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一种在台湾东部检测和细分具有新型基质基因突变的甲型流感 pdm H1N1 和 H3N2 病毒的高效、准确方法。

A highly efficient and accurate method of detecting and subtyping Influenza A pdm H1N1 and H3N2 viruses with newly emerging mutations in the matrix gene in Eastern Taiwan.

机构信息

Bioinnovation Center, Buddhist Tzu Chi Medical Foundation, Hualien, Taiwan.

Department of Medical Research, Hualien Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, Hualien, Taiwan.

出版信息

PLoS One. 2023 Mar 23;18(3):e0283074. doi: 10.1371/journal.pone.0283074. eCollection 2023.

Abstract

The rapid identification of Influenza A virus and its variants, which cause severe respiratory diseases, is imperative to providing timely treatment and improving patient outcomes. Conventionally, two separate assays (total test duration of up to 6 h) are required to initially differentiate Influenza A and B viruses and subsequently distinguish the pdm H1N1 and H3N2 serotypes of Influenza A virus. In this study, we developed a multiplex real-time RT-PCR method for simultaneously detecting Influenza A and B viruses and subtyping Influenza A virus, with a substantially reduced test duration. Clinical specimens from hospitalized patients and outpatients with influenza-like symptoms in Eastern Taiwan were collected between 2011 and 2015, transported to Hualien Tzu Chi Hospital, and analyzed. Conventional RT-PCR was used to subtype the isolated Influenza A viruses. Thereafter, for rapid identification, the multiplex real-time RT-PCR method was developed and applied to identify the conserved regions that aligned with the available primers and probes. Accordingly, a multiplex RT-PCR assay with three groups of primers and probes (MAF and MAR primers and MA probe; InfAF and InfAR primers and InfA probe; and MBF and MBR primers and MB probe) was established to distinguish these viruses in the same reaction. Thus, with this multiplex RT-PCR assay, Influenza B, Influenza A pdm H1N1, and Influenza A H3N2 viruses were accurately detected and differentiated within only 2.5 h. This multiplex RT-PCR assay showed similar analytical sensitivity to the conventional singleplex assay. Further, the phylogenetic analyses of our samples revealed that the characteristics of these viruses were different from those reported previously using samples collected during 2012-2013. In conclusion, we developed a multiplex real-time RT-PCR method for highly efficient and accurate detection and differentiation of Influenza A and B viruses and subtyping Influenza A virus with a substantially reduced test duration for diagnosis.

摘要

快速鉴定引起严重呼吸道疾病的甲型流感病毒及其变体对于及时提供治疗和改善患者预后至关重要。传统上,需要进行两种单独的检测(总检测时间长达 6 小时)来初步区分甲型和乙型流感病毒,然后区分甲型流感病毒的 pdm H1N1 和 H3N2 血清型。在这项研究中,我们开发了一种同时检测甲型和乙型流感病毒并对甲型流感病毒进行亚型鉴定的多重实时 RT-PCR 方法,大大缩短了检测时间。收集了 2011 年至 2015 年间在台湾东部因流感样症状住院和门诊的患者的临床标本,运至花莲慈济医院进行分析。采用常规 RT-PCR 对分离的甲型流感病毒进行亚型鉴定。此后,为了快速鉴定,开发并应用了多重实时 RT-PCR 方法来鉴定与现有引物和探针匹配的保守区域。因此,建立了一种具有三组引物和探针(MAF 和 MAR 引物和 MA 探针;InfAF 和 InfAR 引物和 InfA 探针;以及 MBF 和 MBR 引物和 MB 探针)的多重 RT-PCR 检测方法,用于在同一反应中区分这些病毒。因此,使用这种多重 RT-PCR 检测方法,仅需 2.5 小时即可准确检测和区分乙型流感、甲型流感 pdm H1N1 和甲型流感 H3N2 病毒。该多重 RT-PCR 检测方法与常规单重检测方法具有相似的分析灵敏度。此外,对我们样本的系统发育分析表明,这些病毒的特征与之前使用 2012-2013 年采集的样本报告的特征不同。总之,我们开发了一种高效、准确的多重实时 RT-PCR 方法,用于快速检测和区分甲型和乙型流感病毒,并对甲型流感病毒进行亚型鉴定,大大缩短了诊断所需的检测时间。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1370/10035893/a23fe60da404/pone.0283074.g001.jpg

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