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Evaluation of bioaerosol samplers for the detection and quantification of influenza virus from artificial aerosols and influenza virus–infected ferrets

机译:评估生物气溶胶采样器以检测和定量来自人工气溶胶和流感病毒感染的雪貂中的流感病毒

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Background Bioaerosol sampling devices are necessary for the characterization of infectious bioaerosols emitted by naturally‐infected hosts with acute respiratory virus infections. Assessment of these devices under multiple experimental conditions will provide insight for device use. Objectives The primary objective of this study was to assess and compare bioaerosol sampling devices using a) an in vitro, environmentally‐controlled artificial bioaerosol system at a range of different RH conditions and b) an in vivo bioaerosol system of influenza virus‐infected ferrets under controlled environmental conditions. Secondarily, we also sought to examine the impact of NSAIDs on bioaerosol emission in influenza virus‐infected ferrets to address its potential as a determinant of bioaerosol emission. Methods We examined the performance of low and moderate volume bioaerosol samplers for the collection of viral RNA and infectious influenza virus in vitroand in vivo using artificial bioaerosols and the ferret model of influenza virus infection. The following samplers were tested: the polytetrafluoroethylene filter (PTFE filter), the 2‐stage National Institute of Occupational Safety and Health cyclone sampler (NIOSH cyclone sampler) and the 6‐stage viable Andersen impactor (Andersen impactor). Results The PTFE filter and NIOSH cyclone sampler collected similar amounts of viral RNA and infectious virus from artificially‐generated aerosols under a range of relative humidities (RH). Using the ferret model, the PTFE filter, NIOSH cyclone sampler and the Andersen impactor collected up to 3.66 logsub10/subcopies of RNA/L air, 3.84 logsub10/subcopies of RNA/L air and 6.09 logsub10/subcopies of RNA/L air respectively at peak recovery. Infectious virus was recovered from the PTFE filter and NIOSH cyclone samplers on the peak day of viral RNA recovery. Conclusion The PTFE filter and NIOSH cyclone sampler are useful for influenza virus RNA and infectious virus collection and may be considered for clinical and environmental settings.
机译:背景技术生物气溶胶采样设备对于表征由急性呼吸道病毒感染的自然感染宿主释放的传染性生物气溶胶是必不可少的。在多种实验条件下对这些设备进行评估将为设备的使用提供信息。目的这项研究的主要目的是使用以下方法评估和比较生物气溶胶采样设备:a)在各种不同的相对湿度条件下体外,环境控制的人工生物气溶胶系统;以及b)流感病毒感染的白鼬在体内的生物气溶胶系统。受控的环境条件。其次,我们还试图研究非甾体抗炎药对流感病毒感染的雪貂中生物气溶胶排放的影响,以探讨其作为生物气溶胶排放决定因素的潜力。方法我们使用人工生物气雾剂和雪貂流感病毒雪貂模型,研究了中小体积生物气溶胶采样器在体外和体内收集病毒RNA和传染性流感病毒的性能。测试了以下采样器:聚四氟乙烯过滤器(PTFE过滤器),国家职业安全与健康研究所2级旋风除尘器(NIOSH旋风除尘器)和6级可行的安徒生撞击器(安徒生撞击器)。结果PTFE过滤器和NIOSH旋风取样器在一定的相对湿度(RH)下,从人工产生的气溶胶中收集了相似量的病毒RNA和传染性病毒。使用雪貂模型,PTFE过滤器,NIOSH旋风取样器和Andersen撞击器可收集多达3.66 log 10 份RNA / L空气,3.84 log 10 份RNA / L L空气和6.09 log 10 副本的RNA / L空气在峰值恢复时分别。在病毒RNA回收的高峰日,从PTFE过滤器和NIOSH旋风取样器中回收了传染性病毒。结论PTFE过滤器和NIOSH旋风取样器可用于流感病毒RNA和感染性病毒的收集,可考虑用于临床和环境。

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