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低致病性禽流感病毒在商业家禽养殖场暴发期间通过风传播到环境中

Wind-Mediated Spread of Low-Pathogenic Avian Influenza Virus into the Environment during Outbreaks at Commercial Poultry Farms.

作者信息

Jonges Marcel, van Leuken Jeroen, Wouters Inge, Koch Guus, Meijer Adam, Koopmans Marion

机构信息

Centre for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands; Department of Viroscience, Erasmus MC, Rotterdam, The Netherlands.

Centre for Infectious Disease Control, National Institute for Public Health and the Environment, Bilthoven, The Netherlands; Institute for Risk Assessment Sciences, Faculty of Veterinary Sciences, Utrecht University, Utrecht, The Netherlands.

出版信息

PLoS One. 2015 May 6;10(5):e0125401. doi: 10.1371/journal.pone.0125401. eCollection 2015.

Abstract

Avian influenza virus-infected poultry can release a large amount of virus-contaminated droppings that serve as sources of infection for susceptible birds. Much research so far has focused on virus spread within flocks. However, as fecal material or manure is a major constituent of airborne poultry dust, virus-contaminated particulate matter from infected flocks may be dispersed into the environment. We collected samples of suspended particulate matter, or the inhalable dust fraction, inside, upwind and downwind of buildings holding poultry infected with low-pathogenic avian influenza virus, and tested them for the presence of endotoxins and influenza virus to characterize the potential impact of airborne influenza virus transmission during outbreaks at commercial poultry farms. Influenza viruses were detected by RT-PCR in filter-rinse fluids collected up to 60 meters downwind from the barns, but virus isolation did not yield any isolates. Viral loads in the air samples were low and beyond the limit of RT-PCR quantification except for one in-barn measurement showing a virus concentration of 8.48 x 10(4) genome copies/m(3). Air samples taken outside poultry barns had endotoxin concentrations of ~50 EU/m(3) that declined with increasing distance from the barn. Atmospheric dispersion modeling of particulate matter, using location-specific meteorological data for the sampling days, demonstrated a positive correlation between endotoxin measurements and modeled particulate matter concentrations, with an R(2) varying from 0.59 to 0.88. Our data suggest that areas at high risk for human or animal exposure to airborne influenza viruses can be modeled during an outbreak to allow directed interventions following targeted surveillance.

摘要

感染禽流感病毒的家禽会排出大量被病毒污染的粪便,这些粪便成为易感禽类的感染源。迄今为止,许多研究都集中在病毒在禽群内的传播。然而,由于粪便或粪便是空气中家禽灰尘的主要成分,受感染禽群中被病毒污染的颗粒物可能会扩散到环境中。我们采集了感染低致病性禽流感病毒的家禽饲养场建筑物内部、上风处和下风处的悬浮颗粒物样本(即可吸入粉尘部分),并检测其中内毒素和流感病毒的存在情况,以确定商业家禽养殖场疫情爆发期间空气传播流感病毒的潜在影响。通过逆转录聚合酶链反应(RT-PCR)在距离禽舍下风处60米范围内采集的滤器冲洗液中检测到了流感病毒,但病毒分离未获得任何毒株。除了一次禽舍内测量显示病毒浓度为8.48×10⁴基因组拷贝/立方米外,空气样本中的病毒载量很低,超出了RT-PCR定量检测的范围。家禽舍外采集的空气样本内毒素浓度约为50 EU/立方米,且随着与禽舍距离的增加而下降。利用采样日的特定地点气象数据对颗粒物进行大气扩散模型分析,结果表明内毒素测量值与模拟颗粒物浓度之间呈正相关,决定系数(R²)在0.59至0.88之间变化。我们的数据表明,在疫情爆发期间,可以对人类或动物暴露于空气传播流感病毒的高风险区域进行建模,以便在有针对性的监测之后进行定向干预。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3555/4422664/281078e55acd/pone.0125401.g001.jpg

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