用柯达- ektachem进行分析。准确度控制采用参考方法值及蛋白质浓度的影响。第一部分:电解质。

W R Külpmann, P Maibaum, O Sonntag
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引用次数: 0

摘要

用Ektachem 700测定电解质的可靠性通过各种手段进行评估,包括使用参考方法值。通过使用通过超离心获得的不同蛋白质浓度的样品,系统地研究了蛋白质浓度的影响,这可能会改变粘度和扩散速度。钙。9份对照血清Ektachem结果与参考方法值的平均偏差为-7.3%。在与天然血清的比较研究中,没有得到负偏倚。准确度与蛋白质浓度无关。氯。与参考方法值相比,平均偏差为-0.1%。正如预期的那样,使用“直接”离子选择电极的Ektachem和库仑法测定的氯化物值之间的差异随着蛋白质浓度的增加而增加。镁。在与参考方法值的准确度控制中获得负偏差(-5.0%),在与天然血清的比较研究中获得较小程度的负偏差。没有观察到蛋白质浓度对镁测定的影响。磷酸。准确度控制由方法相关的赋值和与天然血清的比较研究显示正偏倚。Ektachem结果取决于蛋白质浓度。在120 g/l蛋白质时,偏差为+13.6%。钾。相对于参考方法值的平均偏差为-1.2%。在“正常”组成的高浓度蛋白质中,Ektachem的结果与火焰原子发射光谱法的测量结果一致;在副蛋白血症血清中,该值更高。钠。与参考方法值相比,平均不准确性为3.3%。对总蛋白的数量和组成的依赖性与钾分析的依赖性相似。
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Analyses with the KODAK-Ektachem. Accuracy control using reference method values and the influence of protein concentration. Part I. Electrolytes.

The reliability of electrolyte determinations with the Ektachem 700 was evaluated by various means including the use of reference method values. The influence of protein concentration, which may alter the viscosity and hence the speed of diffusion, was systematically investigated by using samples of varying protein concentration obtained by ultracentrifugation. Calcium. The mean bias between Ektachem results and reference method values of 9 control sera was -7.3%. In a comparative study with native sera a negative bias was not obtained. The accuracy was independent of the protein concentration. Chloride. The mean bias was -0.1% compared with reference method values. As might be expected, the difference between chloride values with Ektachem--using a "direct" ion-selective electrode--and determinations by coulometry increased with increasing protein concentrations. Magnesium. A negative bias (-5.0%) was obtained in accuracy control with reference method values, and to a smaller extent in a comparative study with native sera. An influence of the protein concentration on the magnesium determination was not observed. Phosphate. Accuracy control by method-dependent assigned values and a comparative study with native sera showed a positive bias. Ektachem results depend on the protein concentration. At 120 g/l protein the bias was +13.6%. Potassium. The mean bias, with respect to reference method values, was -1.2%. At high concentrations of proteins of "normal" composition, Ektachem results agree with measurements by flame atomic emission spectrometry; in paraproteinaemic sera the values are higher. Sodium. The mean inaccuracy was 3.3%, compared with reference method values. The dependence on the amount and composition of the total protein was similar to that found for potassium analysis.

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