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液体离子交换剂微电极的物理化学性质及其在生物流体中的应用。

Physicochemical properties of a liquid ion exchanger microelectrode and its application to biological fluids.

作者信息

Fujimoto M, Kubota T

出版信息

Jpn J Physiol. 1976;26(6):631-50. doi: 10.2170/jjphysiol.26.631.

Abstract

Double-barreled potassium or chloride ion-selective microelectrodes were constructed using a liquid ion exchanger. Technical details of the fabrication of double-barreled microelectrodes, having a PD sensor as one barrel and an ionic sensor as the other, are described. The sensitivity of K+ or CI- ion-selective microelectrodes exhibited an approximately Nernstian response over a temperature range of 7 degrees-37 degrees C, and the electromotive force (EMF) was stable within +/- mV for a few hours. The rise time was less than 1 sec. The effect of pH on the electrode response was negligible over a physiological range of pH 5.6 to 7.8. The selectivity constants of the K+ microelectrode to other cations were 0.011 for Na+, 0.200 for NH+4, and less than 0.002 and 0.001 for Ca++ and Mg++, respectively, while that of the CI- microelectrode was 0.067 for HCO-3. Glucose or urea has no effect on the EMF. Protein has a significant effect on ion exchanger membrane only when the concentration of the tested ion is low and protein is high. On the basis of this background the determination of K+ and CI- activity was carried out both in vivo and in vitro on several biological samples, such as serum, tissue and cellular fluids, and other protein-containing fluids. The values obtained with the microelectrode were consistent with those obtained with the other conventional methods or with the current theory on electrolyte solutions. These results were taken to assure the practical application of these electrodes to biological studies in many fields.

摘要

使用液体离子交换剂构建了双管钾或氯离子选择性微电极。描述了双管微电极制造的技术细节,其中一个管为PD传感器,另一个管为离子传感器。钾离子或氯离子选择性微电极在7摄氏度至37摄氏度的温度范围内表现出近似能斯特响应,电动势(EMF)在几小时内稳定在±mV范围内。上升时间小于1秒。在pH值为5.6至7.8的生理范围内,pH对电极响应的影响可忽略不计。钾离子微电极对其他阳离子的选择性常数分别为:钠离子为0.011,铵根离子为0.200,钙离子和镁离子分别小于0.002和0.001,而氯离子微电极对碳酸氢根离子的选择性常数为0.067。葡萄糖或尿素对电动势无影响。仅当被测离子浓度低而蛋白质浓度高时,蛋白质才对离子交换膜有显著影响。基于此背景,在体内和体外对几种生物样品,如血清、组织和细胞液以及其他含蛋白质的液体进行了钾离子和氯离子活性的测定。用微电极获得的值与用其他传统方法或当前关于电解质溶液的理论获得的值一致。这些结果被认为确保了这些电极在许多领域的生物学研究中的实际应用。

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