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Adenovirus behavior in air handling unit fiberglass filters

机译:空气处理单元玻璃纤维过滤器中的腺病毒行为

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Viral aerosols can lead to respiratory viral infections with high infectivity. About 90% of people's time is spent in closed environments. A few studies have pointed out that the ventilation systems in air handling units (AHUs) that treat and transmit a new synthetic clean and conditioned environment can also spread and transport viral particles in buildings. The aim of this work is to study the characterization of adenovirus, a DNA non-enveloped respiratory virus, on the F7 fiberglass filter used in AHUs. In this study, an experimental setup simulating an AHU was used. The SYBR (R) QPCR, Electrical Low-Pressure Impactor (ELPI) and Scanning Mobility Particle Sizer (SMPS) were used to detect, measure and characterize the aerosolized adenovirus solution. The characterization results showed that the nebulized adenovirus could be aerosolized in different forms associated or not with cell debris and proteins. The quantification and level of infectivity of adenovirus demonstrated that viruses passed through filters and remained infectious up- and downstream of the system during the 25 min of aerosolization. This study showed that AHUs should be considered an indoor source of viral contamination.
机译:病毒气溶胶可以导致具有高感染性的呼吸道病毒感染。大约90%的人在封闭的环境中度过。一些研究指出,空气处理单元(Ahus)的通风系统处理和传递新的合成清洁和条件环境也可以在建筑物中传播和运输病毒颗粒。这项工作的目的是研究腺病毒,DNA无封闭呼吸道病毒,在AHU中使用的F7玻璃纤维过滤器的表征。在该研究中,使用了模拟AHU的实验设置。 SYBR(R)QPCR,电力低压撞击器(ELPI)和扫描迁移率粒子Sizer(SMPs)用于检测,测量和表征雾化腺病毒溶液。表征结果表明,雾化的腺病毒可以以与细胞碎片和蛋白质相关的不同形式雾化。腺病毒感染性的量化和水平证明,在25分钟的雾化期间,病毒通过过滤器并留下的传染性和下游。这项研究表明,Ahus应该被认为是一种室内病毒污染的来源。

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