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310纳米发光二极管照射对口腔细菌的杀菌作用。

Bactericidal effects of 310 nm ultraviolet light-emitting diode irradiation on oral bacteria.

作者信息

Takada Ayuko, Matsushita Kenji, Horioka Satoru, Furuichi Yasushi, Sumi Yasunori

机构信息

Division of Periodontology and Endodontology Department of Oral Rehabilitation, School of Health Sciences University of Hokkaido, Tobestu, Hokkaido, Japan.

Department of Oral Disease Research, National Center of Geriatrics and Gerontology, Obu, 747-8511, Aichi, Japan.

出版信息

BMC Oral Health. 2017 Jun 6;17(1):96. doi: 10.1186/s12903-017-0382-5.

Abstract

BACKGROUND

Ultraviolet (UV) light is used for phototherapy in dermatology, and UVB light (around 310 nm) is effective for treatment of psoriasis and atopic dermatitis. In addition, it is known that UVC light (around 265 nm) has a bactericidal effect, but little is known about the bactericidal effect of UVB light. In this study, we examined the bactericidal effects of UVB-light emitting diode (LED) irradiation on oral bacteria to explore the possibility of using a 310 nm UVB-LED irradiation device for treatment of oral infectious diseases.

METHODS

We prepared a UVB (310 nm) LED device for intraoral use to examine bactericidal effects on Streptococcus mutans, Streptococcus sauguinis, Porphyromonas gingivalis, and Fusobacterium nucleatum and also to examine the cytotoxicity to a human oral epithelial cell line (Ca9-22). We also examined the production of nitric oxide and hydrogen peroxide from Ca9-22 cells after irradiation with UVB-LED light.

RESULTS

Irradiation with the 310 nm UVB-LED at 105 mJ/cm showed 30-50% bactericidal activity to oral bacteria, though 17.1 mJ/cm irradiation with the 265 nm UVC-LED completely killed the bacteria. Ca9-22 cells were strongly injured by irradiation with the 265 nm UVC-LED but were not harmed by irradiation with the 310 nm UVB-LED. Nitric oxide and hydrogen peroxide were produced by Ca9-22 cells with irradiation using the 310 nm UVB-LED. P. gingivalis was killed by applying small amounts of those reactive oxygen species (ROS) in culture, but other bacteria showed low sensitivity to the ROS.

CONCLUSIONS

Narrowband UVB-LED irradiation exhibited a weak bactericidal effect on oral bacteria but showed low toxicity to gingival epithelial cells. Its irradiation also induces the production of ROS from oral epithelial cells and may enhance bactericidal activity to specific periodontopathic bacteria. It may be useful as a new adjunctive therapy for periodontitis.

摘要

背景

紫外线(UV)用于皮肤科的光疗,其中UVB光(约310nm)对银屑病和特应性皮炎的治疗有效。此外,已知UVC光(约265nm)具有杀菌作用,但关于UVB光的杀菌作用知之甚少。在本研究中,我们检测了UVB发光二极管(LED)照射对口腔细菌的杀菌作用,以探索使用310nm UVB-LED照射装置治疗口腔感染性疾病的可能性。

方法

我们制备了一种用于口腔内的UVB(310nm)LED装置,以检测其对变形链球菌、血链球菌、牙龈卟啉单胞菌和具核梭杆菌的杀菌作用,并检测其对人口腔上皮细胞系(Ca9-22)的细胞毒性。我们还检测了UVB-LED光照后Ca9-22细胞中一氧化氮和过氧化氢的产生情况。

结果

310nm UVB-LED以105mJ/cm照射时,对口腔细菌显示出30%-50%的杀菌活性,而265nm UVC-LED以17.1mJ/cm照射可完全杀灭细菌。Ca9-22细胞受到265nm UVC-LED照射时受到严重损伤,但310nm UVB-LED照射对其无害。Ca9-22细胞在使用310nm UVB-LED照射时会产生一氧化氮和过氧化氢。在培养物中施加少量这些活性氧(ROS)可杀死牙龈卟啉单胞菌,但其他细菌对ROS的敏感性较低。

结论

窄带UVB-LED照射对口腔细菌显示出较弱的杀菌作用,但对牙龈上皮细胞毒性较低。其照射还可诱导口腔上皮细胞产生ROS,并可能增强对特定牙周病原菌的杀菌活性。它可能作为牙周炎的一种新的辅助治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e42/5461700/6233ed2efabf/12903_2017_382_Fig1_HTML.jpg

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