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A study of the effect of reactive oxygen species induced by violet and blue light from oxytetracycline on the deactivation of Escherichia coli.
Cheng, Chien-Wei; Lee, Shwu-Yuan; Chen, Tang-Yu; Yang, Meei-Ju; Yuann, Jeu-Ming P; Chiu, Chi-Ming; Huang, Shiuh-Tsuen; Liang, Ji-Yuan.
Affiliation
  • Cheng CW; Department of Biotechnology, Ming Chuan University, Gui-Shan 33343, Taiwan. Electronic address: ochien@gmail.com.
  • Lee SY; Department of Tourism and Leisure, Hsing Wu University, New Taipei City 24452, Taiwan. Electronic address: 091007@mail.hwu.edu.tw.
  • Chen TY; Department of Biotechnology, Ming Chuan University, Gui-Shan 33343, Taiwan. Electronic address: leo14101057@gmail.com.
  • Yang MJ; Tea Research and Extension Station, Yangmei 326011, Taiwan. Electronic address: 762204@gmail.com.
  • Yuann JP; Department of Biotechnology, Ming Chuan University, Gui-Shan 33343, Taiwan. Electronic address: jyuann@mail.mcu.edu.tw.
  • Chiu CM; Department of Biotechnology, Ming Chuan University, Gui-Shan 33343, Taiwan. Electronic address: cmchiu@mail.mcu.edu.tw.
  • Huang ST; Department of Science Education and Application, National Taichung University of Education, Taichung 40306, Taiwan; Department of Soil and Environmental Sciences, National Chung Hsing University, Taichung 40200, Taiwan. Electronic address: hstsuen@mail.ntcu.edu.tw.
  • Liang JY; Department of Biotechnology, Ming Chuan University, Gui-Shan 33343, Taiwan. Electronic address: liang121@mail.mcu.edu.tw.
Photodiagnosis Photodyn Ther ; 39: 102917, 2022 Sep.
Article in En | MEDLINE | ID: mdl-35597444
ABSTRACT
Oxytetracycline (OTC), a tetracycline antibiotic, is a broad-spectrum antibacterial agent. In this investigation, liquid chromatography-mass spectrometry (LC-MS) is utilized to determine the effects of blue light (λ = 448 nm) illumination (BLIA) and violet light (λ = 403 nm) illumination (VLIA) on conformational changes in OTC at pH 7.8. The photochemical effect of OTC that is exposed to BLIA and VLIA on the deactivation of Escherichia coli (E. coli) is studied. The deactivation of E. coli has an insignificant effect on treatment with OTC alone. OTC is relatively unstable under BLIA and VLIA illumination in an alkaline solution, and OTC has been shown to inactivate E. coli by generating reactive oxygen species (ROS). Less anionic superoxide radicals (O2•-) are generated from OTC that is treated with BLIA than that from VLIA treatment, so OTC is more efficient in inactivating E. coli under VLIA. Inactivation of reduction rates of 0.51 and 3.65 logs in E. coli are achieved using 0.1 mM OTC under BLIA for 120 min and VLIA for 30 min, respectively, under the same illumination intensity (20 W/m2). Two photolytic products of OTC (PPOs) are produced when OTC is exposed to BLIA and VLIA, with molecular ions at m/z 447 and 431, molecular formulae C21H22N2O9 and C21H22N2O8, and masses of 446.44 and 430.44 g/mol, respectively. The results show that when exposed to VLIA, OTC exhibits enhanced inactivation of E. coli, suggesting that the photochemical treatment of OTC is a potential supplement in a hygienic process.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxytetracycline / Photochemotherapy Language: En Journal: Photodiagnosis Photodyn Ther Journal subject: DIAGNOSTICO POR IMAGEM / TERAPEUTICA Year: 2022 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxytetracycline / Photochemotherapy Language: En Journal: Photodiagnosis Photodyn Ther Journal subject: DIAGNOSTICO POR IMAGEM / TERAPEUTICA Year: 2022 Document type: Article