A simulation study to evaluate contamination during reuse of N95 respirators and effectiveness of interventions to

Daniel F Li1, Heba Alhmidi1, Jacob G Scott2,3

  • 1Research Service, Louis Stokes Cleveland Veterans' Affairs (VA) Medical Center, Cleveland, Ohio.

Abstract

Insights

Contaminated N95 respirators can spread viruses to healthcare workers and patients. Ultraviolet-C (UV-C) light decontamination effectively reduced virus transfer, highlighting its potential to enhance safety during patient care.

Area of Science:

  • Infection Control and Hospital Epidemiology
  • Public Health and Safety
  • Biomedical Engineering

Background:

  • Contaminated N95 respirators pose a risk of pathogen transmission in healthcare settings.
  • Understanding contamination routes is crucial for preventing healthcare-associated infections.

Purpose of the Study:

  • To evaluate contamination potential from used N95 respirators.
  • To compare interventions for reducing contamination risks.

Main Methods:

  • A simulation study using bacteriophage MS2 to contaminate N95 respirators.
  • Healthcare personnel performed standardized patient care simulations with varying techniques and UV-C treatment.
  • Fluorescent lotion was used to track contamination transfer pathways.

Main Results:

  • Suboptimal N95 respirator handling led to frequent virus transfer.
  • Improved handling techniques and glove changes significantly reduced MS2 transfer.
  • Ultraviolet-C (UV-C) light treatment effectively reduced virus transfer in simulations.

Conclusions:

  • Reuse of contaminated N95 respirators can lead to personnel and environmental contamination.
  • UV-C decontamination is a promising technology to mitigate transmission risks.

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