Teulon J, Anagnostopoulos T
Pflugers Arch. 1982 Nov 1;395(2):138-44. doi: 10.1007/BF00584727.
The transepithelial potential difference (VTE) and transepithelial resistance (RTE) were determined along the length of the distal tubule of the amphibian Triturus alpestris. The site of impalements was determined at the end of each experiment by latex injection and microdissection. Two segments, differing by their distribution at the surface of the kidney, by their respective diameters and by their electrical properties could be identified: the early distal tubule (EDT) and the late distal tubule (LDT). VTE was invariably positive in the EDT; it increased from approximately + 5 mV to approximately + 22 mV within the first 30% of this segment and remained roughly constant distally to this site. RTE was estimated at 57 omega X cm2 in the EDT. The LDT exhibited essentially negative VTE figures with the exception of its very initial portion; the peak negativity at the end of the LDT was -35 mV. RTE was assessed from 8 measurements performed in the first 30% of the LDT; the tentative transepithelial resistance was 530 omega X cm2. Provisional evidence suggests that the transepithelial resistance of the terminal portion of the LDT may be substantially larger than the resistance measured in other parts of this segment.
测定了高山蝾螈远端小管全长的跨上皮电位差(VTE)和跨上皮电阻(RTE)。每次实验结束时,通过乳胶注射和显微解剖确定刺入部位。可以识别出两个节段,它们在肾脏表面的分布、各自的直径和电特性有所不同:早期远端小管(EDT)和晚期远端小管(LDT)。EDT中的VTE始终为正;在该节段的前30%内,它从约+5 mV增加到约+22 mV,并在该部位远端大致保持恒定。EDT中的RTE估计为57Ω×cm²。LDT除最开始部分外,VTE基本为负;LDT末端的最大负值为-35 mV。在LDT的前30%进行了8次测量以评估RTE;初步的跨上皮电阻为530Ω×cm²。初步证据表明,LDT末端部分的跨上皮电阻可能远大于在该节段其他部位测得的电阻。