Shelf life estimation of refrigerated vacuum packed beef accounting for uncertainty

保质期 细菌生长 食物腐败 制冷 肠杆菌科 食品科学 乳酸 滞后 增长率 环境科学 水活度 化学 数学 估计 增长模型 统计 滞后时间 时滞 固定相 一致性(知识库) 需氧菌 传质 细菌 师(数学) 估计理论 增长曲线(统计)
作者
Magdevis Y. Rodriguez-Caturla,Alberto Garre,Carmen J. Contreras‐Castillo,M.H. Zwietering,Heidy M.W. den Besten,Anderson S. Sant’Ana
出处
期刊:International Journal of Food Microbiology [Elsevier BV]
卷期号:405: 110345-110345 被引量:15
标识
DOI:10.1016/j.ijfoodmicro.2023.110345
摘要

This study estimates the shelf life of vacuum packed beef meat (three muscles: striploin (longissimus thoracis et lumborum, LTL), tenderloin (psoas major, PM) and outside chuck (trapezius thoracis, TT)) at refrigeration temperatures (0 °C–10 °C) based on modelling the growth of two relevant groups of spoilage microorganisms: lactic acid bacteria (LAB) and Enterobacteriaceae. The growth models were developed combining a two-step and a one-step approach. The primary modelling was used to identify the parameters affecting the growth kinetics, guiding the definition of secondary growth models. For LAB, the secondary model included the effect of temperature and initial pH on the specific growth rate. On the other hand, the model for Enterobacteriaceae incorporated the effect of temperature on the specific growth rate and the lag phase; as well as the effect of the initial pH on the specific growth rate, the lag phase and the initial microbial count. We did not observe any significant effect of the type of muscle on the growth kinetics. Once the equations were defined, the models were fitted to the complete dataset using a one-step approach. Model validation was carried out by cross-validation, mitigating the impact of an arbitrary division between training and validation sets. The models were used to estimate the shelf life of the product, based on the maximum admissible microbial concentration (7 log CFU/g for LAB, 5 log CFU/g for Enterobacteriaceae). Although LAB was the dominant microbiota, in several cases, both LAB and Enterobacteriaceae reached the critical concentration practically at the same time. Furthermore, in some scenarios, the end of shelf life would be determined by Enterobacteriaceae, pointing at the potential importance of non-dominant microorganisms for product spoilage. These results can aid in the implementation of effective control measures in the meat processing industry.
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