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蛙皮顶端膜的频率依赖性电容:介电弛豫过程。

Frequency-dependent capacitance of the apical membrane of frog skin: dielectric relaxation processes.

作者信息

Awayda M S, Van Driessche W, Helman S I

机构信息

Department of Molecular and Integrative Physiology, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801 USA.

出版信息

Biophys J. 1999 Jan;76(1 Pt 1):219-32. doi: 10.1016/S0006-3495(99)77191-2.

Abstract

Impedance analysis of the isolated epithelium of frog skin (northern Rana pipiens) was carried out in the frequency range between 0.1 Hz and 5.5 kHz while Na+ transport was abolished. Under these conditions, the impedance is determined almost completely by the dielectric properties of the apical membranes of the cells and the parallel shunt resistance. The modeling of the apical membrane impedance function required the inclusion of dielectric relaxation processes as originally described by. J. Chem. Phys. 9:341-351), where each process is characterized by a dielectric increment, relaxation frequency, and power law dependence. We found that the apical plasma membrane exhibited several populations of audio frequency dielectric relaxation processes centered at 30, 103, 2364, and 6604 Hz, with mean capacitive increments of 0.72, 1.00, 0.88, and 0.29 microF/cm2, respectively, that gave rise to dc capacitances of 1.95 +/- 0.06 microF/cm2 in 49 tissues. Capacitance was uncorrelated with large ranges of parallel shunt resistance and was not changed appreciably within minutes by K+ depolarization and hence a decrease in basolateral membrane resistance. A significant linear correlation existed between the dc capacitance and Na+ transport rates measured as short-circuit currents (Cadc = 0.028 Isc + 1.48; Isc between 4 and 35 microA/cm2) before inhibition of transport by amiloride and substitution of all Na+ with NMDG (N-methyl-D-glucamine) in the apical solution. The existence of dominant audio frequency capacitive relaxation processes complicates and precludes unequivocal interpretation of changes of capacitance in terms of membrane area alone when capacitance is measured at audio frequencies.

摘要

在蛙皮(北美豹蛙)离体上皮的钠转运被阻断的情况下,对其进行了0.1赫兹至5.5千赫兹频率范围内的阻抗分析。在这些条件下,阻抗几乎完全由细胞顶端膜的介电特性和平行并联电阻决定。顶端膜阻抗函数的建模需要纳入如《化学物理杂志》9:341 - 351中最初描述的介电弛豫过程,其中每个过程由介电增量、弛豫频率和幂律依赖性来表征。我们发现顶端质膜呈现出几个以30、103、2364和6604赫兹为中心的音频频率介电弛豫过程群体,平均电容增量分别为0.72、1.00、0.88和0.29微法/平方厘米,这在49个组织中产生了1.95±0.06微法/平方厘米的直流电容。电容与大范围的并联电阻无关,并且在几分钟内不会因钾离子去极化以及因此导致的基底外侧膜电阻降低而明显改变。在通过氨氯吡咪抑制转运并在顶端溶液中用N - 甲基 - D - 葡糖胺替代所有钠离子之前,以短路电流测量的直流电容与钠转运速率之间存在显著的线性相关性(Cadc = 0.028 Isc + 1.48;Isc在4至35微安/平方厘米之间)。当在音频频率下测量电容时,主要音频频率电容弛豫过程的存在使仅根据膜面积对电容变化进行明确解释变得复杂并排除了这种解释。

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