开发一种同时检测 mpox 病毒和正痘病毒感染的多重实时 PCR 检测方法。

IF 2.2 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS Journal of virological methods Pub Date : 2024-05-22 DOI:10.1016/j.jviromet.2024.114957
Zhangling Fan , Yu Xie , Baoying Huang , Fei Zhao , Yamei Hu , Yu Huang , Shan Mei , Liang Wei , Liming Wang , Lingwa Wang , Zhao Gao , Bin Ai , Jugao Fang , Chen Liang , Fengwen Xu , Wenjie Tan , Fei Guo
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引用次数: 0

摘要

自 2022 年 5 月以来,猴痘在多国爆发,引起了全世界的高度关注。早期检测猴痘病毒感染被认为是预防猴痘传播的有效方法。目前报道的痘病毒特异性检测方法都是基于痘病毒和其他正痘病毒之间的 SNPs。因此,我们针对天花病毒的特异性序列(N3R 和 B18Rplus)开发了一种基于实时 PCR 的天花检测方法。我们还优化了针对高度保守的 E9L 和 D6R 基因的正痘病毒检测系统。mpox 和正痘病毒实时 PCR 检测具有很高的灵敏度(1 个拷贝/反应)和特异性。使用 mpox 检测系统可以检测到 mpox 病毒 DNA 和来自 mpox 患者的临床样本。此外,我们还建立了一个多重实时 PCR 检测系统,可同时有效地检测痘病毒和正痘病毒感染。
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Development of a multiplex real-time PCR assay for the simultaneous detection of mpox virus and orthopoxvirus infections

Since May 2022, the multi-country outbreak of monkeypox (mpox) has raised a great concern worldwide. Early detection of mpox virus infection is recognized as an efficient way to prevent mpox transmission. Mpox specific detection methods reported up to now are based on the SNPs among mpox virus and other orthopoxviruses. We have therefore developed a real-time PCR based mpox detection method targeting mpox virus specific sequences (N3R and B18Rplus). We have also optimized an orthopoxvirus detection system which targets the highly conserved E9L and D6R genes. The mpox and orthopoxvirus real-time PCR assays have a high sensitivity (1 copy/reaction) and specificity. Mpox viral DNA and clinical samples from mpox patients are detected with the mpox detection system. Furthermore, we have established a multiplex real-time PCR detection system allowing simultaneous and efficient detection of mpox and orthopoxvirus infections.

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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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