Beyenbach K W, Frömter E
Am J Physiol. 1985 Feb;248(2 Pt 2):F282-95. doi: 10.1152/ajprenal.1985.248.2.F282.
The electrophysiology of shark proximal tubules (Squalus acanthias) was investigated using conventional microelectrodes and cable analysis. Under in vitro perfusion with symmetrical Ringer solutions, tubule transepithelial resistance was 36.3 +/- 2.3 omega X cm2 (means +/- SE, n = 44). Other electrophysiological variables varied widely under control conditions. In unstimulated tubules (n = 16) the transepithelial voltage (VT,o) was lumen positive (1.2 +/- 0.2 mV), the basolateral membrane potential (Vbl,x) was -61.3 +/- 1.6 mV, and the fractional resistance of the apical membrane (fRa) was 0.67 +/- 0.02. Spontaneously stimulated tubules (n = 28) had lumen-negative VT,o values (-1.5 +/- 0.4 mV), low Vbl,x values (-41.3 +/- 1.7 mV), and low fRa values (0.30 +/- 0.02). The stimulated state can be induced in unstimulated tubules via treatment with cAMP. Multiple microelectrode impalements in a single tubule revealed epithelial cells sharing similar electrophysiological properties. Selective ion substitutions in the tubule lumen and peritubular bath uncovered an increased Cl conductance in the apical membrane of spontaneously and cAMP-stimulated tubules. Anthracene-9-carboxylic acid tended to reverse the stimulated state, and furosemide hyperpolarized Vbl,x. These results constitute the first evidence for secretory Cl transport in a renal proximal tubule. The electrophysiological responses to ion substitutions, stimulators, and inhibitors are strikingly similar to those of known Cl-transporting epithelia.
利用传统微电极和电缆分析法对鲨鱼近端小管(棘鲛)的电生理学进行了研究。在体外灌注对称林格液的情况下,小管跨上皮电阻为36.3±2.3Ω×cm²(平均值±标准误,n = 44)。在对照条件下,其他电生理变量变化很大。在未受刺激的小管(n = 16)中,跨上皮电压(VT,o)为管腔正电位(1.2±0.2 mV),基底外侧膜电位(Vbl,x)为 -61.3±1.6 mV,顶端膜的分数电阻(fRa)为0.67±0.02。自发刺激的小管(n = 28)具有管腔负的VT,o值(-1.5±0.4 mV)、低的Vbl,x值(-41.3±1.7 mV)和低的fRa值(0.30±0.02)。未受刺激的小管可通过用cAMP处理诱导进入刺激状态。在单个小管中进行多次微电极穿刺显示上皮细胞具有相似的电生理特性。在小管腔和肾小管周围浴液中进行选择性离子置换发现,自发和cAMP刺激的小管顶端膜中的Cl电导增加。蒽-9-羧酸倾向于逆转刺激状态,呋塞米使Vbl,x超极化。这些结果构成了肾近端小管中分泌性Cl转运的首个证据。对离子置换、刺激剂和抑制剂的电生理反应与已知的Cl转运上皮细胞的反应惊人地相似。