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Evaluation of the Abbott Investigational Use Only RealTime Hepatitis C Virus (HCV) Assay and Comparison to the Roche TaqMan HCV Analyte-Specific Reagent Assay▿

机译:雅培仅供研究使用的实时丙型肝炎病毒(HCV)分析方法的评估以及与Roche TaqMan HCV分析物特异性试剂分析方法的比较▿

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摘要

The accurate and sensitive measurement of hepatitis C virus (HCV) RNA is essential for the clinical management and treatment of infected patients and as a research tool for studying the biology of HCV infection. We evaluated the linearity, reproducibility, precision, limit of detection, and concordance of viral genotype quantitation of the Abbott investigational use only RealTime HCV (RealTime) assay using the Abbott m2000 platform and compared the results to those of the Roche TaqMan Analyte-Specific Reagent (TaqMan) and Bayer Versant HCV bDNA 3.0 assay. Comparison of 216 samples analyzed by RealTime and TaqMan assays produced the following Deming regression equation: RealTime = 0.940 (TaqMan) + 0.175 log10 HCV RNA IU/ml. The average difference between the assays was 0.143 log10 RNA IU/ml and was consistent across RealTime's dynamic range of nearly 7 log10 HCV RNA IU/ml. There was no significant difference between genotypes among these samples. The limit of detection using eight replicates of the World Health Organization HCV standard was determined to be 7.74 HCV RNA IU/ml by probit analysis. Replicate measurements of commercial genotype panels were significantly higher than TaqMan measurements for most samples and showed that the RealTime assay is able to detect all genotypes with no bias. Additionally, we showed that the amplicon generated by the widely used Roche COBAS Amplicor Hepatitis C Virus Test, version 2.0, can act as a template in the RealTime assay, but potential cross-contamination could be mitigated by treatment with uracil-N-glycosylase. In conclusion, the RealTime assay accurately measured HCV viral loads over a broad dynamic range, with no significant genotype bias.
机译:丙型肝炎病毒(HCV)RNA的准确和灵敏测量对于感染患者的临床管理和治疗以及研究HCV感染生物学的研究工具至关重要。我们评估了使用雅培m2000平台仅使用实时HCV(RealTime)测定的雅培研究性病毒的线性,可重复性,精确度,检测限和病毒基因型定量的一致性,并将结果与​​Roche TaqMan分析专用试剂的结果进行了比较(TaqMan)和Bayer Versant HCV bDNA 3.0分析法。通过RealTime和TaqMan测定分析的216个样品的比较产生了以下Deming回归方程:RealTime = 0.940(TaqMan)+ 0.175 log10 HCV RNA IU / ml。测定之间的平均差异为0.143 log10 RNA IU / ml,并且在RealTime的动态范围内接近7 log10 HCV RNA IU / ml时是一致的。这些样品之间的基因型之间没有显着差异。通过概率分析确定使用世界卫生组织HCV标准品的八个重复样本的检测极限为7.74 HCV RNA IU / ml。对于大多数样品,商业基因型检测组的重复测量值均显着高于TaqMan测量值,并且表明RealTime分析能够检测所有基因型而没有偏倚。此外,我们证明了广泛使用的罗氏COBAS Amplicor丙型肝炎病毒测试2.0版所产生的扩增子可以作为RealTime分析中的模板,但是通过尿嘧啶-N-糖基化酶处理可以减轻潜在的交叉污染。总之,实时分析可在广泛的动态范围内准确测量HCV病毒载量,而没有明显的基因型偏差。

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