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锑微电极的物理化学特性,特别涉及标准缓冲液的选择

Physicochemical characteristics of antimony microelectrode with special reference to selection of standard buffers.

作者信息

Matsumura Y, Satake N, Fujimoto M

出版信息

Jpn J Physiol. 1980;30(4):509-28. doi: 10.2170/jjphysiol.30.509.

DOI:10.2170/jjphysiol.30.509
PMID:6970290
Abstract
  1. Antimony (Sb) microelectrodes with tips of 2 to 5 micrometers in outside diameter were constructed, and their electromotive forces (EMF) were tested in response to the pH of several calibration buffers. The data were compared with those of glass pH electrodes. 2) Increasing ionic strength (I) caused a significant deviation in pH readings of the Sb-microelectrode (delta pHSb-Glass). The above salt effect was empirically given by delta pHSb-Glass = 0.017--0.125 I (I = 0.09--0.22) 3) Even with the correction for ionic strength, the values of delta pHSb-Glass were still dependent on the nature of calibration buffers employed. Among various buffers, Tris buffer [Tris(hydroxymethyl)-aminomethane, (THAM)] had the least disturbance on the Sb-microelectrode, and bicarbonate had also relatively minor effect. 4) The pH value according to the Sb-electrode was caused to deviate considerably by phosphate. The effect of phosphate within the range of 1 to 67 mM can be predicted by 1/delta pHSb-Glass = 1 + (0.174/[PO4]) 5) Like phosphates, BES [N, N-Bis (2-hydroxyethyl)-2-aminoethane sulfonic acid] also had a significant effect on the EMF of the Sb-microelectrode. 6) Upon consideration of the above facts, measurements of several biological fluids, such as those of the in vivo pH of intratubular fluid of bullfrog kidney were carried out with the Sb-microelectrode calibrated by 90 mM Tris buffer. 7) Thus, it was concluded that the Sb-microelectrode when properly calibrated could be used for the pH measurement of ultraminute amounts of biological samples.
摘要
  1. 制作了外径为2至5微米的锑(Sb)微电极,并测试了它们对几种校准缓冲液pH值的电动势(EMF)。将数据与玻璃pH电极的数据进行了比较。2) 离子强度(I)增加导致锑微电极的pH读数出现显著偏差(δpHSb - Glass)。上述盐效应根据经验表示为δpHSb - Glass = 0.017 - 0.125I(I = 0.09 - 0.22)。3) 即使对离子强度进行了校正,δpHSb - Glass的值仍然取决于所使用的校准缓冲液的性质。在各种缓冲液中,Tris缓冲液[三(羟甲基)氨基甲烷,(THAM)]对锑微电极的干扰最小,碳酸氢盐的影响也相对较小。4) 磷酸盐会使根据锑电极测得的pH值产生相当大的偏差。在1至67 mM范围内磷酸盐的影响可以通过1/δpHSb - Glass = 1 + (0.174/[PO4])来预测。5) 与磷酸盐一样,BES [N, N - 双(2 - 羟乙基)- 2 - 氨基乙烷磺酸]对锑微电极的EMF也有显著影响。6) 考虑到上述事实,使用经90 mM Tris缓冲液校准的锑微电极对几种生物流体进行了测量,例如牛蛙肾肾小管内液的体内pH值。7) 因此,得出结论,经过适当校准的锑微电极可用于超微量生物样品的pH测量。

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Jpn J Physiol. 1980;30(4):509-28. doi: 10.2170/jjphysiol.30.509.
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