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蛋白质对使用配备DTE模块的Ektachem DT 60测定血清中钠、钾和氯的影响;通过火焰原子发射光谱法和离子选择性电极特别关注可能的蛋白质误差进行评估;对其校准的建议。

Influence of protein on the determination of sodium, potassium and chloride in serum by Ektachem DT 60 with the DTE module; evaluation with special attention to a possible protein error by flame atomic emission spectrometry and ion-selective electrodes; proposals to their calibration.

作者信息

Külpmann W R

机构信息

Institut für Klinische Chemie I, Medizinische Hochschule Hannover, Federal Republic of Germany.

出版信息

J Clin Chem Clin Biochem. 1989 Oct;27(10):815-24. doi: 10.1515/cclm.1989.27.10.815.

Abstract

The reliability of the Ektachem DT 60 with the DTE module was evaluated. The precision of the determination of sodium, potassium and chloride in serum was adequate. The relative standard deviation for precision between days was Na+ 0.7%, K+ 1.5% and Cl- 1.0%. The means of the Ektachem results for 7 control sera differed from those of the reference method values by 0.9% (Na+), -0.9% (K+) and +4.4% (Cl-). Similar results were obtained for the analysis of patient sera. The influence of protein was investigated, using sera of increasing protein concentration prepared by ultracentrifugation. The results from the Ektachem corresponded to the values obtained by flame atomic emission spectrometry, even at high protein concentrations, although Ektachem measurements are performed by ion-selective electrodes without predilution. In paraproteinaemia, the Ektachem and flame atomic emission spectrometry results disagreed. Chloride determinations by Ektachem distinctly differed from measurements of the chloride concentration in total serum. It is proposed that ion-selective electrodes should be calibrated and linearized with respect to sodium chloride, in order to obtain an accurate value for the concentration of electrolyte in serum water. Concentrations are easier to interpret than "activities" for therapeutical purposes, and they can be used to define protein- and lipid-independent reference intervals for these electrolytes. With this calibration procedure, the results from ion-selective electrodes are never lower than values obtained by flame atomic emission spectrometry. The accuracy of ion-selective electrode measurements should be evaluated by applying reference methods for sodium, potassium and chloride to the ultracentrifugation supernatant of the corresponding serum. This approach can help to settle the dispute concerning the influence of protein on the residual liquid junction potential.

摘要

对配备DTE模块的Ektachem DT 60的可靠性进行了评估。血清中钠、钾和氯测定的精密度是足够的。日间精密度的相对标准偏差为:Na⁺ 0.7%,K⁺ 1.5%,Cl⁻ 1.0%。7份对照血清的Ektachem结果均值与参考方法值相比,差异为:Na⁺ 0.9%,K⁺ -0.9%,Cl⁻ +4.4%。对患者血清分析也得到了类似结果。使用超速离心制备的蛋白质浓度递增的血清研究了蛋白质的影响。即使在高蛋白浓度下,Ektachem的结果也与火焰原子发射光谱法得到的值相符,尽管Ektachem测量是通过离子选择性电极在未预稀释的情况下进行的。在副蛋白血症中,Ektachem和火焰原子发射光谱法的结果不一致。Ektachem测定的氯与总血清中氯浓度的测量明显不同。建议应针对氯化钠对离子选择性电极进行校准和线性化,以便获得血清水中电解质浓度的准确值。出于治疗目的,浓度比“活度”更易于解释,并且它们可用于定义这些电解质与蛋白质和脂质无关的参考区间。通过这种校准程序,离子选择性电极的结果绝不会低于火焰原子发射光谱法获得的值。离子选择性电极测量的准确性应通过将钠、钾和氯的参考方法应用于相应血清的超速离心上清液来评估。这种方法有助于解决关于蛋白质对残余液体接界电位影响的争议。

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