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Bioluminescence ATP Monitoring for the Routine Assessment of Food Contact Surface Cleanliness in a University Canteen

机译:生物发光ATP监测用于大学食堂食品接触表面清洁度的常规评估

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摘要

ATP bioluminescence monitoring and traditional microbiological analyses (viable counting of total mesophilic aerobes, coliforms and Escherichia coli) were used to evaluate the effectiveness of Sanitation Standard Operating Procedures (SSOP) at a university canteen which uses a HACCP-based approach. To that end, 10 cleaning control points (CPs), including food contact surfaces at risk of contamination from product residues or microbial growth, were analysed during an 8-month monitoring period. Arbitrary acceptability limits were set for both microbial loads and ATP bioluminescence readings. A highly significant correlation (r = 0.99) between the means of ATP bioluminescence readings and the viable counts of total mesophilic aerobes was seen, thus revealing a strong association of these parameters with the level of surface contamination. Among CPs, the raw meat and multi-purpose chopping boards showed the highest criticalities. Although ATP bioluminescence technology cannot substitute traditional microbiological analyses for the determination of microbial load on food contact surfaces, it has proved to be a powerful tool for the real time monitoring of surface cleanliness at mass catering plants, for verify the correct application of SSOP, and hence for their implementation/revision in the case of poor hygiene.
机译:在大学食堂使用基于HACCP的方法,使用ATP生物发光监测和传统的微生物学分析(对中温需氧菌,大肠菌群和大肠杆菌进行活计数)来评估卫生标准操作程序(SSOP)的有效性。为此,在为期8个月的监测期内,对10个清洁控制点(CP)进行了分析,其中包括有可能因产品残留或微生物生长而受到污染的食品接触表面。为微生物负荷和ATP生物发光读数设定了任意可接受的极限。 ATP生物发光读数的平均值与中温需氧菌总数之间的高度相关性(r = 0.99)被观察到,从而揭示了这些参数与表面污染水平之间的强烈关联。在CP中,生肉和多功能砧板的危险性最高。尽管ATP生物发光技术无法代替传统的微生物学分析来确定食品接触表面上的微生物负荷,但事实证明,它是实时监控大型餐饮工厂表面清洁度,验证SSOP正确应用的有力工具,并且因此,在卫生条件差的情况下,可以实施/修改它们。

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