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一种追踪空气传播细菌在建筑环境中传播的方法。

A tracing method of airborne bacteria transmission across built environments.

作者信息

Li Zonggang, Wang Hongning, Zheng Weichao, Li Baoming, Wei Yongxiang, Zeng Jinxin, Lei Changwei

机构信息

College of Water Resources and Civil Engineering, China Agricultural University, Beijing, China.

Key Laboratory of Agricultural Engineering in Structure and Environment, Ministry of Agriculture and Rural Affairs, Beijing, China.

出版信息

Build Environ. 2019 Oct 15;164:106335. doi: 10.1016/j.buildenv.2019.106335. Epub 2019 Aug 9.

Abstract

Disease transmission across built environments has been found to be a serious health risk. Airborne transmission is a vital route of disease infection caused by bacteria and virus. However, tracing methods of airborne bacteria in both lab and field research failed to veritably express the transporting process of microorganism in the air. A new tracing method of airborne bacteria used for airborne transmission was put forward and demonstrated its feasibility by conducting a field evaluation on the basis of genetic modification and bioaerosol technology. A specific gene fragment (pFPV-mCherry fluorescent protein plasmid) was introduced into nonpathogenic as tracer bacteria by high-voltage electroporation. Gel electrophoresis and DNA sequencing proved the success of the synthesis. Genetic stability, effect of aerosolization on the survival rate of tracer bacteria, and the application of the tracer bacteria to the airborne bacteria transmission were examined in both lab and field. Both the introduced plasmid stability rates of tracer in pre-aerosolization and post-aerosolization were above 95% in five test days. Survival rate of tracer at 97.5% ± 1.2% through aerosolization was obtained by an air-atomizer operated at an air pressure of 30 Psi. In the field experiment, the airborne transmission of between poultry houses was proved and emitted was more easily transmitted into self-house than adjacent house due to the ventilation design and weather condition. Our results suggested that the tracing method of airborne bacteria was available for the investigation of airborne microbial transmission across built environments.

摘要

已发现疾病在建筑环境中的传播是严重的健康风险。空气传播是细菌和病毒引起疾病感染的重要途径。然而,实验室和现场研究中空气传播细菌的追踪方法未能真实地表达微生物在空气中的传播过程。提出了一种用于空气传播的空气传播细菌追踪方法,并通过基于基因改造和生物气溶胶技术的现场评估证明了其可行性。通过高压电穿孔将特定基因片段(pFPV-mCherry荧光蛋白质粒)引入非致病性示踪细菌。凝胶电泳和DNA测序证明了合成的成功。在实验室和现场都对示踪细菌的遗传稳定性、雾化对示踪细菌存活率的影响以及示踪细菌在空气传播细菌中的应用进行了研究。在五个测试日中,示踪细菌在雾化前和雾化后的引入质粒稳定率均高于95%。通过在30 Psi气压下运行的空气雾化器,示踪细菌通过雾化的存活率为97.5%±1.2%。在现场实验中,证明了家禽舍之间的空气传播,并且由于通风设计和天气条件,排放的细菌更容易传播到自身禽舍而不是相邻禽舍。我们的结果表明,空气传播细菌的追踪方法可用于调查建筑环境中空气传播微生物的传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c691/7116910/eacb8258d7fc/gr1_lrg.jpg

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