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髓袢灌注中锂的重吸收:灌注速率和布美他尼的影响。

Lithium reabsorption in perfused loops of Henle: effects of perfusion rate and bumetanide.

作者信息

Unwin R J, Walter S J, Shirley D G

机构信息

Department of Nephrology, University College London Medical School, United Kingdom.

出版信息

Am J Physiol. 1994 May;266(5 Pt 2):F806-12. doi: 10.1152/ajprenal.1994.266.5.F806.

Abstract

The contribution of the loop segments to lithium reabsorption in sodium-replete, anesthetized Sprague-Dawley rats was examined by perfusing superficial loops of Henle between late proximal convolutions and early distal tubules. Preliminary experiments in which lithium was initially present only inside or outside the perfused loop confirmed substantial permeability of one or more of the loop segments to lithium. In subsequent experiments, in which lithium was infused intravenously and included in the perfusate so that the perfusate-to-plasma lithium concentration ratio was close to that found in late proximal tubules during lithium clearance studies, lithium reabsorption was inversely related to the perfusion rate: values for fractional lithium reabsorption (FRLi) at perfusion rates of 10, 20, and 30 nl/min were 58 +/- 3, 17 +/- 2, and 2 +/- 2%, respectively. Bumetanide (10(-6) M) markedly inhibited FRLi but also reduced water reabsorption, suggesting an effect on the pars recta at this dose; 10(-7) M bumetanide, which was without effect on water reabsorption, had only a small effect on FRLi at a perfusion rate of 10 nl/min but reduced FRLi by approximately 70% at 20 nl/min. We argue that the remarkable flow dependency of lithium reabsorption, together with its bumetanide sensitivity, provides evidence for significant voltage-driven lithium reabsorption in the thick ascending limb of Henle.

摘要

通过灌注位于近端曲部晚期和远端小管早期之间的髓袢浅表节段,研究了在钠充足的麻醉Sprague-Dawley大鼠中髓袢节段对锂重吸收的贡献。初步实验中,锂最初仅存在于灌注节段的内部或外部,证实了一个或多个髓袢节段对锂具有显著的通透性。在随后的实验中,静脉输注锂并将其包含在灌注液中,以使灌注液与血浆锂浓度比接近锂清除率研究中近端小管晚期的比值,锂重吸收与灌注速率呈负相关:灌注速率为10、20和30 nl/min时,锂的分数重吸收(FRLi)值分别为58±3%、17±2%和2±2%。布美他尼(10⁻⁶ M)显著抑制FRLi,但也减少了水重吸收,表明该剂量对直部有作用;10⁻⁷ M布美他尼对水重吸收无影响,在灌注速率为10 nl/min时对FRLi只有轻微影响,但在20 nl/min时使FRLi降低约70%。我们认为,锂重吸收显著的流量依赖性及其对布美他尼的敏感性,为亨氏袢厚升支中存在显著的电压驱动锂重吸收提供了证据。

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