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青蛙皮肤顶端和基底外侧膜的电流-电压关系。

Current-voltage relations of the apical and basolateral membranes of the frog skin.

作者信息

Schoen H F, Erlij D

出版信息

J Gen Physiol. 1985 Aug;86(2):257-87. doi: 10.1085/jgp.86.2.257.

Abstract

We determined the current-voltage (I-V) relations of the apical and basolateral barriers of frog skins by impaling the cells with an intracellular microelectrode and assuming that the current across the cellular pathway was equal to the amiloride-inhibitable current. We found that: (a) The responses in transepithelial current and intracellular potential to square pulses of transepithelial potential (VT) varied markedly with time. (b) As a consequence of these transient responses, the basolateral I-V relation was markedly dependent on the time of sampling after the beginning of each pulse. The apical I-V plot was much less sensitive to the time of sampling within the pulse. (c) The I-V data for the apical barrier approximated the I-V relations calculated from the Goldman constant field equation over a relatively wide range of membrane potentials (+/- 100 mV). (d) A sudden reduction in apical bath [Na+] resulted in an increase in apical permeability and a shift in the apical barrier zero-current potential (Ea) toward less positive values. The shift in Ea was equivalent to a change of 45 mV for a 10-fold change in apical [Na+]. (e) The transient responses of the skin to square VT pulses were described by the sum of two exponentials with time constants of 114 and 1,563 ms, which are compatible with the time constants that would be produced by an RC circuit with capacitances of 65 and 1,718 microF. The larger capacitance is too large to identify it comfortably with a true dielectric membrane capacitance.

摘要

我们通过用细胞内微电极刺入细胞,并假设跨细胞途径的电流等于氨氯地平可抑制的电流,来确定蛙皮顶端和基底外侧屏障的电流-电压(I-V)关系。我们发现:(a)跨上皮电流和细胞内电位对跨上皮电位(VT)方波脉冲的响应随时间显著变化。(b)由于这些瞬态响应,基底外侧I-V关系明显取决于每个脉冲开始后采样的时间。顶端I-V图对脉冲内采样时间的敏感性要低得多。(c)在相对较宽的膜电位范围(±100 mV)内,顶端屏障的I-V数据近似于根据戈德曼恒定场方程计算出的I-V关系。(d)顶端浴液中[Na⁺]的突然降低导致顶端通透性增加,顶端屏障零电流电位(Ea)向较不正值的方向移动。对于顶端[Na⁺] 10倍的变化,Ea的移动相当于45 mV的变化。(e)皮肤对VT方波脉冲的瞬态响应由两个时间常数分别为114和1563 ms的指数之和描述,这与由电容分别为65和1718 μF的RC电路产生的时间常数相符。较大的电容太大,难以将其舒适地识别为真正的介电膜电容。

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