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猪繁殖与呼吸综合征病毒(PRRSV)雾化与复苏系统的设计与测试:理论与工程考量

Designing and Testing of a System for Aerosolization and Recovery of Viable Porcine Reproductive and Respiratory Syndrome Virus (PRRSV): Theoretical and Engineering Considerations.

作者信息

Li Peiyang, Koziel Jacek A, Zimmerman Jeffrey J, Hoff Steven J, Zhang Jianqiang, Cheng Ting-Yu, Yim-Im Wannarat, Lee Myeongseong, Chen Baitong, Jenks William S

机构信息

Department of Agricultural and Biosystems Engineering, Iowa State University, Ames, IA, United States.

Department of Veterinary Diagnostic and Production Animal Medicine, Iowa State University, Ames, IA, United States.

出版信息

Front Bioeng Biotechnol. 2021 May 10;9:659609. doi: 10.3389/fbioe.2021.659609. eCollection 2021.

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) infections cause significant economic losses to swine producers every year. Aerosols containing infectious PRRSV are an important route of transmission, and proper treatment of air could mitigate the airborne spread of the virus within and between barns. Previous bioaerosol studies focused on the microbiology of PRRSV aerosols; thus, the current study addressed the engineering aspects of virus aerosolization and collection. Specific objectives were to (1) build and test a virus aerosolization system, (2) achieve a uniform and repeatable aerosol generation and collection throughout all replicates, (3) identify and minimize sources of variation, and (4) verify that the collection system (impingers) performed similarly. The system for virus aerosolization was built and tested (Obj. 1). The uniform airflow distribution was confirmed using a physical tracer (<12% relative standard deviation) for all treatments and sound engineering control of flow rates (Obj. 2). Theoretical uncertainty analyses and mass balance calculations showed <3% loss of air mass flow rate between the inlet and outlet (Obj. 3). A comparison of TCID values among impinger fluids showed no statistical difference between any two of the three trials (-value = 0.148, 0.357, 0.846) (Obj. 4). These results showed that the readiness of the system for research on virus aerosolization and treatment (e.g., by ultraviolet light), as well as its potential use for research on other types of airborne pathogens and their mitigation on a laboratory scale.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)感染每年给养猪生产者造成重大经济损失。含有传染性PRRSV的气溶胶是重要的传播途径,对空气进行适当处理可减轻病毒在畜舍内及畜舍间的空气传播。以往的生物气溶胶研究主要集中在PRRSV气溶胶的微生物学方面;因此,本研究探讨了病毒雾化和收集的工程学问题。具体目标是:(1)构建并测试病毒雾化系统;(2)在所有重复实验中实现均匀且可重复的气溶胶生成和收集;(3)识别并最小化变异来源;(4)验证收集系统(冲击式采样器)的性能是否相似。构建并测试了病毒雾化系统(目标1)。使用物理示踪剂确认了所有处理的气流分布均匀(相对标准偏差<12%),并对流速进行了合理的工程控制(目标2)。理论不确定性分析和质量平衡计算表明,进、出口空气质量流量损失<3%(目标3)。冲击式采样器液体中TCID值的比较表明,三次试验中任意两次之间均无统计学差异(P值=0.148、0.357、0.846)(目标4)。这些结果表明,该系统已准备好用于病毒雾化和处理(如通过紫外线)研究,以及在实验室规模上用于其他类型空气传播病原体及其缓解措施的研究。

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