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Illumina sequencing of clinical samples for virus detection in a public health laboratory

机译:用于公共卫生实验室中病毒检测的临床样品的Illumina测序

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摘要

High-throughput sequencing (HTS) provides the opportunity, once a diagnostic result is obtained, to extract additional information from a virus-containing sample. Hence, it offers advantages over established quantitative amplification technology, such as quantitative PCR, particularly in a public health environment. At this early stage of its clinical application, there have been limited studies comparing HTS performance to that of the more established quantitative PCR technology for direct detection of viruses. In this pilot-scale study, we tested HTS with a range of viruses and sample types routinely encountered in a public health virology laboratory. In comparison with quantitative PCR, our HTS method was able to sensitively (92%) detect all viruses in any sample type with the exception of certain tissues. Moreover, sufficient nucleotide sequence information was obtained to enable genotyping of strains detected, thus providing additional useful epidemiological information. While HTS sensitivity may not yet match that of PCR, the added value through enhanced epidemiological data has considerable potential to enable real-time surveillance of circulating strains so as to facilitate rapid and appropriate response to outbreaks and virus zoonotic spillover events.
机译:一旦获得诊断结果,高通量测序(HTS)提供了从包含病毒的样品中提取其他信息的机会。因此,它比现有的定量扩增技术(例如定量PCR)更具优势,尤其是在公共卫生环境中。在其临床应用的早期阶段,将HTS性能与更成熟的用于直接检测病毒的定量PCR技术的性能进行比较的研究很少。在这项中试规模的研究中,我们用一系列在公共卫生病毒学实验室中经常遇到的病毒和样品类型对HTS进行了测试。与定量PCR相比,我们的HTS方法能够灵敏地(92%)检测到任何样本类型中的所有病毒,但某些组织除外。此外,获得了足够的核苷酸序列信息以能够对检测到的菌株进行基因分型,从而提供了更多有用的流行病学信息。尽管HTS敏感性可能尚未达到PCR的敏感性,但是通过增强流行病学数据所带来的附加值具有巨大潜力,可以实时监测循环中的菌株,从而有助于对爆发和病毒人畜共患病事件做出快速而适当的响应。

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