Dolson G M
Baylor College of Medicine, Houston, Tex.
Miner Electrolyte Metab. 1992;18(6):392-6.
Potassium channels have been found in the apical and basolateral membranes of renal proximal straight tubules, but the fraction of apical membrane conductance due to or associated with potassium has not been reported. Therefore, the transepithelial conductance of rabbit pars recta was measured and the portion of conductance which was inhibited by barium determined. The mean control transepithelial voltage and conductance were -5.6 +/- 0.7 mV and 106 +/- 10 mS/cm2, respectively. The addition of barium to the luminal perfusing solution decreased transepithelial conductance to 93 +/- 9 mS/cm2. This decrease of 13 +/- 2% from control (p < 0.001, n = 20) cannot be explained solely by inhibition of an apical potassium conductance. It is proposed that the apical potassium channels found in the pars recta facilitate transepithelial conductive transport by sodium and other ions.
在肾近端直小管的顶端膜和基底外侧膜中发现了钾通道,但尚未有关于顶端膜钾离子介导或与之相关的电导部分的报道。因此,测量了兔直部的跨上皮电导,并确定了被钡抑制的电导部分。平均对照跨上皮电压和电导分别为-5.6±0.7 mV和106±10 mS/cm²。向管腔灌注溶液中添加钡可使跨上皮电导降低至93±9 mS/cm²。与对照相比,这种13±2%的降低(p<0.001,n = 20)不能仅通过抑制顶端钾电导来解释。有人提出,在直部发现的顶端钾通道通过促进钠和其他离子的跨上皮传导性转运来发挥作用。