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Characterization of Plasma Treated Surfaces for Food Safety by Terahertz Spectroscopy

机译:太赫兹光谱法表征用于食品安全的等离子处理表面

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A physico-chemical approach to modify surfaces not only for use in medicine, but also for preservation of food is nowadays widely studied to lower the risks of increased number of bacterial pathogens that are in a direct contact with people. Food safety is very important part of preserving sustainability during crises, especially after the enterohaemorrhagic Escherichia coli outbreak in Europe in 2011. One of the possibility how we can protect food against various pathogens is the modification of packing materials that are directly in contact with preserved food. This contribution deals with the characterization of modified surfaces with antibacterial properties via Terahertz spectroscopy. For the purpose of this paper, three monomers were used for grafting onto air radiofrequency plasma activated low density polyethylene surface, which created a brush-like structure. Next, the antibacterial agents, Irgasan and Chlorhexidine, were anchored to these surfaces. These antibacterial agents were selected for supposed effect on two most frequently occurring bacterial strains - Escherichia coli and Staphylococcus aureus. Materials were further tested for the presence of antibacterial agent molecules, in our case by means of terahertz spectroscopy. Each material was tested on two spectroscopes - the SPECTRA and the OSCAT terahertz instruments.
机译:如今,人们广泛地研究了一种物理化学方法,不仅可以用于医学,而且可以用于食品的防腐处理,以降低与人直接接触的细菌病原体数量增加的风险。在危机期间,尤其是在2011年欧洲肠出血性大肠杆菌暴发后,食品安全是保持可持续性的重要组成部分。我们如何保护食品免受各种病原体侵害的一种可能方法是修改与保鲜食品直接接触的包装材料。这种贡献涉及通过太赫兹光​​谱表征具有抗菌特性的改性表面。出于本文的目的,将三种单体用于接枝到空气射频等离子体活化的低密度聚乙烯表面上,从而形成了刷状结构。接下来,将抗菌剂Irgasan和洗必泰固定在这些表面上。选择这些抗菌剂是为了对两种最常见的细菌菌株-大肠杆菌和金黄色葡萄球菌产生预期的影响。在我们的情况下,通过太赫兹光​​谱法进一步测试了材料中是否存在抗菌剂分子。每种材料都在两个光谱仪上进行了测试-SPECTRA和OSCAT太赫兹仪器。

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