The European Biological Variation Study (EuBIVAS): a summary report.

Mario Plebani, Anna Carobene, Aasne K Aarsand, William A Bartlett, Abdurrahman Coskun, Jorge Diaz-Garzon, Pilar Fernandez-Calle, Elena Guerra, Niels Jonker, Massimo Locatelli, Sverre Sandberg, Ferruccio Ceriotti

Journal: Clinical chemistry and laboratory medicine 2022;60(4):505-517

PMID: 34049424

Abstract

Biological variation (BV) data have many important applications in laboratory medicine. Concerns about quality of published BV data led the European Federation of Clinical Chemistry and Laboratory Medicine (EFLM) 1st Strategic Conference to indicate need for new studies to generate BV estimates of required quality. In response, the EFLM Working Group on BV delivered the multicenter European Biological Variation Study (EuBIVAS). This review summarises the EuBIVAS and its outcomes. Serum/plasma samples were taken from 91 ostensibly healthy individuals for 10 consecutive weeks at 6 European centres. Analysis was performed by Siemens ADVIA 2400 (clinical chemistry), Cobas Roche 8000, c702 and e801 (proteins and tumor markers/hormones respectively), ACL Top 750 (coagulation parameters), and IDS iSYS or DiaSorin Liaison (bone biomarkers). A strict preanalytical and analytical protocol was applied. To determine BV estimates with 95% CI, CV-ANOVA after analysis of outliers, homogeneity and trend analysis or a Bayesian model was applied. EuBIVAS has so far delivered BV estimates for 80 different measurands. Estimates for 10 measurands (non-HDL cholesterol, S100-β protein, neuron-specific enolase, soluble transferrin receptor, intact fibroblast growth-factor-23, uncarboxylated-unphosphorylated matrix-Gla protein, human epididymis protein-4, free, conjugated and %free prostate-specific antigen), prior to EuBIVAS, have not been available. BV data for creatinine and troponin I were obtained using two analytical methods in each case. The EuBIVAS has delivered high-quality BV data for a wide range of measurands. The BV estimates are for many measurands lower than those previously reported, having an impact on the derived analytical performance specifications and reference change values.

© 2021 Walter de Gruyter GmbH, Berlin/Boston.

Address: Laboratory Medicine, IRCCS San Raffaele Scientific Institute, Milan, Italy.; Department of Medical Biochemistry and Pharmacology, Haukeland University Hospital, Bergen, Norway.; Norwegian Organization for Quality Improvement of Laboratory Examinations (Noklus), Haraldsplass Deaconess Hospital, Bergen, Norway.; School of Medicine, University of Dundee, Scotland, UK.; Acibadem Mehmet Ali Aydınlar University, School of Medicine, Istanbul, Turkey.; Hospital Universitario La Paz, and Quality Analytical Commission of Spanish Society of Laboratory Medicine (SEQCML), Madrid, Spain.; Certe-Wilhelmina Ziekenhuis Assen, Europaweg-Zuid 1, Assen, The Netherlands.; Department of Laboratory Medicine, University Hospital of Padova, Padova, Italy.; Department of Global Public Health and Primary Care, University of Bergen, Bergen, Norway.; Central Laboratory, Fondazione IRCCS Ca' Granda, Ospedale Maggiore Policlinico, Milan, Italy.
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