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血细胞比容对禁水和血容量增加犬的肾血流动力学及钠排泄的影响。

Effects of hematocrit on renal hemodynamics and sodium excretion in hydropenic and volume-expanded dogs.

作者信息

Schrier R W, Earley L E

出版信息

J Clin Invest. 1970 Sep;49(9):1656-67. doi: 10.1172/JCI106383.

Abstract

The effects of hematocrit on renal hemodynamics and sodium excretion were studied in anesthetized dogs during both hydropenia and volume expansion. The hematocrit was decreased by isovolemic exchange with the animal's own previously harvested plasma and increased by isovolemic exchange with fresh, washed red blood cells. Renal perfusion pressure was maintained constant throughout the experiments by the adjustment of a suprarenal aortic clamp. During hydropenia, a decrease in hematocrit was associated with an increase in sodium and potassium excretion and solutefree water reabsorption. These changes were accompained by an increase in renal plasma flow and renal blood flow and a decrease in renal vascular resistance. Glomerular filtration rate was unchanged and filtration fraction was significantly decreased as hematocrit was lowered. Increasing hematocrit during hydropenia had the opposite effects on electrolyte excretion, solute-free water reabsorption, and renal hemodynamics. In another group of animals, hematocrit was lowered during volume expansion with either saline or plasma, then returned to the control level by isovolemic exchange with washed red blood cells. This increase in hematocrit during volume expansion had a similar effect on electrolyte excretion, solute-free water reabsorption, and renal hemodynamics as during hydropenia. These results therefore suggest that acute changes in hematocrit may significantly affect sodium excretion and renal hemodynamics during both hydropenia and volume expansion. The changes in solute-free water reabsorption and potassium excretion suggest that the alterations in hematocrit may affect primarily the reabsorption of sodium in the proximal tubule. The concommitant effects of hematocrit on renal vascular resistance and filtration fraction may mediate this change in sodium reabsorption by altering hydrostatic and oncotic pressures in the peritubular circulation.

摘要

在麻醉犬处于缺水和血容量扩张状态时,研究了血细胞比容对肾血流动力学和钠排泄的影响。通过与动物自身先前采集的血浆进行等容交换来降低血细胞比容,通过与新鲜洗涤的红细胞进行等容交换来升高血细胞比容。在整个实验过程中,通过调节肾上腺上主动脉夹来维持肾灌注压恒定。在缺水状态下,血细胞比容降低与钠、钾排泄增加以及无溶质水重吸收增加相关。这些变化伴随着肾血浆流量和肾血流量增加以及肾血管阻力降低。肾小球滤过率未改变,随着血细胞比容降低,滤过分数显著降低。在缺水状态下增加血细胞比容对电解质排泄、无溶质水重吸收和肾血流动力学产生相反的影响。在另一组动物中,在生理盐水或血浆扩容期间降低血细胞比容,然后通过与洗涤的红细胞进行等容交换使其恢复到对照水平。这种在扩容期间血细胞比容的增加对电解质排泄、无溶质水重吸收和肾血流动力学的影响与缺水时相似。因此,这些结果表明,血细胞比容的急性变化在缺水和血容量扩张期间可能显著影响钠排泄和肾血流动力学。无溶质水重吸收和钾排泄的变化表明,血细胞比容的改变可能主要影响近端小管中钠的重吸收。血细胞比容对肾血管阻力和滤过分数的伴随影响可能通过改变肾小管周围循环中的静水压和胶体渗透压来介导钠重吸收的这种变化。

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本文引用的文献

1
The effects of changes in haematocrit on renal function.血细胞比容变化对肾功能的影响。
J Physiol. 1967 Dec;193(3):513-22. doi: 10.1113/jphysiol.1967.sp008375.
6
The blood grouping systems of dogs.犬类的血型系统。
Physiol Rev. 1961 Jul;41:495-520. doi: 10.1152/physrev.1961.41.3.495.
7
The problem of the volume component of body fluid homeostasis.体液平衡中容量成分的问题。
Am J Med Sci. 1956 Jul;232(1):93-104. doi: 10.1097/00000441-195607000-00014.

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