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Characteristics of salt and water transport in superficial and juxtamedullary straight segments of proximal tubules.

机译:近端小管的浅表和近髓直段的盐和水传输特征。

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摘要

The purpose of the present studies was to characterize the nature of salt and water transport out of the superficial (SF) and juxtamedullary (JM) straight segments of rabbit proximal tubules as examined by in vitro microperfusion techniques. When the perfusate consisted of a solution simulating ultrafiltrate of plasma, there were no differences between SF and JM straight tubules in either net reabsorption of fluid (SF=0.47 nl/mm per min; JM=0.56 nl/mm per min) or in transtubular potential difference (PD) (SF=-2.1 mV; JM=-1.8 mV). Removal of glucose and alanine from the perfusate had no effect on the magnitude of the PD in either straight segment. Ouabain decreased both the net reabsorptive rates and the PD. Isosmolal replacement of NaCL by Na-cyclamate (a presumed impermeant anion) in the perfusate and the bath caused an increase in luminal negativity in both segments wheras similar substitution of NaCL by choline-CL (nontransported cation) changed the PD TO NEAR ZERO. These studies, therefore, suggest that sodium is transported out of the proximal straight tubules by an active noncoupled process that generates a PD (electrogenic process). When the perfusate consisted of a solution with a high chloride concentration (resulting from greater HCO3 than CI reabsorption in the proximal convoluted tubule), different PDs in SF and JM tubules were generated: SF=+1.6 plus or minus 0.2 mV; JM=-1.3 plus or minus 0.3 mV. This difference in PD was attributed to relative differences in Na and CI permeabilities in these two segments. Electrophysiological and isotopic estimates of the chloride to sodium permeability revealed that the SF tubule is about twice as permeant to chloride than to sodium whereas the JM tubules are approximately twice as permeant to sodium than to chloride. It is concluded that the mechanism of active sodium transport in the straight segment of proximal tubule differs from that of the convoluted segment and that both the SF and JM straight segments differ from each other with respect os sodium and chloride permeability.
机译:本研究的目的是表征通过体外微灌流技术检查的盐和水从兔子近端小管的表层(SF)和近髓腔(JM)笔直段流出的性质。当灌注液由模拟血浆超滤液的溶液组成时,SF和JM直小管在液体的净重吸收(SF = 0.47 nl / mm / min; JM = 0.56 nl / mm / min)或经肾小管中无差异电位差(PD)(SF = -2.1 mV; JM = -1.8 mV)。从灌注液中除去葡萄糖和丙氨酸对任一直线段中PD的大小均没有影响。瓦巴因降低了净吸收率和PD。灌注液和浴液中的甜蜜素(假定的非渗透性阴离子)的等渗摩尔替代NaCL导致两个片段的管腔负性增加,而类似地,胆碱-CL(非传输阳离子)替代NaCL将PD变为近零。因此,这些研究表明,钠是通过产生PD(电生成过程)的主动非偶联过程从近端直小管中转运出来的。当灌注液由高氯化物浓度的溶液组成时(由于HCO3高于近曲小管中的CI重吸收),在SF和JM小管中产生了不同的PD:SF = + 1.6 +/- 0.2 mV; JM = -1.3正负0.3 mV。 PD的差异归因于这两段中Na和CI渗透率的相对差异。氯化物对钠渗透性的电生理和同位素估计表明,SF小管对氯化物的渗透约为对钠的两倍,而JM小管对钠的渗透约为对氯化物的两倍。可以得出结论,近端小管直段中钠的主动转运机制与回旋段的钠转运不同,并且SF和JM直段的钠和氯渗透率也互不相同。

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