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Effect of microbial sanitizers for reducing biofilm formation of Staphylococcus aureus and Pseudomonas aeruginosa on stainless steel by cultivation with UHT milk

机译:微生物消毒剂通过UHT奶培养减少不锈钢上金黄色葡萄球菌和铜绿假单胞菌生物膜形成的作用

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摘要

Biofilm is a serious issue in the dairy factory due to it increases the opportunity for microbial contamination. Staphylococcus aureus and Pseudomonas aeruginosa are the bacteria capable to construct the biofilm on materials and equipments. Therefore, the bacterial growth and efficiency of sanitizing agents to solve the problems were evaluated. These bacteria grew well in UHT milk when they were cultivated at 37 °C, especially S. aureus. The exponential growth phase and biofilm on stainless steel were discovered by short contact time at 2 h. The mature stage of biofilm cycle was found at 4 h during bacteria growth and it was continuously constructed until 48 h. The 10, 24, and 48 h-old biofilm adhering on stainless steel were established with oxisan and chlorine used as microbial sanitizers. The 4% of sanitizing agents was the efficiency concentration to reduce biofilm on stainless steel up to 82% when these bacteria grew in UHT milk.
机译:生物膜在乳品厂中是一个严重的问题,因为它增加了微生物污染的机会。金黄色葡萄球菌和铜绿假单胞菌是能够在材料和设备上构建生物膜的细菌。因此,评估了细菌的生长和消毒剂解决问题的效率。这些细菌在37°C下培养时,在UHT牛奶中生长良好,尤其是金黄色葡萄球菌。通过2 h的短接触时间发现了不锈钢上的指数生长期和生物膜。在细菌生长的4小时内发现了生物膜循环的成熟阶段,并持续构建直到48小时。用环氧乙烷和氯作为微生物消毒剂,建立了粘附在不锈钢上的10、24和48小时的生物膜。当这些细菌在超高温灭菌牛奶中生长时,消毒剂的4%是减少不锈钢上生物膜的有效浓度,最高可达82%。

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