Advanced Analysis to Distinguish between Physical Decrease and Inactivation of Viable Phages in Aerosol by Quantitating Phage-Specific Particles

Biocontrol Sci. 2018;23(1):7-15. doi: 10.4265/bio.23.7.

Abstract

Recent studies have investigated the efficacy of air-cleaning products against pathogens in the air. A standard method to evaluate the reduction in airborne viruses caused by an air cleaner has been established using a safe bacteriophage instead of pathogenic viruses; the reduction in airborne viruses is determined by counting the number of viable airborne phages by culture, after operating the air cleaner. The reduction in the number of viable airborne phages could be because of "physical decrease" or "inactivation". Therefore, to understand the mechanism of reduction correctly, an analysis is required to distinguish between physical decrease and inactivation. The purpose of this study was to design an analysis to distinguish between the physical decrease and inactivation of viable phi-X174 phages in aerosols. We established a suitable polymerase chain reaction (PCR) system by selecting an appropriate primer-probe set for PCR and validating the sensitivity, linearity, and specificity of the primer-probe set to robustly quantify phi-X174-specific airborne particles. Using this quantitative PCR system and culture assay, we performed a behavior analysis of the phage aerosol in a small chamber (1 m3) at different levels of humidity, as humidity is known to affect the number of viable airborne phages. The results revealed that the reduction in the number of viable airborne phages was caused not only by physical decrease but also by inactivation under particular levels of humidity. Our study could provide an advanced analysis to differentiate between the physical decrease and inactivation of viable airborne phages.

Keywords: Inactivation; Phi-X174 phage; Physical decrease; Quantitative polymerase chain reaction (PCR); Virus aerosol.

MeSH terms

  • Aerosols / analysis*
  • Air Microbiology*
  • Bacteria / virology
  • Bacteriophages*
  • RNA, Viral
  • Real-Time Polymerase Chain Reaction
  • Sensitivity and Specificity
  • Viral Plaque Assay
  • Virion*
  • Virus Replication

Substances

  • Aerosols
  • RNA, Viral