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家兔皮质集合管体外流量依赖性钾分泌

Flow-dependent potassium secretion by rabbit cortical collecting tubule in vitro.

作者信息

Engbretson B G, Stoner L C

机构信息

Department of Physiology, State University of New York Health Science Center, Syracuse 13210.

出版信息

Am J Physiol. 1987 Nov;253(5 Pt 2):F896-903. doi: 10.1152/ajprenal.1987.253.5.F896.

Abstract

Cortical collecting tubules (CCT) dissected from rabbits fed a diet designed to stimulate potassium transport secreted potassium in direct proportion to the flow rate in the range of 0.4-3 nl/min (r = 0.79). This relationship was also evident in tubules from rabbits maintained on standard laboratory chow (r = 0.80). The slope of the line relating the two parameters was almost six times greater in tubules from animals fed the special diet. When the range of flow rates was expanded, potassium secretion in nine CCTs appeared to peak at 5-6 nl/min and then failed to increase despite further elevation of flow to nearly 15 nl/min. We investigated the effects of the electrical and chemical gradients on flow-dependent potassium secretion. Because transepithelial voltage was unaffected by changes in axial flow, we conclude that the flow-dependent fraction of potassium secretion is not explained by the electrical gradient. To evaluate the role of luminal potassium concentration on flow-dependent potassium secretion, 11 CCTs were perfused with both 5 and 50 mM potassium solutions at two flow rates (approximately 1.5 and 4.0 nl/min). Increases in both potassium secretion (15.6 +/- 3.9 peq.mm-1.min-1) and sodium reabsorption (11.9 +/- 5.2 peq.mm-1.min-1) were evident in the tubules perfused with 5 mM potassium. Potassium secretion was not reduced by 50 mM luminal potassium at the low flow rate when the largest chemical gradients opposing net secretion were generated. When 50 mM potassium was present in the lumen, increasing flow did not stimulate potassium secretion.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

从喂食旨在刺激钾转运饮食的兔子身上分离出的皮质集合小管(CCT),在0.4 - 3 nl/min范围内,其钾分泌量与流速成正比(r = 0.79)。这种关系在以标准实验室饲料喂养的兔子的小管中也很明显(r = 0.80)。喂食特殊饮食的动物的小管中,这两个参数之间关系的直线斜率几乎大六倍。当流速范围扩大时,九条CCT中的钾分泌似乎在5 - 6 nl/min时达到峰值,然后尽管流速进一步升高至近15 nl/min,钾分泌却不再增加。我们研究了电和化学梯度对流速依赖性钾分泌的影响。由于跨上皮电压不受轴向流速变化的影响,我们得出结论,钾分泌的流速依赖性部分不能用电梯度来解释。为了评估管腔钾浓度对流速依赖性钾分泌的作用,在两种流速(约1.5和4.0 nl/min)下,用5 mM和50 mM钾溶液灌注11条CCT。在灌注5 mM钾的小管中,钾分泌(15.6 +/- 3.9 peq.mm-1.min-1)和钠重吸收(11.9 +/- 5.2 peq.mm-1.min-1)均明显增加。当产生最大的与净分泌相反的化学梯度时,低流速下50 mM管腔钾并未降低钾分泌。当管腔中存在50 mM钾时,增加流速并未刺激钾分泌。(摘要截取自250字)

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