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用外部电场刺激人红细胞中哇巴因敏感的Rb⁺摄取。

Stimulation of a ouabain-sensitive Rb+ uptake in human erthrocytes with an external electric field.

作者信息

Serpersu E H, Tsong T Y

出版信息

J Membr Biol. 1983;74(3):191-201. doi: 10.1007/BF02332123.

Abstract

(Na, K)ATPase of the red blood cell (RBC) is known to be electrogenic. Activation of this pump hyperpolarizes the RBC membrane by several millivolts. By exposing erythrocytes in an isotonic suspension to an alternating electric field it is possible to modulate transmembrane potential (delta psi) of the RBC. We have found that this modulation stimulates uptake of Rb+, against a chemical concentration gradient, when the applied AC field exceeds 10 V/cm (or an induced delta psi of 6 mV). The voltage-stimulated Rb+ uptake is completely inhibited by ouabain. Thus, (Na, K)ATPase may be involved. The stimulated Rb+ uptake is unrelated to the thermal effect by several lines of evidence. First, this uptake is above levels in controlled samples maintained at an identical temperature. Second, this uptake shows an optimum voltage. The maximum stimulation obtained in our experiment (26 amol/RBC X hr) occurs at 20 V/cm, i.e., a delta psi of 12 mV. Above or below this field strength the uptake is reduced. Third, this uptake is AC frequency dependent. It peaks around 1 kHz and diminishes at 1 MHz. The effective range is between 0.1 kHz to 0.1 MHz. A thermal effect would not be frequency dependent. In contrast to the ATP-dependent pumping activity of the (Na, K)ATPase, no stimulated Na+ efflux is detectable with the AC field. Neither Rb+ efflux, nor Na+ influx is stimulated by the AC field. Rb+ uptake is also stimulated by the AC field in a RBC sample treated with vanadate. The meaning of these observations is discussed.

摘要

已知红细胞(RBC)的(钠,钾)ATP酶具有电生性。该泵的激活会使红细胞膜超极化几毫伏。通过将等渗悬浮液中的红细胞暴露于交变电场,可以调节红细胞的跨膜电位(δψ)。我们发现,当施加的交流电场超过10 V/cm(或诱导的δψ为6 mV)时,这种调节会刺激铷离子(Rb+)逆着化学浓度梯度的摄取。电压刺激的Rb+摄取被哇巴因完全抑制。因此,(钠,钾)ATP酶可能参与其中。几条证据表明,受刺激的Rb+摄取与热效应无关。首先,这种摄取高于保持在相同温度的对照样品中的水平。其次,这种摄取显示出最佳电压。我们实验中获得的最大刺激(26 amol/RBC×小时)发生在20 V/cm,即δψ为12 mV时。高于或低于此场强,摄取都会减少。第三,这种摄取与交流频率有关。它在1 kHz左右达到峰值,在1 MHz时降低。有效范围在0.1 kHz至0.1 MHz之间。热效应不会与频率有关。与(钠,钾)ATP酶的ATP依赖性泵浦活动相反,在交流电场下未检测到受刺激的钠离子(Na+)外流。交流电场既不刺激Rb+外流,也不刺激Na+内流。在用钒酸盐处理的红细胞样品中,交流电场也会刺激Rb+摄取。讨论了这些观察结果的意义。

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