Maimaitiyiming Ruxianguli, Yang Yuting, Mulati Ailikemu, Aihaiti Aihemaitijiang, Wang Jiayi
National Demonstration Center for Experimental Biology Education, Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi 830046, China.
Foods. 2024 May 31;13(11):1723. doi: 10.3390/foods13111723.
Fresh-cut produce is usually produced under standardized disinfection processes, which are unavailable at the ready-to-eat stage. Currently, chemical sanitizers are used for washing, but their disinfection efficacy is limited. In this study, UV-C (1.03 kJ/m) was combined with organic acids that are generally recognized as safe (GRAS), including citric, malic, acetic, and lactic acids (LAs), to wash lettuce and cherry tomatoes that are contaminated with O157:H7 and Typhimurium. The results showed that LA was the most effective treatment among the single treatments, with a pathogen reduction and cross-contamination incidence of 2.0-2.3 log CFU/g and 28-35%, respectively. After combining with UV-C, the disinfection efficacy and cross-contamination prevention capacity of the four GRAS acids significantly improved. Among the combination treatments, the highest pathogen reduction (2.5-2.7 log CFU/g) and the lowest cross-contamination incidence (11-15%) were achieved by LA-UV. The analyses of ascorbic acid, chlorophyll, lycopene, antioxidant capacity, and ΔE indicated that neither the single nor combination treatments negatively affected the quality properties. These results provide a potential hurdle technology for fresh produce safety improvement at the ready-to-eat stage.
鲜切农产品通常在标准化消毒工艺下生产,而这些工艺在即食阶段并不适用。目前,化学消毒剂用于清洗,但它们的消毒效果有限。在本研究中,将紫外线C(1.03千焦/平方米)与一般认为安全(GRAS)的有机酸(包括柠檬酸、苹果酸、乙酸和乳酸)相结合,用于清洗被O157:H7和鼠伤寒沙门氏菌污染的生菜和樱桃番茄。结果表明,乳酸在单一处理中是最有效的,病原体减少量和交叉污染发生率分别为2.0 - 2.3个对数CFU/克和28 - 35%。与紫外线C结合后,四种GRAS酸的消毒效果和防止交叉污染的能力显著提高。在联合处理中,乳酸 - 紫外线组合实现了最高的病原体减少量(2.5 - 2.7个对数CFU/克)和最低的交叉污染发生率(11 - 15%)。对抗坏血酸、叶绿素、番茄红素、抗氧化能力和ΔE的分析表明,单一处理和联合处理均未对品质特性产生负面影响。这些结果为即食阶段新鲜农产品安全改善提供了一种潜在的障碍技术。