Institute of Medical Virology, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
Institute of Medical Virology, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
J Virol Methods. 2023 Oct;320:114784. doi: 10.1016/j.jviromet.2023.114784. Epub 2023 Jul 28.
The ability of viral metagenomic Next-Generation Sequencing (mNGS) to unbiasedly detect nucleic acids in a clinical sample is a powerful tool for advanced diagnosis of viral infections. When clinical symptoms do not provide a clear differential diagnosis, extensive laboratory testing with virus-specific PCR and serology can be replaced by a single viral mNGS analysis. However, widespread diagnostic use of viral mNGS is thus far limited by long sample-to-result times, as most protocols rely on Illumina sequencing, which provides high and accurate sequencing output but is time-consuming and expensive. Here, we describe the development of an mNGS protocol based on the more cost-effective Nanopore Flongle sequencing with decreased turnaround time and lower, yet sufficient sequencing output to provide sensitive virus detection. Sample preparation (6 h) and sequencing (2 h) times are substantially reduced compared to Illumina mNGS and allow detection of DNA/RNA viruses at low input (up to 33-38 cycle threshold of specific qPCR). Although Flongles yield lower sequencing output, direct comparison with Illumina mNGS on diverse clinical samples showed similar results. Collectively, the novel Nanopore mNGS approach is specifically tailored for use in clinical diagnostics and provides a rapid and cost-effective mNGS strategy for individual testing of severe cases.
病毒宏基因组下一代测序(mNGS)能够在临床样本中无偏地检测核酸,这是一种对病毒感染进行高级诊断的强大工具。当临床症状无法提供明确的鉴别诊断时,可以用病毒 mNGS 单一分析替代广泛的病毒特异性 PCR 和血清学的实验室检测。然而,病毒 mNGS 的广泛诊断应用目前受到长样本到结果时间的限制,因为大多数方案依赖于 Illumina 测序,虽然其提供了高而准确的测序输出,但耗时且昂贵。在这里,我们描述了一种基于成本效益更高的 Nanopore Flongle 测序的 mNGS 方案的开发,该方案缩短了周转时间,测序输出更低,但足以提供灵敏的病毒检测。与 Illumina mNGS 相比,样本制备(6 小时)和测序(2 小时)时间大大缩短,并且允许在低输入(多达 33-38 个特定 qPCR 的循环阈值)下检测 DNA/RNA 病毒。虽然 Flongles 的测序输出较低,但对不同临床样本的直接比较与 Illumina mNGS 显示出相似的结果。总的来说,新型 Nanopore mNGS 方法专门针对临床诊断使用,并为重症患者的个体检测提供了快速且具有成本效益的 mNGS 策略。