基于 PCR 检测的不同呼吸道病毒的分析前特性:采样装置和样品稳定溶液的比较分析

IF 4.5 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS
Melina Hardt , Franziska Kaiser , Thorsten Voss , Uwe Oelmüller , Kurt Zatloukal
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引用次数: 0

摘要

COVID-19 大流行衰退后,不同呼吸道病毒的同时流行导致了症状的广泛重叠,给卫生系统带来了挑战。这就增加了对多种病毒诊断检测的需求,而要想获得有效的诊断结果,就需要合适的分析前工作流程解决方案。在这种情况下,我们对四种市售的运输拭子系统和唾液收集装置进行了研究,探讨了标本储存时间和温度对甲型/乙型流感、乙型/丙型 RSV、SARS-CoV-2 和腺病毒的 RNA/DNA 拷贝数稳定性的影响。在 RT 或 37°C 温度下保存长达 96 小时后,呼吸道病毒在唾液收集装置中比在运输拭子系统中更稳定。PreAnalytiX 公司的唾液收集装置可灭活所有包膜病毒的感染性。Norgen 唾液收集装置可完全灭活甲型/乙型流感病毒,而甲型/乙型 RSV 病毒则被部分灭活。非包膜腺病毒在两种唾液收集装置中的灭活率均为 10E+4。所有呼吸道病毒在运输拭子系统中仍具有传染性。对两种可能的运输介质添加剂进行了测试,结果表明,这两种添加剂可灭活或大大降低被测包膜病毒的病毒复制,但对无包膜腺病毒没有影响。最后,通过在运输拭子系统中同时加入所有包膜病毒,成功测试了涉及直接扩增方法的多目标检测程序的实施情况。这种快速、可重复的设置为今后实施多病毒检测策略提供了宝贵的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pre-analytical properties of different respiratory viruses for PCR-based detection: Comparative analysis of sampling devices and sample stabilization solutions

After the decline of the COVID-19 pandemic, health systems were challenged by the simultaneous prevalence of different respiratory viruses causing a wide overlap in symptoms. This increased the demand for multi-virus diagnostic tests which require suitable pre-analytical workflow solutions in order to receive valid diagnostic results. In this context, the effects of specimen storage duration and temperature on the RNA/DNA copy number stability of influenza A/B, RSV A/B, SARS-CoV-2 and adenovirus were examined for four commercially available transport swab systems and saliva collection devices. The respiratory viruses were more stable in the saliva collection devices than in the transport swab systems when stored at RT or 37 °C for up to 96 h. Moreover, no differences between viral nucleic acid stability of enveloped and non-enveloped viruses were observed. The infectivity of all enveloped viruses could be inactivated by the saliva collection device from PreAnalytiX. The Norgen saliva device completely inactivated influenza A/B, while RSV A/B were partially inactivated. The non-enveloped adenovirus was inactivated by a reduction factor of 10E+ 4 in both saliva collection devices. All respiratory viruses remained infectious in the transport swab systems. Two possible transport medium additives were tested which inactivated or strongly reduced viral replication of tested enveloped viruses but had no effect on the non-enveloped adenovirus. Finally the implementation of multi-target detection procedures involving a direct amplification approach was successfully tested by spike-in of all enveloped viruses simultaneously into transport swab systems. This fast and reproducible setup presents a valuable solution for future implementations in multi-virus testing strategies.

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来源期刊
New biotechnology
New biotechnology 生物-生化研究方法
CiteScore
11.40
自引率
1.90%
发文量
77
审稿时长
1 months
期刊介绍: New Biotechnology is the official journal of the European Federation of Biotechnology (EFB) and is published bimonthly. It covers both the science of biotechnology and its surrounding political, business and financial milieu. The journal publishes peer-reviewed basic research papers, authoritative reviews, feature articles and opinions in all areas of biotechnology. It reflects the full diversity of current biotechnology science, particularly those advances in research and practice that open opportunities for exploitation of knowledge, commercially or otherwise, together with news, discussion and comment on broader issues of general interest and concern. The outlook is fully international. The scope of the journal includes the research, industrial and commercial aspects of biotechnology, in areas such as: Healthcare and Pharmaceuticals; Food and Agriculture; Biofuels; Genetic Engineering and Molecular Biology; Genomics and Synthetic Biology; Nanotechnology; Environment and Biodiversity; Biocatalysis; Bioremediation; Process engineering.
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