Frankel Matthew, Forberg Kenn, Coller Kelly E, Berg Michael G, Hackett John, Cloherty Gavin, Dawson George J
Abbott Laboratories, Abbott Park, IL, USA.
Abbott Laboratories, Abbott Park, IL, USA.
J Virol Methods. 2017 Mar;241:34-40. doi: 10.1016/j.jviromet.2016.12.013. Epub 2016 Dec 22.
Human Pegivirus 2 (HPgV-2) was recently identified in the bloodstream of HCV-infected and multiply transfused individuals. Initial reports show HPgV-2 circulates at a low prevalence in HCV co-infected individuals, necessitating testing of large cohorts of samples to identify infected persons. The identification of additional HPgV-2 cases was facilitated by the development of a high throughput and reliable molecular reverse transcription polymerase chain reaction (RT-PCR) assay intended for use on the automated Abbott m2000 system with a capability of extracting and testing 96 samples at once. A dual target approach was taken to reduce the risk of a false-negative result, amplifying sequences within the 5' UTR and NS2/3 coding regions of HPgV-2. The assay was expanded to multiplex detection of the other human Pegivirus, HPgV-1 (formerly GBV-C), to allow simultaneous prevalence comparison. The limit of detection (LOD; 95% detection) for HPgV-2 was experimentally determined to be 126 copies/mL. Through use of the newly developed multiplex assay, 21 strains of HPgV-2 circulating in HCV past or present infections were identified, with all strains confirmed by next generation sequencing. The multiplexed assay has high specificity and showed no cross-reactivity of HPgV-2 with HPgV-1 or other Flaviviruses. This automated assay will be instrumental in future studies addressing HPgV-2 pathogenicity, prevalence, and sequence diversity.
人佩吉病毒2型(HPgV-2)最近在丙型肝炎病毒(HCV)感染且多次输血的个体血液中被发现。初步报告显示,HPgV-2在HCV合并感染个体中的流行率较低,因此需要检测大量样本队列以识别感染者。一种用于自动化雅培m2000系统的高通量且可靠的分子逆转录聚合酶链反应(RT-PCR)检测方法的开发,有助于识别更多HPgV-2病例,该方法能够一次提取和检测96个样本。采用双靶点方法以降低假阴性结果的风险,扩增HPgV-2的5'非翻译区(UTR)和NS2/3编码区内的序列。该检测方法扩展为对另一种人佩吉病毒HPgV-1(原GBV-C)进行多重检测,以便同时进行流行率比较。通过实验确定HPgV-2的检测限(LOD;95%检测率)为126拷贝/毫升。通过使用新开发的多重检测方法,在过去或现在感染HCV的个体中鉴定出21株循环的HPgV-2毒株,所有毒株均通过下一代测序得到确认。该多重检测方法具有高特异性,并且显示HPgV-2与HPgV-1或其他黄病毒无交叉反应。这种自动化检测方法将有助于未来针对HPgV-2致病性、流行率和序列多样性的研究。