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首页> 外文期刊>The Journal of molecular diagnostics: JMD >Retrospective Validation of a Metagenomic Sequencing Protocol for Combined Detection of RNA and DNA Viruses Using Respiratory Samples from Pediatric Patients
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Retrospective Validation of a Metagenomic Sequencing Protocol for Combined Detection of RNA and DNA Viruses Using Respiratory Samples from Pediatric Patients

机译:采用小儿患者呼吸样品组合检测RNA和DNA病毒的组合序列测序方案的回顾性验证

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摘要

Viruses are the main cause of respiratory tract infections. Metagenomic next-generation sequencing (mNGS) enables unbiased detection of all potential pathogens. To apply mNGS in viral diagnostics, sensitive and simultaneous detection of RNA and DNA viruses is needed. Herein, were studied the performance of an in-house mNGS protocol for routine diagnostics of viral respiratory infections with potential for automated pan-pathogen detection. The sequencing protocol and bioinformatics analysis were designed and optimized, including exogenous internal controls. Subsequently, the protocol was retrospectively validated using 25 clinical respiratory samples. The developed protocol using Illumina NextSeq 500 sequencing showed high repeatability. Use of the National Center for Biotechnology Information's RefSeq database as opposed to the National Center for Biotechnology Information's nucleotide database led to enhanced specificity of classification of viral pathogens. A correlation was established between read counts and PCR cycle threshold value. Sensitivity of mNGS, compared with PCR, varied up to 83%, with specificity of 94%, dependent on the cutoff for defining positive mNGS results. Viral pathogens only detected by mNGS, not present in the routine diagnostic workflow, were influenza C, KI polyomavirus, cytomegalovirus, and enterovirus. Sensitivity and analytical specificity of this mNGS protocol were comparable to PCR and higher when considering off-PCR target viral pathogens. One single test detected all potential viral pathogens and simultaneously obtained detailed information on detected viruses.
机译:病毒是呼吸道感染的主要原因。 Metagenomic的下一代测序(MNGS)能够对所有潜在病原体的检测无偏见。为了在病毒诊断中应用MNG,需要对RNA和DNA病毒进行敏感和同时检测。本文研究了内部MNGS协议的性能,用于常规诊断病毒呼吸道感染具有自动泛病原体检测的可能性。设计和优化的测序方案和生物信息学分析,包括外源内部控制。随后,通过25临床呼吸样品回顾性验证该方案。使用Illumina Nextseq 500测序的开发方案显示了高可重复性。使用国家生物技术信息中心的Refseq数据库,而不是国家生物技术信息的核苷酸数据库,导致了病毒病原体分类的特异性。在读取计数和PCR循环阈值之间建立了相关性。与PCR相比,MNG的敏感性可达83%,特异性为94%,取决于用于定义阳性Mngs结果的截止。仅由MNGS检测到的病原病原体,不存在于常规诊断工作流程中,是流感C,Ki PolyomaVirus,巨细胞病毒和肠道病毒。当考虑OFF-PCR靶病毒病原体时,该MNGS方案的敏感性和分析特异性与PCR和更高相比。一项检测到所有潜在的病原体病原体,并同时获得有关检测到的病毒的详细信息。

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