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Bioaerosol Sampling for Respiratory Viruses in Singapore's Mass Rapid Transit Network.在新加坡的大众快速交通网络中采集呼吸道病毒的生物气溶胶。
Sci Rep. 2018 Nov 30;8(1):17476. doi: 10.1038/s41598-018-35896-1.
2
Influenza Virus Infectivity Is Retained in Aerosols and Droplets Independent of Relative Humidity.流感病毒在气溶胶和飞沫中的感染力不受相对湿度影响。
J Infect Dis. 2018 Jul 24;218(5):739-747. doi: 10.1093/infdis/jiy221.
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Quantification of Influenza Virus RNA in Aerosols in Patient Rooms.病房空气中流感病毒RNA的定量分析
PLoS One. 2016 Feb 5;11(2):e0148669. doi: 10.1371/journal.pone.0148669. eCollection 2016.
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Influenza virus survival in aerosols and estimates of viable virus loss resulting from aerosolization and air-sampling.流感病毒在气溶胶中的存活情况,以及气溶胶化和空气采样导致有活力的病毒损失的估计。
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Viable influenza A virus in airborne particles from human coughs.来自人类咳嗽的空气传播颗粒中的活甲型流感病毒。
J Occup Environ Hyg. 2015;12(2):107-13. doi: 10.1080/15459624.2014.973113.
6
Establishment and clinical applications of a portable system for capturing influenza viruses released through coughing.一种用于捕捉咳嗽时释放的流感病毒的便携式系统的建立及临床应用。
PLoS One. 2014 Aug 1;9(8):e103560. doi: 10.1371/journal.pone.0103560. eCollection 2014.
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Aerosol transmission is an important mode of influenza A virus spread.气溶胶传播是甲型流感病毒传播的重要方式。
Nat Commun. 2013;4:1935. doi: 10.1038/ncomms2922.
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Development and Performance Evaluation of an Exhaled-Breath Bioaerosol Collector for Influenza Virus.用于流感病毒的呼出生物气溶胶收集器的开发与性能评估
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One influenza virus particle packages eight unique viral RNAs as shown by FISH analysis.通过荧光原位杂交分析,一个流感病毒颗粒包装了八个独特的病毒 RNA。
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Environmental factors affecting the transmission of respiratory viruses.影响呼吸道病毒传播的环境因素。
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小学内的甲型流感病毒空气传播。

Airborne Influenza A Virus Exposure in an Elementary School.

机构信息

Programme in Emerging Infectious Diseases, Duke-NUS Medical School, Singapore, Singapore.

Department of Environmental Sciences, University of Toledo, Toledo, Ohio, USA.

出版信息

Sci Rep. 2020 Feb 5;10(1):1859. doi: 10.1038/s41598-020-58588-1.

DOI:10.1038/s41598-020-58588-1
PMID:32024882
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7002614/
Abstract

Influenza contributes significantly to childhood morbidity and mortality. Given the magnitude of the school-aged child population, a sizeable proportion of influenza virus transmission events are expected to occur within school settings. However, influenza virus activity in schools is not well-understood, likely due to our limited ability to accurately monitor for respiratory viruses without disrupting the school environment. In this study, we evaluated the use of a bioaerosol sampling method to noninvasively detect and quantify airborne influenza A virus (IAV) densities in a public elementary school. Air samples were collected from multiple locations in the school, two days per week, throughout an eight-week sampling period during influenza season. Real-time RT-PCR targeting the IAV M gene revealed detectable IAV on five occasions in densities ranging from 2.0 × 10 to 1.9 × 10. No significant differences in IAV densities were related to student presence/absence. The majority of IAV-associated particles were ≤4 μm in diameter, and theoretical calculations indicate infectious thresholds after minutes of exposure. Our study represents the first identification and quantification of airborne influenza virus in an elementary school, and the results suggest that airborne IAV has the potential to circulate in schools during influenza season, in large enough doses known to cause infection.

摘要

流感对儿童发病率和死亡率有重大影响。鉴于学龄儿童人口的规模,预计相当一部分流感病毒传播事件将发生在学校环境中。然而,我们对学校中流感病毒活动的了解并不充分,这可能是由于我们在不干扰学校环境的情况下准确监测呼吸道病毒的能力有限。在这项研究中,我们评估了使用生物气溶胶采样方法非侵入性地检测和量化公立小学空气中流感 A 病毒 (IAV) 的密度。在流感季节的八周采样期间,每周两天从学校的多个地点收集空气样本。针对 IAV M 基因的实时 RT-PCR 显示,在五个时间点检测到 IAV,密度范围为 2.0×10 至 1.9×10。IAV 密度与学生的存在/缺席无关。与 IAV 相关的大多数颗粒的直径≤4 μm,理论计算表明,暴露数分钟后就会达到感染阈值。我们的研究代表了首次在小学中鉴定和量化空气中的流感病毒,结果表明,流感季节期间,空气中的 IAV 有可能在学校中传播,其剂量足以引起感染。