Analytical performance of eight enzymatic assays for ethanol in serum evaluated by data from the Belgian external quality assessment scheme

Author:

Coucke Wim12ORCID,Charlier Corinne3,Croes Kathleen4,Mahieu Boris5,Neels Hugo6,Stove Christophe7ORCID,Tytgat Jan8,Vanescote André9,Verstraete Alain G.10ORCID,Wille Sarah11,Capron Arnaud2

Affiliation:

1. Sciensano , Brussels , Belgium

2. Quality of Laboratories , Sciensano , Brussels , Belgium

3. Laboratoire de Toxicologie clinique, Tour II+5 , CHU Sart Tilman , Liege 1 , Belgium

4. AZ Groeninge , Kortrijk , West-Vlaanderen , Belgium

5. Laboratory Medicine , ZNA , Antwerpen , Belgium

6. Universiteit Antwerpen Campus Drie Eiken , Wilrijk , Belgium

7. Laboratory of Toxicology , Ghent University , Ghent , Belgium

8. KU Leuven Biomedical Sciences Group , Leuven , Flanders , Belgium

9. Cabidex , Villers Le Bouillet , Belgium

10. Laboratory of Clinical Biology–Toxicology , Ghent University Hospital , Ghent , Belgium

11. National Institute of Criminalistics and Criminology Laboratory of Toxicology , Brussels , Belgium

Abstract

Abstract Objectives Fast and reliable ethanol assays analysis are used in a clinical context for patients suspected of ethanol intoxication. Mostly, automated systems using an enzymatic reaction based on ethanol dehydrogenase are used. The manuscript focusses on the evaluation of the performance of these assays. Methods Data included 30 serum samples used in the Belgian EQA scheme from 2019 to 2021 and concentrations ranged from 0.13 to 3.70 g/L. A regression line between target concentrations and reported values was calculated to evaluate outliers, bias, variability and measurement uncertainty. Results A total of 1,611 results were taken into account. Bias was the highest for Alinity c over the whole concentration range and the lowest for Vitros for low concentrations and Cobas 8000 using the c702 module for high concentrations. The Architect and Cobas c501/c502 systems showed the lowest variability over the whole concentration range. Highest variability was observed for Cobas 8000 using the 702 module, Thermo Scientific and Alinity c. Cobas 8000 using the c702 module showed the highest measurement uncertainty for lower concentrations. For higher concentrations, Alinity c, Thermo Scientific and Vitros were the methods with the highest measurement uncertainty. Conclusions The bias of the enzymatic techniques is nearly negligible for all methods except Alinity c. Variability differs strongly between measurement procedures. This study shows that the Alinity c has a worse measurement uncertainty than other systems for concentrations above 0.5 g/L. Overall, we found the differences in measurement uncertainty to be mainly influenced by the differences in variability.

Publisher

Walter de Gruyter GmbH

Subject

Biochemistry (medical),Clinical Biochemistry,General Medicine

Reference12 articles.

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2. Dubowski, KM. Alcohol determination in the clinical laboratory. Am J Clin Pathol 1980;74:747–50. https://doi.org/10.1093/ajcp/74.5.747.

3. Krasowski, MD, Wilcoxon, RM, Miron, J. A retrospective analysis of glycol and toxic alcohol ingestion: utility of anion and osmolal gaps. BMC Clin Pathol 2012;12:1. https://doi.org/10.1186/1472-6890-12-1.

4. Karch, SB. Drug abuse handbook. Boca Raton, FL, USA: CRC Press; 2019:1156 p.

5. Handbook for calculation of measurement uncertainty in environmental laboratories (NT TR 537 - Edition 4). [Internet]. Nordtest; 2017. Available from: https://www.nordtest.info/wp/2017/11/29/handbook-for-calculation-of-measurement-uncertainty-in-environmental-laboratories-nt-tr-537-edition-4/ [Accessed 17 Jan 2022].

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