AI Article Synopsis

  • The detection of aerosolized viruses is crucial for monitoring and controlling health and environmental issues.
  • The study developed a method that uses an anion exchange resin to enhance the collection and concentration of negatively charged viruses from bioaerosols using a liquid sampling technique.
  • Results showed that using the resin significantly improved the detection rates of type A and B influenza viruses and the MS2 coliphage compared to traditional sampling methods.

Article Abstract

The detection of aerosolized viruses can serve as an important surveillance and control tool in agriculture, human health, and environmental settings. Here, we adapted an anion exchange resin-based method, initially developed to concentrate negatively charged viruses from water, to liquid impingement-based bioaerosol sampling. In this method, aerosolized viruses are collected in a 20ml liquid sample contained within widely used impingers, BioSamplers (SKC Inc., Eighty Four, PA), and further concentrated via adsorption to an anion exchange resin that is suspended within this liquid. Viral nucleic acids are then extracted from the resin to facilitate molecular analyses through a reduction in the effective sample volume. For this study, various quantities of two negatively charged viruses, type A and type B influenza viruses (FluMist Quadrivalent vaccine) and the male-specific (F+) RNA coliphage MS2 (MS2), were nebulized into a custom-built bioaerosolization chamber, and sampled using BioSamplers with and without anion exchange resin. Compared to direct testing of the BioSampler liquid, detection was improved by 6.77× and 3.33× for type A and type B influenza viruses, respectively, by using the anion exchange resin. For MS2, the anion exchange resin method allowed for an average improvement in detection of 8.26×.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7113747PMC
http://dx.doi.org/10.1016/j.jviromet.2017.04.004DOI Listing

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