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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.
Objective:
To assess the potential for contamination of personnel, patients, and the environment during use of contaminated N95 respirators and to compare the effectiveness of interventions to reduce contamination.
Design:
Simulation study of patient care interactions using N95 respirators contaminated with a higher and lower inocula of the benign virus bacteriophage MS2.
Methods:
In total, 12 healthcare personnel performed 3 standardized examinations of mannequins including (1) control with suboptimal respirator handling technique, (2) improved technique with glove change after each N95 contact, and (3) control with 1-minute ultraviolet-C light (UV-C) treatment prior to donning. The order of the examinations was randomized within each subject. The frequencies of contamination were compared among groups. Observations and simulations with fluorescent lotion were used to assess routes of transfer leading to contamination.
Results:
With suboptimal respirator handling technique, bacteriophage MS2 was frequently transferred to the participants, mannequin, and environmental surfaces and fomites. Improved technique resulted in significantly reduced transfer of MS2 in the higher inoculum simulations (P < .01), whereas UV-C treatment reduced transfer in both the higher- and lower-inoculum simulations (P < .01). Observations and simulations with fluorescent lotion demonstrated multiple potential routes of transfer to participants, mannequin, and surfaces, including both direct contact with the contaminated respirator and indirect contact via contaminated gloves.
Conclusion:
Reuse of contaminated N95 respirators can result in contamination of personnel and the environment even when correct technique is used. Decontamination technologies, such as UV-C, could reduce the risk for transmission.
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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