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Avian Influenza Surveillance with FTA Cards: Field Methods Biosafety and Transportation Issues Solved

机译:使用FTA卡进行禽流感监测:现场方法生物安全和运输问题已解决

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摘要

Avian Influenza Viruses (AIVs) infect many mammals, including humans1. These AIVs are diverse in their natural hosts, harboring almost all possible viral subtypes2. Human pandemics of flu originally stem from AIVs3. Many fatal human cases during the H5N1 outbreaks in recent years were reported. Lately, a new AIV related strain swept through the human population, causing the 'swine flu epidemic'4. Although human trading and transportation activity seems to be responsible for the spread of highly pathogenic strains5, dispersal can also partly be attributed to wild birds6, 7. However, the actual reservoir of all AIV strains is wild birds.In reaction to this and in face of severe commercial losses in the poultry industry, large surveillance programs have been implemented globally to collect information on the ecology of AIVs, and to install early warning systems to detect certain highly pathogenic strains8-12. Traditional virological methods require viruses to be intact and cultivated before analysis. This necessitates strict cold chains with deep freezers and heavy biosafety procedures to be in place during transport. Long-term surveillance is therefore usually restricted to a few field stations close to well equipped laboratories. Remote areas cannot be sampled unless logistically cumbersome procedures are implemented. These problems have been recognised13, 14 and the use of alternative storage and transport strategies investigated (alcohols or guanidine)15-17. Recently, Kraus et al.18 introduced a method to collect, store and transport AIV samples, based on a special filter paper. FTA cards19 preserve RNA on a dry storage basis20 and render pathogens inactive upon contact21. This study showed that FTA cards can be used to detect AIV RNA in reverse-transcription PCR and that the resulting cDNA could be sequenced and virus genes and determined.In the study of Kraus et al.18 a laboratory isolate of AIV was used, and samples were handled individually. In the extension presented here, faecal samples from wild birds from the duck trap at the Ottenby Bird Observatory (SE Sweden) were tested directly to illustrate the usefulness of the methods under field conditions. Catching of ducks and sample collection by cloacal swabs is demonstrated. The current protocol includes up-scaling of the work flow from single tube handling to a 96-well design. Although less sensitive than the traditional methods, the method of FTA cards provides an excellent supplement to large surveillance schemes. It allows collection and analysis of samples from anywhere in the world, without the need to maintaining a cool chain or safety regulations with respect to shipping of hazardous reagents, such as alcohol or guanidine.
机译:禽流感病毒(AIV)感染许多哺乳动物,包括人 1 。这些AIV的自然宿主不同,几乎具有所有可能的病毒亚型 2 。人的流感大流行最初源于AIVs 3 。据报道,近年来在H5N1爆发期间有许多致命的人类病例。最近,一种新的与AIV相关的菌株席卷了整个人群,引起了“猪流感流行” 4 。尽管人类的贸易和运输活动似乎是造成高致病性菌株 5 传播的原因,但散布也可以部分归因于野生鸟类 6,7 。然而,所有AIV毒株的实际储存库都是野生鸟类,因此,面对家禽业的严重商业损失,全球范围内已实施大型监视计划以收集有关AIV的生态学信息并安装预警系统来检测某些高致病性菌株 8-12 。传统的病毒学方法要求在分析之前完整并培养病毒。这就要求在运输过程中必须采用带有深层冷冻机的严格冷链和严格的生物安全程序。因此,长期监视通常仅限于装备精良的实验室附近的几个现场站。除非实施后勤繁琐的程序,否则无法采样偏远地区。这些问题已被认识到 13、14 ,并研究了使用替代性储藏和运输策略(酒精或胍) 15-17 。最近,Kraus等人 18 提出了一种基于特殊滤纸的收集,存储和运输AIV样品的方法。 FTA卡 19 在干燥存储的基础上保存RNA 20 ,并在接触 21 时使病原体失活。这项研究表明,FTA卡可以用于逆转录PCR中的AIV RNA检测,并且可以对所得的cDNA进行测序和确定病毒基因。在Kraus等人的研究中 18 使用AIV分离株,并分别处理样品。在此处介绍的扩展中,直接测试了奥滕比鸟类观测所(瑞典东南部)鸭笼中野生鸟类的粪便样本,以说明该方法在野外条件下的有效性。说明了通过泄殖腔拭子捕获鸭子和收集样本。当前的协议包括从单管处理到96孔设计的放大工作流程。尽管不如传统方法敏感,但FTA卡的方法为大型监视方案提供了极好的补充。它允许从世界任何地方收集和分析样品,而无需在运输危险试剂(如酒精或胍)方面保持冷链或安全法规。

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