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Contribution of Two Different Packaging Material to Microbial Contamination of Peaches: Implications in Their Microbiological Quality

机译:两种不同包装材料对桃子的微生物污染的贡献:对它们的微生物质量的影响

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摘要

>Aim: Aim of this work was understanding the microbial transfer dynamics from packaging to packed peaches in relation to the packaging used.>Method and Results: A challenge test was performed, inoculating Escherichia coli, Pseudomonas spp. and Saccharomyces cerevisiae on cardboards and RPC (Reusable Plastic Containers), and monitoring their cell loads on fruits according to a probabilistic model and a Response Surface Methodology (RSM) in relation to several independent variables (number of fruit lesions, fruit temperature storage and commercialization time). The data recorded on packed peaches for Pseudomonas and S. cerevisiae were modeled to fit the second order model to study the main, interactive and quadratic effects of the independent variables on the cell loads of target microorganisms as well as on the shelf-life of the fruits in relation to packaging material used. The data collected for E. coli were codified as presence (1) or absence (0) and modeled with a logistic regression analysis to assess the probability of E. coli transferring from packaging to fruits in relation to the adopted variables. The data showed a higher contamination frequency of the fruits packed in plastic than in cardboard. Increasing the storage temperature and the number of lesions, the probability of transferring of E. coli from packaging materials to fruits increased, independently on commercialization time or packaging used. For Pseudomonas, the contamination levels detected on fruits packaged in plastic were significantly higher compared to those found on fruits packed in cardboard, independently on the considered variables. The polynomial equations showed the S. cerevisiae cell loads of fruits stored in plastic was positively affected by the quadratic term of temperature.>Conclusions: the use of cardboard, compared to plastic, can significantly reduce the potential of microbial transferring from packaging to fruits. The probabilistic and kinetic models used showed a higher microbiological qualities of peaches stored in cardboard boxes, independently on the independent variables considered. The best performances of cardboard, compared to plastic, was probably due to its capability to entrap microbial cells.>Significance and Impact: cardboard reduces fruit contamination and increases their shelf-life with positive fallouts on fruit shelf-life and all the logistic and distribution chain.
机译:>目的:这项工作的目的是了解与使用的包装有关的从包装桃到包装桃的微生物转移动力学。>方法和结果:进行了挑战试验,接种了大肠埃希菌大肠杆菌,假单胞菌属。纸板和RPC​​(可重复使用的塑料容器)上的酿酒酵母和酿酒酵母,并根据概率模型和响应面方法(RSM)与几个独立变量(水果皮损数,水果温度存储和商品化)相关,监控它们在水果上的细胞负荷时间)。对包装在桃子上的假单胞菌和酿酒酵母的数据进行建模以适合二阶模型,以研究独立变量对目标微生物的细胞负荷以及保质期的主要,相互作用和二次效应。与所用包装材料有关的水果。收集的大肠杆菌数据被编码为存在(1)或不存在(0),并通过逻辑回归分析进行建模,以评估大肠杆菌相对于采用的变量从包装转移到水果的概率。数据显示,包装在塑料中的水果比在纸板中的污染频率更高。升高存储温度和增加损伤的数量,将大肠杆菌从包装材料转移到水果的可能性增加,而与商业化时间或所使用的包装无关。对于假单胞菌,塑料包装的水果中检测到的污染水平明显高于纸板包装的水果中检测到的污染水平,而与所考虑的变量无关。多项式方程表明,存储在塑料中的水果中的啤酒酵母细胞负荷受到温度的二次项的正影响。>结论:与塑料相比,纸板的使用可显着降低微生物的潜力从包装转移到水果。所使用的概率模型和动力学模型显示了存储在纸板箱中的桃子的较高微生物质量,而与所考虑的独立变量无关。与塑料相比,硬纸板的最佳性能可能是由于其能够捕获微生物细胞。>意义和影响:硬纸板减少了水果的污染并延长了货架寿命,对果实的货架期产生了积极的影响。以及所有物流和分销链。

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