Abramcheck F J, Van Driessche W, Helman S I
J Gen Physiol. 1985 Apr;85(4):555-82. doi: 10.1085/jgp.85.4.555.
Noise analysis of the Na+ channels of the apical membranes of frog skin bathed symmetrically in a Cl-HCO3 Ringer solution was done with amiloride and CGS 4270. Tissues were studied in their control states and after inhibition of transepithelial Na+ transport (Isc) by addition of quinine or quinidine to the apical solution. A critical examination of the amiloride-induced noise indicated that the single channel Na+ currents (iNa) were decreased by quinine and quinidine, probably because of depolarization of apical membrane voltage. Despite considerable statistical uncertainty in the methods of estimation of the Na+ channel density with amiloride-induced noise (NA, see text), the striking observation was a large increase of NA with amiloride inhibition of the rate of Na+ entry into the cells. NA was increased to 406% of control, whereas Isc was inhibited to 8.6% of control by 6 microM amiloride. Studies were done also with the Na+ channel blocker CGS 4270. Noise analysis with this compound was advantageous, permitting iCGSNa and NCGS to be measured in individual tissues with a relatively small inhibition of Isc. As with amiloride, inhibition of Isc with CGS 4270 caused large increases of the Na+ channel density (approximately 200% at approximately 35% inhibition of the Isc). Quinine and quinidine caused an approximately 50% increase of Na+ channel density while inhibiting iNa by approximately 60-70%. As inhibition of Na+ entry leads to an increase of Na+ channel density, a mechanism of autoregulation appears to be a major factor in adjusting the apical membrane Na+ permeability of the cells.
在对称浸泡于Cl-HCO₃林格溶液中的青蛙皮肤顶膜Na⁺通道的噪声分析实验中,使用了氨氯吡脒和CGS 4270。研究了组织的对照状态以及在向顶膜溶液中添加奎宁或奎尼丁抑制跨上皮Na⁺转运(Isc)之后的状态。对氨氯吡脒诱导的噪声进行的严格检查表明,单通道Na⁺电流(iNa)因奎宁和奎尼丁而降低,这可能是由于顶膜电压的去极化所致。尽管使用氨氯吡脒诱导的噪声来估计Na⁺通道密度(NA,见正文)的方法存在相当大的统计不确定性,但引人注目的观察结果是,随着氨氯吡脒抑制Na⁺进入细胞的速率,NA大幅增加。NA增加到对照的406%,而6 microM氨氯吡脒将Isc抑制到对照的8.6%。还使用Na⁺通道阻滞剂CGS 4270进行了研究。用这种化合物进行噪声分析具有优势,能够在对Isc抑制相对较小的情况下,在单个组织中测量iCGSNa和NCGS。与氨氯吡脒一样,用CGS 4270抑制Isc会导致Na⁺通道密度大幅增加(在Isc约35%的抑制率下约为200%)。奎宁和奎尼丁在抑制iNa约60 - 70%的同时,使Na⁺通道密度增加了约50%。由于抑制Na⁺进入会导致Na⁺通道密度增加,自动调节机制似乎是调节细胞顶膜Na⁺通透性的一个主要因素。