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Updated: Feb 25, 2026

Treating Surfaces with a Cold Atmospheric Pressure Plasma using the COST-Jet
Published on: November 2, 2020
Decontamination of Hospital Surfaces With Multijet Cold Plasma: A Method to Enhance Infection Prevention and Control?
Orla J Cahill1, Tânia Claro2, Attilio A Cafolla3
11School of Electronic Engineering and National Centre for Plasma Science Technology,Dublin City University,Dublin,Ireland.
A novel multijet cold plasma system effectively reduced common hospital-acquired bacteria on stainless steel and mattress surfaces. This innovative decontamination method shows promise for enhancing hospital hygiene protocols.
Area of Science:
- Microbiology
- Biophysics
- Materials Science
Background:
- Healthcare-associated infections (HAIs) pose a significant threat in hospital environments.
- Current decontamination methods may require enhancement to combat resilient pathogens.
- Multidrug-resistant organisms (MDROs) like MRSA, VRE, ESBL-E. coli, and A. baumannii are major contributors to HAIs.
Purpose of the Study:
- To assess the decontamination efficacy of a multijet cold plasma system.
- To evaluate its effectiveness on common hospital surfaces: stainless steel and mattress.
- To investigate the impact of organic material (Human serum albumin - HSA) on plasma efficacy.
Main Methods:
- In vitro study using four key HAI-causing bacteria: MRSA, VRE, ESBL-E. coli, and A. baumannii.
- Bacterial cultures applied to stainless steel and mattress surfaces, with and without HSA.
- Exposure to a cold-air-plasma-generating multijet prototype for varying durations (15-45 seconds).
- Atomic Force Microscopy (AFM) used to analyze bacterial cell morphology post-treatment.
Main Results:
- Significant log reductions (3-6 logs) in bacterial load achieved on both surfaces within 45 seconds.
- Efficacy demonstrated across all tested bacteria, including MDROs.
- Presence of HSA did not significantly impede bacterial eradication.
- AFM revealed morphological changes (etching) in bacterial cells, indicating plasma's disruptive action.
Conclusions:
- The multijet cold plasma system demonstrates potent antimicrobial activity against common hospital pathogens.
- It effectively decontaminates stainless steel and mattress surfaces, even in the presence of organic matter.
- Further clinical evaluation is warranted to confirm its utility as an adjunct to existing hospital environmental decontamination strategies.
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