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基于从头计算方法的人血清中葡萄糖的 MU 估计。

Estimation of MU for Glucose in Human Serum Using Bottom-up Approach.

出版信息

Clin Lab. 2020 Dec 1;66(12). doi: 10.7754/Clin.Lab.2020.200326.

Abstract

BACKGROUND

Glucose is an important material in human metabolism. The establishment of glucose reference measurement procedures and to study the uncertainties of measurement is of great significance. Linear fitting and dilution of reference material were used in the measurement of glucose concentration and they are common operations in daily work. Investigation of the measurement uncertainty of these operations will be of important significance to clinical laboratory medicine. However, in the field of laboratory medicine, related research was rarely reported.

METHODS

The spectrometric quantification of glucose is an application of the enzymatic reference method with hexokinase. The sources of uncertainty in the measurement process were analyzed. The measurement uncertainties in the study were evaluated according to GUF method and the method introduced by Quantifying Uncertainty in Analytical Measurement (QUAM) was also applied in the evaluation of the measurement of linear fitting.

RESULTS

The standard curve was built successfully according to the measurement procedure recommended by the CDC and the linear equation was y = 0.000807x + 0.001213 (R2 = 0.999179). The measurement uncertainty of glucose in the sample was 0.450,408 mmol/L.

CONCLUSIONS

The method for the determination of serum glucose concentration by hexokinase in our laboratory has been successfully established. The measurement uncertainty was consistent with the GUF method and the method introduced by Quantifying Uncertainty in Analytical Measurement (QUAM) in the process of linear fitting when the glucose concentration was measured by the reference method (hexokinase method).

摘要

背景

葡萄糖是人体代谢的重要物质。建立葡萄糖参考测量程序并研究测量不确定度具有重要意义。在测量葡萄糖浓度时,线性拟合和参考物质的稀释是常用的操作。研究这些操作的测量不确定度对于临床检验医学具有重要意义。然而,在实验室医学领域,相关研究很少报道。

方法

分光光度法定量检测葡萄糖是一种基于己糖激酶的酶参考方法的应用。分析了测量过程中的不确定度来源。根据 GUM 方法和 Quantifying Uncertainty in Analytical Measurement(QUAM)方法中介绍的方法对研究中的测量不确定度进行了评估,还应用了 QUAM 方法评估了线性拟合的测量。

结果

根据 CDC 推荐的测量程序成功建立了标准曲线,线性方程为 y = 0.000807x + 0.001213(R2 = 0.999179)。样品中葡萄糖的测量不确定度为 0.450,408 mmol/L。

结论

本实验室己糖激酶法测定血清葡萄糖浓度的方法已建立成功。当使用参考方法(己糖激酶法)测量葡萄糖浓度时,测量不确定度与 GUM 方法和 QUAM 方法在进行线性拟合时的结果一致。

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