Article (Scientific journals)
Assessment of serum total 25-hydroxyvitamin D assays for Vitamin D External Quality Assessment Scheme (DEQAS) materials distributed at ambient and frozen conditions.
Sempos, Christopher T.; Williams, Emma L.; Carter, Graham D. et al.
2022In Analytical and Bioanalytical Chemistry
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Keywords :
25-Hydroxyvitamin D2; 25-Hydroxyvitamin D3; Ligand binding assay; Liquid chromatography–tandem mass spectrometry (LC–MS/MS); Total 25-hydroxyvitamin D; Vitamin D External Quality Assessment Scheme (DEQAS)
Abstract :
[en] The Vitamin D External Quality Assessment Scheme (DEQAS) distributes human serum samples four times per year to over 1000 participants worldwide for the determination of total serum 25-hydroxyvitamin D [25(OH)D)]. These samples are stored at -40 °C prior to distribution and the participants are instructed to store the samples frozen at -20 °C or lower after receipt; however, the samples are shipped to participants at ambient conditions (i.e., no temperature control). To address the question of whether shipment at ambient conditions is sufficient for reliable performance of various 25(OH)D assays, the equivalence of DEQAS human serum samples shipped under frozen and ambient conditions was assessed. As part of a Vitamin D Standardization Program (VDSP) commutability study, two sets of the same nine DEQAS samples were shipped to participants at ambient temperature and frozen on dry ice. Twenty-eight laboratories participated in this study and provided 34 sets of results for the measurement of 25(OH)D using 20 ligand binding assays and 14 liquid chromatography-tandem mass spectrometry (LC-MS/MS) methods. Equivalence of the assay response for the frozen versus ambient DEQAS samples for each assay was evaluated using multi-level modeling, paired t-tests including a false discovery rate (FDR) approach, and ordinary least squares linear regression analysis of frozen versus ambient results. Using the paired t-test and confirmed by FDR testing, differences in the results for the ambient and frozen samples were found to be statistically significant at p < 0.05 for four assays (DiaSorin, DIAsource, Siemens, and SNIBE prototype). For all 14 LC-MS/MS assays, the differences in the results for the ambient- and frozen-shipped samples were not found to be significant at p < 0.05 indicating that these analytes were stable during shipment at ambient conditions. Even though assay results have been shown to vary considerably among different 25(OH)D assays in other studies, the results of this study also indicate that sample handling/transport conditions may influence 25(OH)D assay response for several assays.
Disciplines :
Laboratory medicine & medical technology
Laboratory medicine & medical technology
Author, co-author :
Sempos, Christopher T.
Williams, Emma L.
Carter, Graham D.
Jones, Julia
Camara, Johanna E.
Burdette, Carolyn Q.
Hahm, Grace
Nalin, Federica
Duewer, David L.
Kuszak, Adam J.
Merkel, Joyce
Hoofnagle, Andrew N.
LUKAS, Pierre  ;  Centre Hospitalier Universitaire de Liège - CHU > Unilab > Bone and cartilage markers laboratory
Cavalier, Etienne  ;  Université de Liège - ULiège > Département de pharmacie > Chimie médicale
Durazo-Arvizu, Ramón A.
Crump, Peter M.
Popp, Christian
Beckert, Christian
Schultess, Jan
Van Slooten, Glen
Tourneur, Carole
Pease, Camille
Kaul, Ravi
Villarreal, Alfredo
Ivison, Fiona
Fischer, Ralf
van den Ouweland, Jody M. W.
Ho, Chung S.
Law, Emmett W. K.
Simard, Jean-Nicolas
Gonthier, Renaud
Holmquist, Brett
Batista, Marcelo Cidade
Meadows, Sarah
Cox, Lorna
Jansen, Eugene
Khan, Dilshad Ahmed
Robyak, Kimberly
Creer, Michael H.
Kilbane, Mark
Twomey, Patrick J.
Freeman, James
Parker, Neil
Yuan, Jinyun
Fitzgerald, Robert
Mushtaq, Sohail
Clarke, Michael W.
Breen, Norma
Simpson, Christine
Wise, Stephen A.
More authors (40 more) Less
Language :
English
Title :
Assessment of serum total 25-hydroxyvitamin D assays for Vitamin D External Quality Assessment Scheme (DEQAS) materials distributed at ambient and frozen conditions.
Publication date :
January 2022
Journal title :
Analytical and Bioanalytical Chemistry
ISSN :
1618-2642
eISSN :
1618-2650
Publisher :
Springer, Germany
Peer reviewed :
Peer Reviewed verified by ORBi
Commentary :
© 2021. This is a U.S. government work and not under copyright protection in the U.S.; foreign copyright protection may apply.
Available on ORBi :
since 31 December 2021

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