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Effect of selected sampling media, flow rate, and time on the sampling efficiency of a liquid impinger packed with glass beads for the collection of airborne viruses

机译:所选采样介质,流速和时间对玻璃珠的采样效率的影响,用于收集空气传播病毒

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摘要

The liquid impingers can be used for sampling of viral aerosols, such as COVID-19 virus, influenza, and measles. However, the lowest cutoff diameter of commercially available liquid impingers was about 0.3 mu m, and the physical collection efficiency for nano-bioaerosol is only about 10-20%. Here, we enhanced the impinger's collection efficiency and recovery of viable viral aerosols by using packed glass beads and selected sampling media (1% peptone and lysogeny broth, LB). Single-stranded RNA (ssRNA) MS2 bacteriophage with uranine (as a physical tracer) was used as model viral aerosols. The effects of different sampling flow rates (4, 6, and 12.5 L per minute) and different sampling time (10, 20, and 30 min) on the collection efficiency and recovery of MS2 aerosols were also tested. Collection efficiency and recovery of viable viral aerosols were analyzed as a function of sampling media, flow rate, and sampling time and packed glass beads by using a general linear model. Although the packed glass beads considerably enhanced the collection efficiency of the liquid impinger for MS2 aerosols, the recovery of viable MS2 becomes lower due to the higher pressure drop across the impinger. Using peptone or LB as sampling media, reducing sampling flow rate, and decreasing sampling time was proven to improve the recovery of viable MS2. Conclusively, this study provides some practical methods to improve the collection efficiency of liquid impinger for viral aerosols and preserve their viability.
机译:液体撞击器可用于研究病毒气溶胶,例如Covid-19病毒,流感和麻疹。然而,市售液体撞击器的最低截止直径为约0.3μm,纳米生物溶胶的物理收集效率仅为约10-20%。在这里,我们通过使用填充玻璃珠和选择的取样介质(1%蛋白胨和溶酶体肉汤,LB)来增强植物的收集效率和回收活病毒气溶胶。用铀(作为物理示踪剂)的单链RNA(SSRNA)MS2噬菌体用作模型病毒气溶胶。还测试了不同采样流量速率(4,6和12.5L /分钟)和不同采样时间(10,20和30分钟)对MS2气溶胶的收集效率和恢复的不同采样时间(10,20和30分钟的影响。通过使用一般线性模型,分析了作为采样介质,流速和采样时间和填充玻璃珠的作用的效率和回收活性病毒气溶胶。虽然填充玻璃珠子相当大提高了用于MS2气溶胶的液体浸泡的收集效率,但由于普拉格穿过普拉格的压力下降,可活MS2的回收变低。经过证明,使用蛋白胨或LB作为采样介质,降低采样流速,降低取样时间,以改善可行MS2的恢复。结论,本研究提供了一些实用的方法,以提高液体滴灌的液体滴灌的收集效率,并保持活力。

著录项

  • 来源
    《Aerobiologia》 |2021年第2期|243-252|共10页
  • 作者单位

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan;

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan|Minist Hlth & Welf Taipei Hosp Dept Pediat 127 Su Yuan Rd New Taipei 24213 Taiwan|Natl Yang Ming Univ Sch Med Taipei Taiwan|China Med Univ Coll Publ Hlth Taichung Taiwan|Natl Hlth Res Inst Natl Inst Environm Hlth Sci Miaoli Taiwan|Natl Taiwan Univ Natl Taiwan Univ Hosp Taipei Taiwan;

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan;

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan;

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan;

    Natl Yang Ming Univ Inst Environm & Occupat Hlth Sci 155 Sect 2 Li Nong St Taipei 11221 Taiwan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Bioaerosols; Virus collection efficiency; Viability;

    机译:生物溶胶;病毒收集效率;可行性;
  • 入库时间 2022-08-19 02:15:39

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