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管腔钾离子的存在是兔肾髓袢升支粗段主动转运氯化钠的一个前提条件。

Presence of luminal K+, a prerequisite for active NaCl transport in the cortical thick ascending limb of Henle's loop of rabbit kidney.

作者信息

Greger R, Schlatter E

出版信息

Pflugers Arch. 1981 Nov;392(1):92-4. doi: 10.1007/BF00584588.

Abstract

Previous data from our laboratory have shown that active transport in the cortical thick ascending limb of Henle's loop (cTAL), as measured by the short circuit current (Lsc, microA X cm-2), requires the presence of Na+ and Cl-. The data were compatible with the model of secondarily active Cl- reabsorption involving the cotransport of Na+ and Cl- across the luminal membrane. The data suggested, furthermore, that 1 Na+ and 2 Cl- interact with the luminal carrier. In the present study it was tested whether this reabsorptive mechanism also requires the presence of luminal K+. Isolated cTAL segments (n = 40) were perfused at high flow rates with a modified Ringer's solution. Removal of K+ from the lumen reduced Isc significantly from 215 to 133 microA X cm-2. Addition of Ba2+ (10(-3) mol X 1(-1)) which blocks the K+ conductance of the luminal, membrane, to the K+-containing lumen perfusate decreased Isc significantly from 234 to 141 microA X cm-2. Combination of both manoeuvres: perfusion with a K+-free and Ba2+-containing solution almost abolished Isc from a control of 237 to 56 microA X cm-2. The results are compatible with the view that in rabbit cTAL the luminal carrier interacts with all 3 ions, possibly 1 Na+, 2 Cl-, and 1 K+. K+ recycles across the luminal membrane through its conductive pathway.

摘要

我们实验室之前的数据表明,通过短路电流(Lsc,微安×平方厘米-2)测量,亨氏袢皮质厚升支(cTAL)中的主动转运需要Na+和Cl-的存在。这些数据与涉及Na+和Cl-通过管腔膜协同转运的继发性主动Cl-重吸收模型相符。此外,数据表明1个Na+和2个Cl-与管腔载体相互作用。在本研究中,测试了这种重吸收机制是否也需要管腔K+的存在。以高流速用改良林格氏溶液灌注分离的cTAL节段(n = 40)。从管腔中去除K+可使Isc从215微安×平方厘米-2显著降低至133微安×平方厘米-2。向含K+的管腔灌注液中添加Ba2+(10(-3)摩尔×升-1),其可阻断管腔膜的K+电导,使Isc从234微安×平方厘米-2显著降低至141微安×平方厘米-2。两种操作相结合:用不含K+和含Ba2+的溶液灌注几乎使Isc从对照值237微安×平方厘米-2降至56微安×平方厘米-2。这些结果与以下观点相符,即在兔cTAL中,管腔载体与所有3种离子相互作用,可能是1个Na+、2个Cl-和1个K+。K+通过其传导途径跨管腔膜循环。

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