4.4 Article

Photo-Induced Antifungal Activity of Chitosan Composite Film Solution with Nano-Titanium Dioxide and Nano-Silver

期刊

JOURNAL OF FOOD PROTECTION
卷 85, 期 4, 页码 597-606

出版社

INT ASSOC FOOD PROTECTION
DOI: 10.4315/JFP-21-290

关键词

Antimicrobial properties; Nanocomposite film solution; UV photoinduced

资金

  1. Science and Technology Support Program of Sichuan [2021YFQ0071, 2018NZ0090, 2019YFN0174]
  2. Science and Technology Support Program of Yibin [2018ZSF002]
  3. Chengdu Science and Technology Project Key Research and Development Program [2019-YF05-00628-SN, 2019-YF05-00190-SN]
  4. Xihua University Graduate Innovation Fund Project [ycjj2019082]
  5. Xihua cup college student science and technology innovation project of Xihua University

向作者/读者索取更多资源

This study investigates the UV light-induced effect of chitosan-titanium dioxide-silver nanocomposite film solution on Penicillium steckii, and reveals that the treatment can inhibit the growth of the pathogen by disrupting its cell membrane structure.
This study was conducted to investigate the UV light-induced effect of chitosan-titanium dioxide-silver (CTS-TiO2-Ag) nanocomposite film solution against Penicillium steckii and the underlying physiological mechanism of this effect. With longer UV exposure time, pathogen inhibition increased. UV-photoinduced treatment for 120 min produced the smallest P. steckii colony diameter, at 4.85 mm. However, when this treatment was followed by 8 h of storage, the conductivity of the P. steckii culture medium reached its highest level, at 713 microsiemens per cm. After a 120-h growth period on mangoes under the same conditions, the lesion diameters and proportion of infected mangoes reached 12.61 mm and 41.67%, respectively. Because the P. steckii cell membrane was severely disrupted, its permeability increased, causing serious extravasation of intracellular protein and nucleic acid material. Malondialdehyde, catalase, and superoxide dismutase in the P. steckii cells reached maximum concentrations (2.1106 mu mol/mL, 44.06 U/mL, and 24.67 U/mL, respectively) after 8 h of incubation. These results indicate significant P. steckii inhibition by the UV light induction of the CTS-TiO2-Ag nanocomposite film solution.

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