开发和评估用于同时检测 H5、H7 和 H9 亚型禽流感病毒的多重实时 RT-PCR 检测方法

IF 2.2 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS Journal of virological methods Pub Date : 2024-04-24 DOI:10.1016/j.jviromet.2024.114942
Se-Hee An , Na-Yeong Kim , Gyeong-Beom Heo, Yong-Myung Kang, Youn-Jeong Lee, Kwang-Nyeong Lee
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引用次数: 0

摘要

H5、H7 和 H9 是禽流感病毒(AIV)的主要亚型,它们会给家禽业造成经济损失,并引起零星的人畜共患感染。及早发现 AIV 对防止疾病传播至关重要。因此,与鸡蛋接种、RT-PCR 和 HI 试验等其他传统诊断方法相比,通过实时 RT-PCR (rRT-PCR)对 AIV 进行分子诊断和亚型鉴定具有灵敏度高、特异性强和操作方便等优点。用于韩国国家监测计划的 Matrix、H5 和 H7 基因的单重 rRT-PCR 已于 2017 年开发完成;然而,这些方法并非为多重检测而设计,不能完全反映当前流行毒株的序列。本研究开发了多重 H5/7/9 rRT-PCR 检测法,其引物和探针组经过更新或新设计,可同时检测 H5、H7 和 H9 基因。多重 H5/7/9 rRT-PCR 的特异性为 100%,与其他亚型的 AIV 和禽类致病病毒或细菌无交叉反应,检测限为 1-10 EID50/0.1 ml(50%鸡蛋感染剂量)。通过调节引物和探针的浓度来平衡各亚型的反应活性,即使在相对分子比偏差很大的情况下,也能准确检测出三种不同亚型的人工混合感染,分析灵敏度很高。本研究中开发的多重 H5/7/9 rRT-PCR 检测方法具有高特异性、高灵敏度和高稳健性,可用于大规模监测计划的病毒检测和亚型鉴定,与传统的通过不同的单重 rRT-PCR 方法平行或串联检测三种亚型的方法相比,这种方法将大大减少时间、成本、工作量和交叉感染的几率。
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Development and evaluation of a multiplex real-time RT-PCR assay for simultaneous detection of H5, H7, and H9 subtype avian influenza viruses

H5, H7 and H9 are the major subtypes of avian influenza virus (AIV) that cause economic losses in the poultry industry and sporadic zoonotic infection. Early detection of AIV is essential for preventing disease spread. Therefore, molecular diagnosis and subtyping of AIV via real-time RT-PCR (rRT-PCR) is preferred over other classical diagnostic methods, such as egg inoculation, RT-PCR and HI test, due to its high sensitivity, specificity and convenience. The singleplex rRT-PCRs for the Matrix, H5 and H7 gene used for the national surveillance program in Korea have been developed in 2017; however, these methods were not designed for multiplexing, and does not reflect the sequences of currently circulating strains completely. In this study, the multiplex H5/7/9 rRT-PCR assay was developed with sets of primers and probe updated or newly designed to simultaneously detect the H5, H7 and H9 genes. Multiplex H5/7/9 rRT-PCR showed 100% specificity without cross-reactivity with other subtypes of AIVs and avian disease-causing viruses or bacteria, and the limit of detection was 1–10 EID50/0.1 ml (50% egg infectious dose). Artificial mixed infections with the three different subtypes could be detected accurately with high analytical sensitivity even under highly biased relative molecular ratios by balancing the reactivities of each subtype by modifying the concentration of the primers and probes. The multiplex H5/7/9 rRT-PCR assay developed in this study could be a useful tool for large-scale surveillance programs for viral detection as well as subtyping due to its high specificity, sensitivity and robustness in discriminating viruses in mixed infections, and this approach would greatly decrease the time, cost, effort and chance of cross-contamination compared to the conventional method of testing three subtypes by different singleplex rRT-PCR methods in parallel or in series.

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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
209
审稿时长
41 days
期刊介绍: The Journal of Virological Methods focuses on original, high quality research papers that describe novel and comprehensively tested methods which enhance human, animal, plant, bacterial or environmental virology and prions research and discovery. The methods may include, but not limited to, the study of: Viral components and morphology- Virus isolation, propagation and development of viral vectors- Viral pathogenesis, oncogenesis, vaccines and antivirals- Virus replication, host-pathogen interactions and responses- Virus transmission, prevention, control and treatment- Viral metagenomics and virome- Virus ecology, adaption and evolution- Applied virology such as nanotechnology- Viral diagnosis with novelty and comprehensive evaluation. We seek articles, systematic reviews, meta-analyses and laboratory protocols that include comprehensive technical details with statistical confirmations that provide validations against current best practice, international standards or quality assurance programs and which advance knowledge in virology leading to improved medical, veterinary or agricultural practices and management.
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