首页> 外文期刊>Journal of applied microbiology >Design, construction and validation of a nose-only inhalation exposure system to measure infectivity of filtered bioaerosols in mice.
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Design, construction and validation of a nose-only inhalation exposure system to measure infectivity of filtered bioaerosols in mice.

机译:仅鼻吸入暴露系统的设计,构建和验证,用于测量小鼠中经过滤的生物气溶胶的感染性。

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Aims: The aim of this project was to validate a method to deliver a reproducible, selected dose of infective bioaerosol through a respiratory protective technology to an animal that exhibits a proportional clinical response. Methods and Results: The Controlled Aerosol Test System (CATS) was designed to generate and condition a viable infective aerosol, pass it through a treatment technology and thence to the breathing zone of a mouse constrained in a Nose-Only Inhalation Exposure System (NOIES). A scanning mobility particle sizer and impingers at sampling ports were used to show that viability is preserved and particle size distribution (PSD) is acceptably uniform throughout the open CATS, including the 12 ports of the NOIES, and that a particle filter used caused the expected attenuation of particle counts. Conclusions: Controlled Aerosol Test System delivers uniformly to mice constrained in the NOIES a selectable dose of viral bioaerosol whose PSD and viable counts remain consistent for an hour. Significance and Impact of the Study: This study's characterization of CATS provides a new test system in which a susceptible small-animal model can be used as the detector in a quantitative method to evaluate the ability of respiratory protective technologies to attenuate the infectivity of an inspired pathogenic aerosol. This provides a major improvement over the use of viable bioaerosol collectors (e.g. impactors and impingers), which provide data that are difficult to relate to the attenuation of pathogenicity.
机译:目的:该项目的目的是验证一种方法,该方法通过呼吸防护技术向表现出一定比例临床反应的动物提供可重现的,选定剂量的感染性生物气溶胶。方法和结果:受控气雾剂测试系统(CATS)旨在产生和调节可行的感染性气雾剂,使其通过治疗技术,然后进入仅限于鼻子吸入暴露系统(NOIES)的小鼠呼吸区。 。使用扫描迁移率粒度仪和采样口处的撞击器来显示,在整个开放式CATS(包括NOIES的12个端口)中,都保留了生存力,并且粒度分布(PSD)可以均匀地接受,并且所使用的粒子过滤器导致了预期的结果。颗粒数量减少。结论:受控气雾剂测试系统向受NOIES约束的小鼠均匀地提供了可选择剂量的病毒生物气溶胶,其PSD和存活计数在一个小时内保持一致。该研究的意义和影响:该研究对CATS的表征提供了一种新的测试系统,在该系统中,可以将敏感的小动物模型用作定量方法中的检测器,以评估呼吸防护技术减弱被感染者的传染性的能力。致病性气溶胶。这提供了对使用可行的生物气溶胶收集器(例如,撞击器和撞击器)的重大改进,这些收集器提供了难以与致病性衰减相关的数据。

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