Commutability assessment of reference materials for homocysteine

Author:

Xing Tongtong12,Liu Jianyi1,Sun Haofeng13,Gao Yanhong4,Ju Yi5,Liu Xiaolin2,Song Dewei1

Affiliation:

1. Division of Chemical Metrology and Analytical Science , National Institute of Metrology (Key Laboratory of Chemical Metrology and Applications on Nutrition and Health for State Market Regulation) , Beijing , P.R. China

2. School of Chemical Engineering , Beijing University of Chemical Technology , Beijing , P.R. China

3. School of Chemical and Engineering , Nanjing University of Science and Technology , Nanjing , Jiangsu , P.R. China

4. Laboratory Department of the First Medical Center of PLA General Hospital , Beijing , P.R. China

5. Shanghai Center for Clinical Laboratory , Shanghai , P.R. China

Abstract

Abstract Objectives Commutability of reference materials is essential for ensuring the traceability of patient measurement results and the technical basis for the use of reference materials. Commutability is only relevant for matrixed reference material; it is a prerequisite for the accuracy and authenticity of calibration methods. In this study, we evaluated the commutability of reference materials for homocysteine. Methods Five conventional measurement methods were applied to simultaneously measure 30 serum samples and seven homocysteine reference materials from the National Institute of Standards and Technology and the National Institute of Metrology. Liquid chromatography tandem-mass spectrometry was used as a reference method. Two methods were used to evaluate the commutability of the seven reference materials according to the Clinical and Laboratory Standards Institute EP30-A and the International Federation of Clinical Chemistry and Laboratory Medicine (IFCC) commutability assessment document. Results Among 35 combinations of the five conventional methods and seven reference materials, after evaluation in accordance with the EP30-A, the seven reference materials passed the commutability assessment, and 34 combinations were commutable. According to the IFCC, the commutability evaluation of 28 combinations was conclusive (commutable or non-commutable), while results for the remaining seven combinations could not be determined. Conclusions The homocysteine reference materials showed good commutability. The sensitivity of the measurement procedure, measurement deviation and uncertainty, and differences in the “measurand” selected by different methods may affect the evaluation results. Additionally, different judgment standards for different methods may explain the observed variations in evaluation results.

Publisher

Walter de Gruyter GmbH

Subject

Biochemistry (medical),Clinical Biochemistry,General Medicine

Reference25 articles.

1. Vesper, HW, Miller, WG, Myers, GL. Reference materials and commutability. Clin Biochem Rev 2007;28:139–47.

2. Miller, WG, Myers, GL, Rej, R. Why commutability matters. Clin Chem 2006;52:553–4, https://doi.org/10.1373/clinchem.2005.063511.

3. Miller, WG, Myers, GL. Commutability still matters. Clin Chem 2013;59:1291–3, https://doi.org/10.1373/clinchem.2013.208785.

4. Braga, F, Panteghini, M. Commutability of reference and control materials: an essential factor for assuring the quality of measurements in laboratory medicine. Clin Chem Lab Med 2019;57:967–73, https://doi.org/10.1515/cclm-2019-0154.

5. Clinical and Laboratory Standards Institute (CLSI). Characterization and qualification of commutable reference materials for laboratory medicine; Approved Guideline. CLSI document EP30-A. Wayne, PA: Clinical and Laboratory Standards Institute; 2010.

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