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为何血清学检查还不够:采用新型 qPCR 检测方法进行 parvovirus 风险的策略性评估。

Why serology just is not enough: Strategic parvovirus risk assessment using a novel qPCR assay.

机构信息

Institute of Laboratory Animal Science, Hannover Medical School (MHH), Germany.

Biomedical Diagnostics (BioDoc), Hannover, Germany.

出版信息

Lab Anim. 2022 Aug;56(4):380-395. doi: 10.1177/00236772211062861. Epub 2022 Feb 1.

Abstract

Health monitoring of laboratory rodents not only improves animal health but also enhances the validity of animal experiments. In particular, infections of laboratory animals with murine parvoviruses influence biomedical research data. Despite strict barrier housing, prevalence remains high in animal facilities, leading to increased risk of parvovirus introduction after the import of contaminated mice. Unfortunately, hygienic rederivation can be challenging, since gametes often contain residual virus material. Consequently, the process has to be closely monitored with highly sensitive diagnostic methods to verify parvovirus decontamination of the rederived progeny. However, diagnostic sensitivity of traditional methods is often low and requires testing of large animal cohorts. Therefore, we aimed to develop a powerful quantitative real-time polymerase chain reaction (qPCR) assay for the fast and reliable detection of murine parvoviruses in different sample materials. We validated the assay within an infection experiment and systematically analysed various animal-derived and environmental sample materials. We further developed a strategic risk assessment procedure for parvovirus monitoring after embryo transfer. Our novel qPCR assay reliably detected parvovirus DNA in a broad variety of sample materials, with environmental samples dominating in the acute phase of infection, whereas animal-derived samples were more suitable to detect low virus loads in the chronic phase. Here, the assay served as a highly sensitive screening method for parvovirus contamination in mouse colonies, requiring significantly lower sample sizes than traditional methods like conventional PCR and serology. Thus, the use of our novel qPCR assay substantially improves parvovirus diagnostics, enhancing research validity according to the 6Rs.

摘要

实验动物的健康监测不仅能提高动物健康水平,还能增强动物实验的有效性。特别是,实验动物感染细小病毒会影响生物医学研究数据。尽管采用了严格的隔离饲养,但动物设施中的感染率仍然很高,导致在污染小鼠进口后,细小病毒的引入风险增加。不幸的是,由于配子中常含有残留的病毒物质,因此卫生再繁殖具有一定挑战性。因此,必须使用高度敏感的诊断方法密切监测该过程,以验证再繁殖后代中细小病毒的清除情况。然而,传统方法的诊断灵敏度往往较低,需要对大量动物进行检测。因此,我们旨在开发一种强大的定量实时聚合酶链反应(qPCR)检测方法,用于快速可靠地检测不同样本材料中的鼠细小病毒。我们在感染实验中验证了该检测方法,并系统地分析了各种动物源性和环境样本材料。我们进一步开发了胚胎移植后细小病毒监测的战略风险评估程序。我们的新型 qPCR 检测方法能够可靠地检测多种样本材料中的细小病毒 DNA,其中环境样本在感染的急性期占主导地位,而动物源性样本更适合在慢性期检测低病毒载量。在这里,该检测方法作为一种高度敏感的筛选方法,用于检测小鼠群中的细小病毒污染,所需的样本量明显小于传统方法,如常规 PCR 和血清学。因此,我们新型 qPCR 检测方法的使用极大地提高了细小病毒诊断水平,根据 6Rs 增强了研究的有效性。

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