UV ‐ C LED Disinfection of Flexible Rhinolaryngoscopes: Microbiological, Economic, Environmental, and Legislative Evaluation

ABSTRACT Objective To evaluate the microbiological efficacy of the Ray‐Two ultraviolet‐C (UV‐C) light‐emitting diode (LED) chamber for reprocessing flexible rhinolaryngoscopes in otorhinolaryngology (ORL) practice and compare its economic and ecological impacts with chemical high‐level disinfection using the Tristel Trio Wipes System (TTWS). Methods In a prospective study at a tertiary ORL center, bacterial contamination was assessed on 20 flexible rhinolaryngoscopes immediately after routine posterior rhinoscopy and/or laryngoscopy. Paired swab samples were collected from the distal 10–12 cm shaft pre‐ and post‐reprocessing: manual pre‐cleaning with tap water followed by a 4‐min UV‐C LED cycle. Samples were cultured on TSA‐5% sheep blood agar for 36 h at 35°C–37°C, with colony‐forming units (CFUs) enumerated. Per‐cycle costs and carbon footprints were calculated via life cycle assessment (ISO 14040/14044) and compared with TTWS, based on 5000 annual procedures. Results Pre‐reprocessing median CFUs (IQR; range) were 15 (3–27; 2 to > 200), reducing to 0 (0–0; 0–1) post‐UV‐C ( p < 0.001; > 99% reduction; 19/20 samples sterile). UV‐C per‐cycle cost was €0.56 (vs. €8.32 for TTWS; 93% savings), with a carbon footprint of 6.81 g CO 2 e (vs. 115.8 g; 94% reduction). Annual savings: €38,800 and 548 kg CO 2 e. Conclusion The Ray‐Two UV‐C LED chamber achieves near‐complete bacterial elimination (100% in 19/20 samples; 1 residual CFU in 1/20 samples) on flexible rhinolaryngoscopes, with superior cost‐efficiency and sustainability versus TTWS. This mercury‐free, point‐of‐care method supports greener ORL practice amid evolving EU and US state‐level regulations on mercury‐containing lamps, enhancing infection control without compromising efficacy.

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Journal
Laryngoscope Investigative Otolaryngology
Published
2026-09-24
DOI
https://doi.org/10.1002/lio2.70575
Primary Topic
Medical Device Sterilization and Disinfection
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article
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article

UV ‐ C LED Disinfection of Flexible Rhinolaryngoscopes: Microbiological, Economic, Environmental, and Legislative Evaluation

Alain Frederic Kalmar, Stien Vandendriessche, Sofie Claeys, Hannah Siwe et al.
Laryngoscope Investigative Otolaryngology
Medical Device Sterilization and Disinfection
article

UV ‐ C LED Disinfection of Flexible Rhinolaryngoscopes: Microbiological, Economic, Environmental, and Legislative Evaluation

Alain Frederic Kalmar, Stien Vandendriessche, Sofie Claeys, Hannah Siwe, Bjorn Delbeecke, Ir. Pascal Verdonck, Camille Maeyaert
article en

Abstract

ABSTRACT Objective To evaluate the microbiological efficacy of the Ray‐Two ultraviolet‐C (UV‐C) light‐emitting diode (LED) chamber for reprocessing flexible rhinolaryngoscopes in otorhinolaryngology (ORL) practice and compare its economic and ecological impacts with chemical high‐level disinfection using the Tristel Trio Wipes System (TTWS). Methods In a prospective study at a tertiary ORL center, bacterial contamination was assessed on 20 flexible rhinolaryngoscopes immediately after routine posterior rhinoscopy and/or laryngoscopy. Paired swab samples were collected from the distal 10–12 cm shaft pre‐ and post‐reprocessing: manual pre‐cleaning with tap water followed by a 4‐min UV‐C LED cycle. Samples were cultured on TSA‐5% sheep blood agar for 36 h at 35°C–37°C, with colony‐forming units (CFUs) enumerated. Per‐cycle costs and carbon footprints were calculated via life cycle assessment (ISO 14040/14044) and compared with TTWS, based on 5000 annual procedures. Results Pre‐reprocessing median CFUs (IQR; range) were 15 (3–27; 2 to > 200), reducing to 0 (0–0; 0–1) post‐UV‐C ( p < 0.001; > 99% reduction; 19/20 samples sterile). UV‐C per‐cycle cost was €0.56 (vs. €8.32 for TTWS; 93% savings), with a carbon footprint of 6.81 g CO 2 e (vs. 115.8 g; 94% reduction). Annual savings: €38,800 and 548 kg CO 2 e. Conclusion The Ray‐Two UV‐C LED chamber achieves near‐complete bacterial elimination (100% in 19/20 samples; 1 residual CFU in 1/20 samples) on flexible rhinolaryngoscopes, with superior cost‐efficiency and sustainability versus TTWS. This mercury‐free, point‐of‐care method supports greener ORL practice amid evolving EU and US state‐level regulations on mercury‐containing lamps, enhancing infection control without compromising efficacy.

Laryngoscope Investigative OtolaryngologyVol. 11(5)
HOGENT University of Applied Sciences and Arts (BE), Ghent University Hospital (BE), Ghent University (BE), AZ Maria Middelares (BE)
Responsible consumption and production
Openalex Percentile: Top 13%
Medical Device Sterilization and Disinfection
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