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Multicenter Comparison of Different Real-time PCR Assays for Quantitative Detection of Epstein-Barr Virus

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Specialty Microbiology
Date 2007 Nov 9
PMID 17989187
Citations 49
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Abstract

Quantification of Epstein-Barr virus (EBV) in peripheral blood is important for the diagnosis and management of serious EBV diseases, including posttransplant lymphoproliferative disorder. A variety of PCR-based methods are currently in use; however, there is little information on their comparability. This study assessed the relative performance of different quantitative assays. A multicenter comparative study was performed at eight sites using three panels consisting of serial dilutions of quantified EBV DNA and extracts from a total of 19 whole-blood specimens. Samples were distributed and tested blindly. Instrumentation, probe chemistries, amplification targets, and other test-related aspects varied considerably between laboratories. Each laboratory's calibration curve indicated strong evidence of a consistent log-linear relationship between viral load and cycle threshold, suggesting that intralaboratory tracking of a given patient would yield similar relative quantitative trends among the participating test sites. There was strong concordance among laboratories with respect to qualitative test results; however, marked quantitative discordance was seen. For most samples, the across-laboratory interquartile range of the reported viral load (in copies/microl) was roughly 0.6 log-units, and for one sample the overall range was approximately 4.2 log-units. While intralaboratory tracking of patients may yield similar results, these data indicate a need for caution when attempting to compare clinical results obtained at different institutions and suggest the potential value to be gained by more standardized testing methodology.

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References
1.
Saldanha J, Lelie N, Yu M, Heath A . Establishment of the first World Health Organization International Standard for human parvovirus B19 DNA nucleic acid amplification techniques. Vox Sang. 2002; 82(1):24-31. DOI: 10.1046/j.1423-0410.2002.00132.x. View

2.
Bakker N, Verschuuren E, Erasmus M, Hepkema B, Veeger N, Kallenberg C . Epstein-Barr virus-DNA load monitoring late after lung transplantation: a surrogate marker of the degree of immunosuppression and a safe guide to reduce immunosuppression. Transplantation. 2007; 83(4):433-8. DOI: 10.1097/01.tp.0000252784.60159.96. View

3.
Saldanha J, Gerlich W, Lelie N, Dawson P, Heermann K, Heath A . An international collaborative study to establish a World Health Organization international standard for hepatitis B virus DNA nucleic acid amplification techniques. Vox Sang. 2001; 80(1):63-71. DOI: 10.1046/j.1423-0410.2001.00003.x. View

4.
Lee T, Savoldo B, Rooney C, Heslop H, Gee A, Caldwell Y . Quantitative EBV viral loads and immunosuppression alterations can decrease PTLD incidence in pediatric liver transplant recipients. Am J Transplant. 2005; 5(9):2222-8. DOI: 10.1111/j.1600-6143.2005.01002.x. View

5.
Saldanha J, Heath A, Lelie N, Pisani G, Yu M . A World Health Organization International Standard for hepatitis A virus RNA nucleic acid amplification technology assays. Vox Sang. 2005; 89(1):52-8. DOI: 10.1111/j.1423-0410.2005.00633.x. View