Mueller Jens, Gessner Matthias, Remberg Anja, Hoch Jochen, Zerlauth Gerold, Hanfland Peter
Institute of Experimental Haematology and Transfusion Medicine, University of Bonn, Bonn, Germany.
Clin Chem Lab Med. 2005;43(8):827-33. doi: 10.1515/CCLM.2005.139.
Nucleic acid amplification testing for hepatitis C virus (HCV) RNA has become an essential tool for the prevention and clinical management of hepatitis C. We describe the development, validation and evaluation of a homogenous reverse transcriptase-initiated HCV-PCR assay with competitive internal control that is applicable to both the quantitative detection of HCV genomes in single patient samples and the screening of blood donations by mini-pool testing. For the implementation of a positive run control, a HCV RNA-positive plasma sample was calibrated against an international HCV RNA standard preparation. For quantification purposes, an in vitro-transcribed RNA calibrator sequence was used. The detection limit of the assay (95% positive cut-off) was determined by probit analysis and was calculated as 114 IU/mL. Comparable sensitivity to different HCV template sequences was verified for HCV genotypes 1-5. Quantitative test results correlated well with viral loads that had been previously determined by the Bayer VERSANT HCV RNA 3.0 bDNA assay (n=53, R=0.943, p<0.001). During more than 5 years of blood donation testing, the specificity of the assay was found to be 99.51%. All assay components showed constant performance during this time period. In conclusion, we introduce a well-proven method that allows fast and reliable quantification of HCV genomes.
丙型肝炎病毒(HCV)RNA的核酸扩增检测已成为丙型肝炎预防和临床管理的重要工具。我们描述了一种具有竞争性内部对照的均相逆转录启动HCV-PCR检测方法的开发、验证和评估,该方法适用于单患者样本中HCV基因组的定量检测以及通过小池检测对献血进行筛查。为了实施阳性运行对照,将一份HCV RNA阳性血浆样本与国际HCV RNA标准制剂进行校准。为了进行定量,使用了体外转录的RNA校准序列。通过概率分析确定该检测方法的检测限(95%阳性截断值),计算得出为114 IU/mL。对HCV 1-5型验证了对不同HCV模板序列的可比灵敏度。定量检测结果与先前通过拜耳VERSANT HCV RNA 3.0 bDNA检测法测定的病毒载量相关性良好(n = 53,R = 0.943,p < 0.001)。在超过5年的献血检测过程中,该检测方法的特异性为99.51%。在此期间,所有检测组件均表现出稳定的性能。总之,我们介绍了一种经过充分验证的方法,可实现对HCV基因组的快速可靠定量。