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Environmental Conditions Affect Exhalation of H3N2 Seasonal and Variant Influenza Viruses and Respiratory Droplet Transmission in Ferrets

机译:环境条件影响H3N2季节性和变异流感病毒的呼气和雪貂的呼吸道飞沫传播

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摘要

The seasonality of influenza virus infections in temperate climates and the role of environmental conditions like temperature and humidity in the transmission of influenza virus through the air are not well understood. Using ferrets housed at four different environmental conditions, we evaluated the respiratory droplet transmission of two influenza viruses (a seasonal H3N2 virus and an H3N2 variant virus, the etiologic virus of a swine to human summertime infection) and concurrently characterized the aerosol shedding profiles of infected animals. Comparisons were made among the different temperature and humidity conditions and between the two viruses to determine if the H3N2 variant virus exhibited enhanced capabilities that may have contributed to the infections occurring in the summer. We report here that although increased levels of H3N2 variant virus were found in ferret nasal wash and exhaled aerosol samples compared to the seasonal H3N2 virus, enhanced respiratory droplet transmission was not observed under any of the environmental settings. However, overall environmental conditions were shown to modulate the frequency of influenza virus transmission through the air. Transmission occurred most frequently at 23°C/30%RH, while the levels of infectious virus in aerosols exhaled by infected ferrets agree with these results. Improving our understanding of how environmental conditions affect influenza virus infectivity and transmission may reveal ways to better protect the public against influenza virus infections.
机译:在温带气候中流感病毒感染的季节性以及温度和湿度等环境条件在通过空气传播流感病毒中的作用尚不清楚。使用在四种不同环境条件下饲养的雪貂,我们评估了两种流感病毒(季节性H3N2病毒和H3N2变异病毒,猪到人的夏季感染的病原性病毒)的呼吸滴传播,并同时表征了被感染的气溶胶脱落特征动物。在不同的温度和湿度条件下以及两种病毒之间进行了比较,以确定H3N2变体病毒是否表现出增强的功能,这可能是夏季感染的原因。我们在此报告,尽管与季节性H3N2病毒相比,在雪貂鼻洗和呼出的气溶胶样品中发现了H3N2变异病毒的水平升高,但在任何环境下均未观察到呼吸道飞沫传播的增强。但是,已表明总体环境条件可以调节流感病毒通过空气传播的频率。传播最常见于23°C / 30%RH,而受感染的雪貂呼出的气溶胶中的传染性病毒水平与这些结果相符。增进我们对环境条件如何影响流感病毒感染性和传播的理解,可能会揭示出更好地保护公众免受流感病毒感染的方法。

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