Minimal Influenza Virus Transmission From Touching Contaminated Floors and Metal Door Levers: Laboratory Study II

Yuxuan Fan1,2,3, Hidekazu Nishimura1, Masanori Katsumi1

  • 1Virus Research Center, Clinical Research Division, Sendai Medical Center, National Hospital Organization, Sendai, Japan.

PubMed

Insights

Contact transmission of influenza via dried fomites like floors and door levers is minimal. This study found viable influenza viruses rarely transferred to fingertips from contaminated surfaces, even under high viral loads.

Area of Science:

  • Virology
  • Infectious Disease Transmission
  • Public Health

Background:

  • Influenza transmission is often attributed to airborne droplets and contaminated surfaces (fomites).
  • Quantitative evidence for fomite-mediated influenza transmission risk remains limited.
  • Previous research indicated minimal transmission risk from contaminated face masks.

Purpose of the Study:

  • To experimentally evaluate the likelihood of influenza transmission from dried fomites.
  • To assess transmission risk under three specific contamination scenarios.
  • To provide quantitative data on fomite-based influenza spread.

Main Methods:

  • Simulated influenza virus contamination of fomites (floors, tables, door levers) via artificial coughs and direct hand contact.
  • Collection of potential virus transfer from fomites to fingertips using a rinsing medium.
  • Quantification of viable influenza viruses (plaque-forming assay) and viral genes (real-time quantitative PCR) in the rinsing medium.

Main Results:

  • Viable influenza viruses were rarely detected on fingertips after contact with contaminated fomites.
  • Viral transfer was minimal even when fomite contamination levels significantly exceeded real-life scenarios.
  • Both plaque-forming assays and PCR confirmed low levels of viral presence.

Conclusions:

  • The risk of influenza transmission through contact with dried fomites is negligible under the studied conditions.
  • Findings suggest fomite contact plays a minimal role in influenza spread compared to other routes.
  • This research contributes quantitative data to understanding influenza transmission dynamics.