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分离灌注大鼠集合管的碳酸氢盐转运

Bicarbonate transport by isolated perfused rat collecting ducts.

作者信息

Atkins J L, Burg M B

出版信息

Am J Physiol. 1985 Oct;249(4 Pt 2):F485-9. doi: 10.1152/ajprenal.1985.249.4.F485.

Abstract

Previously, bicarbonate transport was measured in isolated perfused rabbit cortical collecting ducts (CCD) and outer medullary collecting ducts (OMCD). Rabbit CCD either absorbed or secreted bicarbonate in vitro, depending on whether the animals were treated with NH4Cl or NaHCO3, but the OMCD absorbed bicarbonate regardless of the treatment. The general significance of these findings (particularly the bicarbonate secretion) was questioned because rabbits are herbivores that normally excrete alkaline urine. Therefore, we have now studied rats, an omnivorous species, that normally excrete acid urine. The overall pattern of bicarbonate transport in rats was similar to that previously found in rabbits. CCD from rats given NaHCO3 initially secreted bicarbonate, but those from rats given NH4Cl absorbed bicarbonate. Rat OMCD all absorbed bicarbonate, regardless of the treatment. The significant differences between the results with rats and rabbits were 1) a marked shift in bicarbonate transport in control and bicarbonate-loaded rat (but not rabbit) CCD with time of perfusion in vitro from secretion toward absorption; this implies an additional regulatory mechanism in rats; and 2) rat OMCDs absorbing bicarbonate more than three times faster than rabbit OMCD. These results provide additional evidence that conditioned changes in cortical collecting duct bicarbonate transport, now observed in two different species, play a significant role in the control of net acid excretion.

摘要

此前,在分离灌注的兔皮质集合管(CCD)和外髓集合管(OMCD)中测量了碳酸氢盐转运。兔CCD在体外要么吸收要么分泌碳酸氢盐,这取决于动物是否用氯化铵或碳酸氢钠处理,但无论处理方式如何,OMCD都吸收碳酸氢盐。这些发现(尤其是碳酸氢盐分泌)的普遍意义受到质疑,因为兔子是食草动物,通常排出碱性尿液。因此,我们现在研究了大鼠,这是一种杂食性物种,通常排出酸性尿液。大鼠碳酸氢盐转运的总体模式与先前在兔子中发现的相似。给予碳酸氢钠的大鼠的CCD最初分泌碳酸氢盐,但给予氯化铵的大鼠的CCD吸收碳酸氢盐。大鼠OMCD无论处理方式如何都吸收碳酸氢盐。大鼠和兔子结果之间的显著差异在于:1)在体外灌注时,对照和碳酸氢盐负荷的大鼠(而非兔子)CCD中碳酸氢盐转运随时间从分泌向吸收有明显转变;这意味着大鼠中存在额外的调节机制;2)大鼠OMCD吸收碳酸氢盐的速度比兔子OMCD快三倍以上。这些结果提供了额外的证据,表明现在在两个不同物种中观察到的皮质集合管碳酸氢盐转运的适应性变化在净酸排泄的控制中起重要作用。

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