC均无变化。输注较小体积的300 μmol NaCl导致ED(NaCl)升高6.4 mM,PRC无显著变化。尿流量和钠排泄显著增加。浅表肾单位ED(NaCl)与PRC之间存在显著的负相关关系。我们得出结论,渗透性利尿期间ED(Na)降低,提示PRC升高是由致密斑介导的。结果表明,渗透性利尿期间的利钠作用是远端小管和集合管钠重吸收受损的结果。

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