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生理温度和室温下犬浦肯野纤维中的钠钾泵、静息电位和选择性通透性

The Na/K pump, resting potential and selective permeability in canine Purkinje fibres at physiologic and room temperatures.

作者信息

Lee J H

机构信息

Department of Physiology and Biophysics, SUNY, Stony Brook 11794-8661, USA.

出版信息

Experientia. 1996 Jul 15;52(7):657-60. doi: 10.1007/BF01925568.

Abstract

All mammalian cells maintain a resting potential generated by ions moving down concentration gradients. In excitable cells, the inside potential is negative relative to outside. In order to maintain this electrochemical gradient, the sodium potassium (Na/K) pump actively transports out three sodium ions for every two potassium ions it brings in. This process generates a net outward current and thus hyperpolarizes the resting potential. I employed dihydroouabain (DHO) to inhibit the Na/K pump and thus measure its contribution to the resting potential. It contributed 9.0 mV at 34 degrees C and 3.8 mV at 25 degrees C. The PK/PNa ratios were calculated at both temperatures before and after subtracting the Na/K pump contribution. These ratios also suggested a decreased contribution of the Na/K pump under hypothermia. Taken together, these results suggest that the pump contribution to the resting potential is more significant at physiologic temperatures (34 degrees C) than at room temperature (25 degrees C), and that estimates of selective permeability can only be accurately obtained after assessing and eliminating the Na/K pump contribution to the resting potential.

摘要

所有哺乳动物细胞都维持着由离子顺着浓度梯度移动所产生的静息电位。在可兴奋细胞中,细胞内电位相对于细胞外为负。为了维持这种电化学梯度,钠钾(Na/K)泵每泵入两个钾离子就会主动泵出三个钠离子。这个过程产生净外向电流,从而使静息电位超极化。我使用二氢哇巴因(DHO)抑制Na/K泵,从而测量其对静息电位的贡献。在34℃时其贡献为9.0mV,在25℃时为3.8mV。在减去Na/K泵的贡献前后,分别在这两个温度下计算PK/PNa比率。这些比率也表明在低温下Na/K泵的贡献减少。综上所述,这些结果表明,该泵对静息电位的贡献在生理温度(34℃)下比在室温(25℃)下更为显著,并且只有在评估并消除Na/K泵对静息电位的贡献之后,才能准确获得选择性通透性的估计值。

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