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Development of a Novel Hygiene Monitoring System Based on the Detection of Total Adenylate (ATP+ADP+AMP)

机译:基于总腺苷酸(ATP + ADP + AMP)检测的新型卫生监测系统的开发

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ATP is the universal energy molecule found in animals, plants, and microorganisms. ATP rapid hygiene monitoring tests have been employed in the food industry to ensure that adequate cleanliness is being maintained. However, because ATP is hydrolyzed to ADP and AMP by metabolic processes, by heat treatment, or under acidic or alkaline conditions, total adenylate (ATP+ADP+AMP [A3]) could be a more reliable sanitation indicator of food residues that may cause biofilm formation and allergen contamination. Therefore, a novel hygiene monitoring system to measure A3 was developed based on the luciferin-luciferase assay with the combination of two enzymes, pyruvate kinase and pyruvate phosphate dikinase, that can convert ADP into ATP and recycle AMP into ATP, respectively. The newly developed A3 assay system afforded stable bioluminescence signals and equivalent linear calibration curves between relative light units (RLU) and the amounts of ATP, ADP, and AMP, respectively. To verify the significance of the A3 method, the ratios of ATP, ADP, and AMP in various food samples were determined; large amounts of ADP and AMP were found in a variety of foods, such as meat, seafood, dairy, nuts, fruits, vegetables, and fermented foods. Sanitation monitoring of stainless steel exposed to raw meat was also examined, and the A3 method achieved a 200-RLU level, the typical benchmark value, after complete washing with detergent and rinsing. In contrast, a conventional ATP method showed less than 200 RLU after only a light cold and hot water rinse. In conclusion, the A3 assay appeared to be suitable for detection of adenylates from food residues that are not detected by the conventional ATP assay.
机译:ATP是在动物,植物和微生物中发现的通用能量分子。食品行业已使用ATP快速卫生监测测试,以确保保持足够的清洁度。但是,由于ATP通过代谢过程,热处理或在酸性或碱性条件下被水解为ADP和AMP,因此总腺苷酸(ATP + ADP + AMP [A3])可能是更可靠的食品残留卫生指标,可能导致生物膜形成和过敏原污染。因此,基于萤光素-萤光素酶测定法,结合丙酮酸激酶和丙酮酸磷酸二激酶两种酶的组合,开发了一种新型的A3卫生监测系统,可以将ADP转化为ATP并将AMP转化为ATP。新开发的A3分析系统提供了稳定的生物发光信号和相对光单位(RLU)与ATP,ADP和AMP量之间的等效线性校准曲线。为了验证A3方法的重要性,测定了各种食品样品中ATP,ADP和AMP的比例。在各种食品中发现大量的ADP和AMP,例如肉类,海鲜,乳制品,坚果,水果,蔬菜和发酵食品。还检查了暴露于生肉的不锈钢的卫生监控,在用洗涤剂彻底清洗并漂洗后,A3方法达到了200-RLU水平(典型基准值)。相反,常规的ATP方法仅用少量冷水和热水冲洗后,显示不到200 RLU。总之,A3分析似乎适合于从食品残留物中检测腺苷酸,而常规ATP分析无法检测到。

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