Factors Contributing to Variability of Quantitative Viral PCR Results in Proficiency Testing Samples: a Multivariate Analysis
Open Access
- 1 February 2012
- journal article
- research article
- Published by American Society for Microbiology in Journal of Clinical Microbiology
- Vol. 50 (2) , 337-345
- https://doi.org/10.1128/jcm.01287-11
Abstract
While viral load testing has gained widespread acceptance, a primary limitation remains the variability of results, particularly between different laboratories. While some work has demonstrated the importance of standardized quantitative control material in reducing this variability, little has been done to explore other important factors in the molecular amplification process. Results of 185 laboratories enrolled in the College of American Pathologists (CAP) 2009 viral load proficiency testing (PT) survey (VLS) were examined. This included 165 labs (89.2%) testing for cytomegalovirus (CMV), 99 (53.5%) for Epstein-Barr virus (EBV), and 64 (34.6%) for BK virus (BKV). At the time of PT, laboratories were asked a series of questions to characterize their testing methods. The responses to these questions were correlated to mean viral load (MVL) and result variability (RV). Contribution of individual factors to RV was estimated through analysis of variance (ANOVA) modeling and the use of backward selection of factors to fit those models. Selection of the quantitative calibrator, commercially prepared primers and probes, and amplification target gene were found most prominently associated with changes in MVL or RV for one or more of the viruses studied. Commercially prepared primers and probes and amplification target gene made the largest contribution to overall variability. Factors contributing to MVL and RV differed among viruses, as did relative contribution of each factor to overall variability. The marked variability seen in clinical quantitative viral load results is associated with multiple aspects of molecular testing design and performance. The reduction of such variability will require a multifaceted approach to improve the accuracy, reliability, and clinical utility of these important tests.Keywords
This publication has 23 references indexed in Scilit:
- A Commutable Cytomegalovirus Calibrator Is Required to Improve the Agreement of Viral Load Values between LaboratoriesClinical Chemistry, 2009
- Multi-Site PCR-Based CMV Viral Load Assessment-Assays Demonstrate Linearity and Precision, but Lack Numeric Standardization: A Report of the Association for Molecular PathologyThe Journal of Molecular Diagnostics, 2009
- Interlaboratory Comparison of Cytomegalovirus Viral Load AssaysAmerican Journal of Transplantation, 2009
- Marked Variability of BK Virus Load Measurement Using Quantitative Real-Time PCR among Commonly Used AssaysJournal of Clinical Microbiology, 2008
- Multicenter Comparison of Different Real-Time PCR Assays for Quantitative Detection of Epstein-Barr VirusJournal of Clinical Microbiology, 2008
- Clinical evaluation of the COBAS Ampliprep™/COBAS TaqMan™ for HCV RNA quantitation in comparison with the branched‐DNA assayJournal of Medical Virology, 2007
- Evaluation of the COBAS AmpliPrep-Total Nucleic Acid Isolation-COBAS TaqMan Hepatitis B Virus (HBV) Quantitative Test and Comparison to the VERSANT HBV DNA 3.0 AssayJournal of Clinical Microbiology, 2006
- An international collaborative study to establish a World Health Organization international standard for hepatitis B virus DNA nucleic acid amplification techniquesVox Sanguinis, 2001
- Establishment of the First International Standard for Nucleic Acid Amplification Technology (NAT) Assays for HCV RNAVox Sanguinis, 1999
- Robust Tests for the Equality of VariancesJournal of the American Statistical Association, 1974