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首页> 外文期刊>Journal of Clinical Microbiology >Accuracy of the TRUGENE HIV-1 Genotyping Kit
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Accuracy of the TRUGENE HIV-1 Genotyping Kit

机译:TRUGENE HIV-1基因分型试剂盒的准确性

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摘要

Drug resistance and poor virological responses are associated with well-characterized mutations in the viral reading frames that encode the proteins that are targeted by currently available antiretroviral drugs. An integrated system was developed that includes target gene amplification, DNA sequencing chemistry (TRUGENE HIV-1 Genotyping Kit), and hardware and interpretative software (the OpenGene DNA Sequencing System) for detection of mutations in the human immunodeficiency virus type 1 (HIV-1) protease and reverse transcriptase sequences. The integrated system incorporates reverse transcription-PCR from extracted HIV-1 RNA, a coupled amplification and sequencing step (CLIP), polyacrylamide gel electrophoresis, semiautomated analysis of data, and generation of an interpretative report. To assess the accuracy and robustness of the assay system, 270 coded plasma specimens derived from nine patients were sent to six laboratories for blinded analysis. All specimens contained HIV-1 subtype B viruses. Results of 270 independent assays were compared to “gold standard” consensus sequences of the virus populations determined by sequence analysis of 16 to 20 clones of viral DNA amplicons derived from two independent PCRs using primers not used in the kit. The accuracy of the integrated system for nucleotide base identification was 98.7%, and the accuracy for codon identification at 54 sites associated with drug resistance was 97.6%. In a separate analysis of plasma spiked with infectious molecular clones, the assay reproducibly detected all 72 different drug resistance mutations that were evaluated. There were no significant differences in accuracy between laboratories, between technologists, between kit lots, or between days. This integrated assay system for the detection of HIV-1 drug resistance mutations has a high degree of accuracy and reproducibility in several laboratories.
机译:耐药性和较差的病毒学应答与病毒阅读框中特征明确的突变相关,这些突变编码目前可利用的抗逆转录病毒药物靶向的蛋白质。开发了一个集成系统,其中包括靶基因扩增,DNA测序化学(TRUGENE HIV-1 基因分型试剂盒)以及用于检测人类免疫缺陷中突变的硬件和解释软件(OpenGene DNA测序系统) 1型病毒(HIV-1)蛋白酶和逆转录酶序列。该集成系统整合了提取的HIV-1 RNA的逆转录PCR,耦合的扩增和测序步骤(CLIP),聚丙烯酰胺凝胶电泳,数据的半自动分析以及解释性报告的生成。为了评估测定系统的准确性和耐用性,将来自9位患者的270个编码血浆标本送至6个实验室进行盲法分析。所有标本均含有HIV-1 B型亚型病毒。将270个独立测定的结果与病毒群体的“金标准”共有序列进行比较,该序列通过使用试剂盒中未使用的引物对源自两个独立PCR的16至20个病毒DNA扩增子克隆进行序列分析而确定。集成系统核苷酸碱基识别的准确度为98.7%,与耐药性相关的54个位点的密码子识别准确度为97.6%。在对掺有感染性分子克隆的血浆进行的单独分析中,该测定法可重复地检测出所评估的所有72种不同的耐药性突变。实验室之间,技术人员之间,试剂盒之间或天数之间的准确性没有显着差异。这种用于检测HIV-1耐药性突变的综合测定系统在几个实验室中具有很高的准确性和可重复性。

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