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野生鸟类中禽流感病毒的快速诊断:现场使用便携式逆转录实时聚合酶链反应和冻干试剂

Rapid diagnosis of avian influenza virus in wild birds: use of a portable rRT-PCR and freeze-dried reagents in the field.

作者信息

Takekawa John Y, Hill Nichola J, Schultz Annie K, Iverson Samuel A, Cardona Carol J, Boyce Walter M, Dudley Joseph P

机构信息

USGS Western Ecological Research Center, USA.

出版信息

J Vis Exp. 2011 Aug 2(54):2829. doi: 10.3791/2829.

Abstract

Wild birds have been implicated in the spread of highly pathogenic avian influenza (HPAI) of the H5N1 subtype, prompting surveillance along migratory flyways. Sampling of wild birds for avian influenza virus (AIV) is often conducted in remote regions, but results are often delayed because of the need to transport samples to a laboratory equipped for molecular testing. Real-time reverse transcriptase polymerase chain reaction (rRT-PCR) is a molecular technique that offers one of the most accurate and sensitive methods for diagnosis of AIV. The previously strict lab protocols needed for rRT-PCR are now being adapted for the field. Development of freeze-dried (lyophilized) reagents that do not require cold chain, with sensitivity at the level of wet reagents has brought on-site remote testing to a practical goal. Here we present a method for the rapid diagnosis of AIV in wild birds using an rRT-PCR unit (Ruggedized Advanced Pathogen Identification Device or RAPID, Idaho Technologies, Salt Lake City, UT) that employs lyophilized reagents (Influenza A Target 1 Taqman; ASAY-ASY-0109, Idaho Technologies). The reagents contain all of the necessary components for testing at appropriate concentrations in a single tube: primers, probes, enzymes, buffers and internal positive controls, eliminating errors associated with improper storage or handling of wet reagents. The portable unit performs a screen for Influenza A by targeting the matrix gene and yields results in 2-3 hours. Genetic subtyping is also possible with H5 and H7 primer sets that target the hemagglutinin gene. The system is suitable for use on cloacal and oropharyngeal samples collected from wild birds, as demonstrated here on the migratory shorebird species, the western sandpiper (Calidrus mauri) captured in Northern California. Animal handling followed protocols approved by the Animal Care and Use Committee of the U.S. Geological Survey Western Ecological Research Center and permits of the U.S. Geological Survey Bird Banding Laboratory. The primary advantage of this technique is to expedite diagnosis of wild birds, increasing the chances of containing an outbreak in a remote location. On-site diagnosis would also prove useful for identifying and studying infected individuals in wild populations. The opportunity to collect information on host biology (immunological and physiological response to infection) and spatial ecology (migratory performance of infected birds) will provide insights into the extent to which wild birds can act as vectors for AIV over long distances.

摘要

野生鸟类被认为与H5N1亚型高致病性禽流感(HPAI)的传播有关,这促使人们在候鸟迁徙路线上开展监测工作。对野生鸟类进行禽流感病毒(AIV)采样通常在偏远地区进行,但由于需要将样本运送到配备分子检测设备的实验室,结果往往会延迟。实时逆转录聚合酶链反应(rRT-PCR)是一种分子技术,为AIV诊断提供了最准确、最灵敏的方法之一。以前rRT-PCR所需的严格实验室规程现在正适用于野外。开发出的冻干(冻干)试剂不需要冷链,其灵敏度与湿试剂相当,这使得现场远程检测成为一个切实可行的目标。在此,我们介绍一种使用rRT-PCR装置(坚固型高级病原体识别设备或RAPID,爱达荷技术公司,盐湖城,犹他州)对野生鸟类中的AIV进行快速诊断的方法,该装置采用冻干试剂(甲型流感靶标1 Taqman;ASAY-ASY-0109,爱达荷技术公司)。这些试剂在单个试管中含有以适当浓度进行检测所需的所有必要成分:引物、探针、酶、缓冲液和内部阳性对照,消除了与湿试剂储存或处理不当相关的误差。该便携式装置通过靶向基质基因对甲型流感进行筛查,并在2-3小时内得出结果。使用针对血凝素基因的H5和H7引物组也可以进行基因亚型分析。该系统适用于对从野生鸟类采集的泄殖腔和口咽样本进行检测,如此处所示,对在加利福尼亚北部捕获的迁徙滨鸟物种西部鹬(Calidrus mauri)进行检测。动物处理遵循美国地质调查局西部生态研究中心动物护理和使用委员会批准的规程以及美国地质调查局鸟类环志实验室的许可。这项技术的主要优势在于加快对野生鸟类的诊断,增加在偏远地区控制疫情爆发的机会。现场诊断对于识别和研究野生种群中的感染个体也将证明是有用的。收集有关宿主生物学(对感染的免疫和生理反应)和空间生态学(感染鸟类的迁徙表现)信息的机会,将有助于深入了解野生鸟类在多大程度上能够作为AIV的远距离传播媒介。

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