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手提箱式诊断:开发一种用于检测新型甲型禽流感(H7N9)病毒的便携式快速检测方法。

Diagnostics-in-a-Suitcase: Development of a portable and rapid assay for the detection of the emerging avian influenza A (H7N9) virus.

作者信息

Abd El Wahed Ahmed, Weidmann Manfred, Hufert Frank T

机构信息

Unit of Infection Models, German Primate Center, Kellnerweg 4, 37077 Goettingen, Germany; Department of Virology, Mansoura University, Algomhoria Street, 35516 Dakahlia, Egypt.

Institute of Aquaculture, University of Stirling, FK9 4LA Stirling, Scotland, UK.

出版信息

J Clin Virol. 2015 Aug;69:16-21. doi: 10.1016/j.jcv.2015.05.004. Epub 2015 May 19.

Abstract

BACKGROUND

In developing countries, equipment necessary for diagnosis is only available in few central laboratories, which are less accessible and of limited capacity to test large numbers of incoming samples. Moreover, the transport conditions of samples are inadequate, therefore leading to unreliable results.

OBJECTIVES

The development of a rapid, inexpensive, and simple test would allow mobile detection of viruses.

STUDY DESIGN

A suitcase laboratory "Diagnostics-in-a-Suitcase" (56cm×45.5cm×26.5cm) containing all reagents and devices necessary for performing a reverse transcription recombinase polymerase amplification (RT-RPA) assay was developed. As an example, two RT-RPA assays were established for the detection of hemagglutinin (H) and neuraminidase (N) genes of the novel avian influenza (H7N9) virus.

RESULTS

The sensitivities of the H7 and the N9 RT-RPA assays were 10 and 100 RNA molecules, respectively. The assays were performed at a single temperature (42°C). The results were obtained within 2-7min. The H7N9 RT-RPA assays did not show a cross-detection either of any other respiratory viruses affecting humans and/or birds or of the human or chicken genomes. All reagents were used, stored, and transported at ambient temperature, that is, cold chain independent. In addition, the Diagnostics-in-a-Suitcase was operated by a solar-powered battery.

CONCLUSIONS

The developed assay protocol and mobile setup performed well. Moreover, it can be easily implemented to perform diagnoses at airports, quarantine stations, or farms for rapid on-site viral nucleic acid detection.

摘要

背景

在发展中国家,诊断所需设备仅在少数中心实验室才有,这些实验室较难到达,且检测大量送检样本的能力有限。此外,样本的运输条件不佳,因此导致结果不可靠。

目的

开发一种快速、廉价且简单的检测方法可实现病毒的移动检测。

研究设计

开发了一个“手提箱实验室”(“Diagnostics-in-a-Suitcase”,56厘米×45.5厘米×26.5厘米),其中包含进行逆转录重组酶聚合酶扩增(RT-RPA)检测所需的所有试剂和设备。例如,建立了两种RT-RPA检测方法用于检测新型禽流感(H7N9)病毒的血凝素(H)和神经氨酸酶(N)基因。

结果

H7和N9 RT-RPA检测的灵敏度分别为10个和100个RNA分子。检测在单一温度(42°C)下进行。在2至7分钟内获得结果。H7N9 RT-RPA检测对任何其他影响人类和/或鸟类的呼吸道病毒以及人类或鸡的基因组均未显示交叉检测。所有试剂均在常温下使用、储存和运输,即无需冷链。此外,手提箱实验室由太阳能电池供电。

结论

所开发的检测方案和移动装置性能良好。此外,它可轻松用于在机场、检疫站或农场进行诊断,以进行快速现场病毒核酸检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c66/7106543/8795caf06559/gr1_lrg.jpg

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