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概念验证:通过 MAP 包装中的集成氧气传感器点预测肉类变质的开始。

Proof of concept: predicting the onset of meat spoilage by an integrated oxygen sensor spot in MAP packages.

机构信息

Lehrstuhl für Technische Mikrobiologie, Technische Universität München, Freising, Germany.

出版信息

Lett Appl Microbiol. 2021 Jul;73(1):39-45. doi: 10.1111/lam.13473. Epub 2021 Apr 3.

Abstract

During storage of modified atmosphere packaged (MAP) meat, the initial microbiota grows to high cell numbers, resulting in perceptible spoilage after exceeding a specific threshold level. This study analyses, whether elevated oxygen consumption in the headspace of MA-packages would enable a prediction method for meat spoilage. We monitored the growth of single spoiling species inoculated on high-oxygen MAP beef and poultry, performed sensorial analysis and determined oxygen concentrations of the headspace via a non-invasive sensor spot technology. We detected microbial headspace oxygen consumption occurring prior to perceptible meat spoilage for certain species inoculated on beef steaks. However, headspace oxygen consumption and cell counts at the onset of spoilage were highly species-dependent, which resulted in a strong (Brochothrix thermosphacta) and moderate (Leuconostoc gelidum subspecies) decrease of the headspace oxygen content. No linear decrease of the headspace oxygen could be observed for Carnobacterium divergens and Carnobacterium maltaromaticum inoculated on poultry meat. We demonstrate the applicability of an incorporated oxygen sensor spot technology in MAP meat packages for detection of spoilage in individual packages prior to its perceptible onset. This enables individual package evaluation and sorting within retail, and consequently reduces meat disposal as waste.

摘要

在气调包装(MAP)肉类的储存过程中,初始微生物群体会生长到很高的细胞数量,超过特定阈值水平后会导致明显的变质。本研究分析了 MAP 包装顶空氧气消耗的增加是否能够为肉类变质提供预测方法。我们监测了高氧 MAP 牛肉和禽肉上接种的单一变质物种的生长情况,进行了感官分析,并通过非侵入式传感器点技术确定了顶空的氧气浓度。我们检测到,对于接种在牛排上的某些特定物种,在可察觉的肉类变质之前,会发生微生物顶空氧气消耗。然而,顶空氧气消耗和变质开始时的细胞计数高度依赖于物种,这导致顶空氧气含量的强烈(布氏杆菌属 thermosphacta)和中度(乳杆菌属 gelidum 亚种)下降。对于接种在禽肉上的肠球菌 divergens 和乳杆菌 maltaromaticum,未观察到头空氧气的线性下降。我们证明了集成氧气传感器点技术在 MAP 肉类包装中的适用性,可用于在可察觉的变质发生之前检测单个包装中的变质。这使得在零售中能够对单个包装进行评估和分类,从而减少作为废物处理的肉类。

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