Development of a standard evaluation method for microbial UV sensitivity using light-emitting diodes

Ultraviolet (UV) light is an effective disinfection method. In particular, UV light-emitting diodes (UV-LEDs) are expected to have many applications as light sources owing to their compact form factor and wide range of choices of wavelengths. However, the UV sensitivity of microorganisms for each UV...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Heliyon 2024-03, Vol.10 (6), p.e27456, Article e27456
Hauptverfasser: Ishida, Kai, Onoda, Yushi, Kadomura-Ishikawa, Yasuko, Nagahashi, Miharu, Yamashita, Michiyo, Fukushima, Shiho, Aizawa, Toshihiko, Yamauchi, Shigeharu, Fujikawa, Yasuo, Tanaka, Tomotake, Uebanso, Takashi, Akutagawa, Masatake, Mawatari, Kazuaki, Takahashi, Akira
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:Ultraviolet (UV) light is an effective disinfection method. In particular, UV light-emitting diodes (UV-LEDs) are expected to have many applications as light sources owing to their compact form factor and wide range of choices of wavelengths. However, the UV sensitivity of microorganisms for each UV wavelength has not been evaluated comprehensively because standard experimental conditions based on LED characteristics have not been established. Therefore, it is necessary to establish a standard evaluation method based on LED characteristics. Here, we developed a new UV-LED device based on strictly controlled irradiation conditions using LEDs for each wavelength (250–365 nm), checked the validity of the device characteristics and evaluated the UV sensitivity of Escherichia coli using this new evaluation method. For this new device, we considered accurate irradiance, accurate spectra, irradiance uniformity, accurate dose, beam angle, surrounding material reflections, and sample condition. From our results, the following UV irradiation conditions were established as standard: 1 mW/cm2 irradiance, bacterial solution with absorbance value of A600 = 0.5 diluted 10 times solution, solution volume of 1 mL, working distance (WD) of 100 mm. In order to compare the effects of irradiation under uniform conditions on inactivation of microorganisms, we assessed inactivation effect of E. coli by LED irradiation at each wavelength using the U280 LED as a standard wavelength. The inactivation effect for U280 LED irradiation was −0.95 ± 0.21 log at a dose of 4 mJ/cm2. Under this condition of dose, our results showed a high wavelength dependence of the inactivation effect at each UV wavelength peaking at 267 nm. Our study showed that this irradiation system was validated for the standard UV irradiation system and could be contributed to the establishment of food and water hygiene control methods and the development of equipment for the prevention of infectious diseases. •Ultraviolet light-emitting diodes (UV-LEDs) is an effective method of inactivating microorganisms.•A new UV-LED device based strictly on the optical characteristics of LEDs has developed.•Standardized irradiation system and evaluation method for assessing UV sensitivity of microorganisms were established.•This evaluation method using the standardized irradiation system will be useful for assessment of the UV sensitivity of microorganisms in air, food, water, and for material samples.
ISSN:2405-8440
2405-8440
DOI:10.1016/j.heliyon.2024.e27456