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快速便捷的狂犬病诊断分子确认工具的开发。

Development of molecular confirmation tools for swift and easy rabies diagnostics.

机构信息

Institute of Diagnostic Virology, Friedrich-Loeffler-Institut, Südufer 10, D-17493, Greifswald-Insel Riems, Germany.

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Südufer 10, D-17493, Greifswald-Insel Riems, Germany.

出版信息

Virol J. 2017 Sep 22;14(1):184. doi: 10.1186/s12985-017-0853-y.

Abstract

BACKGROUND

As rabies still represents a major public threat with tens of thousands of deaths per year, particularly in developing countries, adequate surveillance based on rapid and reliable rabies diagnosis for both humans and animals is essential. Rabies diagnosis relies on highly sensitive and specific laboratory tests for detection of viral antigens. Among those tests, at present the immunofluorescence antibody test is the "gold standard test" for rabies diagnosis, followed by virus isolation in either mice or cell culture. Because of the advantages of molecular assays in terms of sensitivity and applicability their approval as confirmatory diagnostic test by international organizations (OIE, WHO) is envisaged. Therefore, the objective was to develop and validate novel molecular assays and RNA extraction methods for rabies that reduce the turnaround time but remain highly sensitive and specific.

METHODS

Here, novel assays, i.e. HighSpeed RT-qPCR and isothermal recombinase polymerase amplification (RPA) were designed and tested. Furthermore, three magnetic bead-based rapid extraction methods for manual or automated extraction were validated and combined with the new downstream assays.

RESULTS

While the conventional column based RNA extraction method showed the highest intra-run variations, all magnetic bead-based rapid extraction methods delivered nearly comparable sensitivity and efficiency of RNA recovery. All newly developed molecular tests were able to detect different rabies virus strains in a markedly reduced timeframe in comparison to the standard diagnostic assays. The observed detection limit for the HighSpeed RT-qPCR was 10 genome copies per reaction, and 1000 genome copies per reaction for the RPA assay.

CONCLUSION

Magnetic bead-based rapid RNA extraction methods are highly sensitive and show a high level of reproducibility and therefore, are particularly suitable for molecular diagnostic assays including rabies. In addition, with a detection limit of 10 genome copies per reaction, the HighSpeed RT-qPCR is suitable for rapid ante mortem rabies diagnosis in humans as well as confirmatory test in integrated bite management and subsequent post-exposure prophylaxis.

摘要

背景

由于狂犬病每年仍导致数万人死亡,尤其是在发展中国家,因此对人类和动物的狂犬病进行快速可靠的诊断,开展充分的监测十分必要。狂犬病诊断依赖于对病毒抗原的高灵敏度和特异性的实验室检测。在这些检测中,目前免疫荧光抗体检测是狂犬病诊断的“金标准检测”,其次是在小鼠或细胞培养中进行病毒分离。由于分子检测在灵敏度和适用性方面的优势,国际组织(OIE、WHO)预计将批准其作为确认诊断检测。因此,本研究旨在开发和验证新型的狂犬病分子检测和 RNA 提取方法,以缩短周转时间,但仍保持高灵敏度和特异性。

方法

本研究设计和测试了新型检测方法,即 HighSpeed RT-qPCR 和等温重组酶聚合酶扩增(RPA)。此外,还验证了三种基于磁珠的快速提取方法,用于手动或自动化提取,并与新的下游检测方法相结合。

结果

虽然基于柱的常规 RNA 提取方法显示出最高的内运行变异性,但所有基于磁珠的快速提取方法在 RNA 回收的灵敏度和效率方面几乎相当。与标准诊断检测相比,所有新开发的分子检测都能够显著缩短检测时间,检测不同的狂犬病病毒株。HighSpeed RT-qPCR 的观察检测限为每个反应 10 个基因组拷贝,RPA 检测的检测限为每个反应 1000 个基因组拷贝。

结论

基于磁珠的快速 RNA 提取方法具有很高的灵敏度,显示出很高的重现性水平,因此特别适合包括狂犬病在内的分子诊断检测。此外,HighSpeed RT-qPCR 的检测限为每个反应 10 个基因组拷贝,因此非常适合人类快速生前狂犬病诊断,以及在综合咬伤管理和随后的暴露后预防中进行确认性检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1959/5610444/ad7668202932/12985_2017_853_Fig1_HTML.jpg

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