Anagnostopoulos T, Teulon J, Edelman A
J Gen Physiol. 1980 May;75(5):553-87. doi: 10.1085/jgp.75.5.553.
The electrical properties of the proximal tubule of the in vivo Necturus kidney were investigated by injecting current (as rectangular waves) into the lumen or into the epithelium of single tubules and by studying the resulting changes of transepithelial (VL) and/or cell membrane potential (VC) at various distances from the source. In some experiments paired measurements of VL and VC were performed at two abscissas x and x'. The luminal length constant of about 1,030 micrometer was shown to provide a good estimate of the transepithelial resistance, specific resistance (RTE = 420 omega.cm2) and/or per unit length (rTE = 1.3 x 10(4) omega.cm). The apparent intraepithelial length constant was subject to distortions arising from concomitant current spread in the lumen. The resistances of luminal membrane (rL), basolateral membrane (rB), and shunt pathway (rS) were estimated by two independent methods at 3.5 x 10(4), 1.2 x 10(4), and 1.7 x 10(4) omega.cm, respectively. The corresponding specific resistances were close to 1,200, 600, and 600 omega.cm2. There are two main conclusions of this study. (a) The resistances of cell membranes and shunt pathway are of the same order of magnitude. The figure of the shunt resistance is at variance with the notion that the proximal tubule of Necturus is a leaky epithelium. (b) A rigorous assessment of the conductive properties of concentric cylindrical double cables (such as renal tubules) requires that electrical interactions arising from one cable to another be taken into account. Appropriate equations were developed to deal with this problem.
通过向活体泥螈肾脏的单个肾小管管腔或上皮中注入电流(矩形波),并研究在距电流源不同距离处跨上皮电位(VL)和/或细胞膜电位(VC)的变化,对近端肾小管的电特性进行了研究。在一些实验中,在两个横坐标x和x'处对VL和VC进行了配对测量。结果表明,约1030微米的管腔长度常数能很好地估算跨上皮电阻、比电阻(RTE = 420Ω·cm²)和/或单位长度电阻(rTE = 1.3×10⁴Ω·cm)。表观上皮内长度常数会因管腔内伴随电流扩散而产生失真。通过两种独立方法分别估算出管腔膜电阻(rL)、基底外侧膜电阻(rB)和旁路电阻(rS)分别为3.5×10⁴、1.2×10⁴和1.7×10⁴Ω·cm。相应的比电阻接近1200、600和600Ω·cm²。本研究有两个主要结论。(a)细胞膜电阻和旁路电阻处于同一数量级。旁路电阻的数值与泥螈近端肾小管是渗漏上皮的观点不一致。(b)对同心圆柱形双电缆(如肾小管)的导电特性进行严格评估时,需要考虑一根电缆与另一根电缆之间产生的电相互作用。为此开发了合适的方程来处理这个问题。