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Use of titanium dioxide (TiC_2) photocatalysts as alternative means for Listeria monocytogenes biofilm disinfection in food processing

机译:使用二氧化钛(TiC_2)光催化剂作为食品加工过程中单核细胞增生李斯特菌生物膜消毒的替代手段

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摘要

The aim of this work was to study the photocatalytic activity of titanium dioxide (TiO_2) against Listeria monocytogenes bacterial biofilm. Different TiO_2 nanostructured thin films were deposited on surfaces such as stainless steel and glass using the doctor-blade technique. All the surfaces were placed in test tubes containing Brain Heart (BH) broth and inoculated with L monocytogenes. Test tubes were then incubated for 10 days at 16 ℃ in order to allow biofilm development. After biofilm formation, the surfaces were illuminated by ultraviolet A light (UVA; wavelength of 315-400 nm). The quantification of biofilms was performed using the bead vortexing method, followed by agar plating and/or by conductance measurements (via the metabolic activity of biofilm cells). The presence of the TiO_2 nanoparticles resulted in a fastest log-reduction of bacterial biofilm compared to the control test. The biofilm of L monocytogenes for the glass nanoparticle 1 (glass surface modified by 16% w/v TiO_2) was found to have decreased by 3 log CFU/cm~2 after 90 min irradiation by UVA. The use of TiO_2 nanostructured photo-catalysts as alternative means of disinfecting contaminated surfaces presents an intriguing case, which by further development may provide potent disinfecting solutions. Surface modification using nanostructured titania and UV irradiation is an innovative combination to enhance food safety and economizing time and money.
机译:这项工作的目的是研究二氧化钛(TiO_2)对单核细胞增生李斯特菌细菌生物膜的光催化活性。使用刮刀技术在不锈钢和玻璃等表面上沉积不同的TiO_2纳米结构薄膜。将所有表面放置在装有Brain Heart(BH)肉汤的试管中,并接种L单核细胞增生李斯特菌。然后将试管在16℃下孵育10天,以使生物膜形成。生物膜形成后,用紫外线A(UVA;波长为315-400 nm)照射表面。使用珠涡旋方法进行生物膜的定量,然后进行琼脂平板培养和/或电导率测量(通过生物膜细胞的代谢活性)。与对照测试相比,TiO_2纳米粒子的存在导致细菌生物膜的最快对数减少。发现玻璃纳米颗粒1(用16%w / v TiO_2修饰的玻璃表面)的单核细胞增生李斯特氏菌生物膜在用UVA照射90分钟后降低了3 log CFU / cm〜2。 TiO_2纳米结构光催化剂作为消毒受污染表面的替代方法的使用引人入胜,通过进一步开发可提供有效的消毒解决方案。使用纳米结构的二氧化钛和紫外线辐射进行表面改性是一种创新组合,可提高食品安全性并节省时间和金钱。

著录项

  • 来源
    《Food microbiology》 |2011年第1期|p.164-170|共7页
  • 作者单位

    Department of Food Science, Technology and Human Nutrition, Laboratory of Microbiology and Biotechnology of Foods, Agricultural University of Athens,Iera Odos 75, Athens 11855, Greece;

    rnInstitute of Physical Chemistry, NCSR 'Demokritos', Aghia Paraskevi Attikis, Athens 15310, Greece;

    rnDepartment of Food Science, Technology and Human Nutrition, Laboratory of Microbiology and Biotechnology of Foods, Agricultural University of Athens,Iera Odos 75, Athens 11855, Greece;

    rnInstitute of Physical Chemistry, NCSR 'Demokritos', Aghia Paraskevi Attikis, Athens 15310, Greece;

    rnDepartment of Food Science, Technology and Human Nutrition, Laboratory of Microbiology and Biotechnology of Foods, Agricultural University of Athens,Iera Odos 75, Athens 11855, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biofilm; UV-irradiation; listeria monocytogenes; nanoparticles; photocatalysis; titanium dioxide (TiO_2);

    机译:生物膜紫外线照射李斯特菌;纳米粒子光催化;二氧化钛(TiO_2);

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