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Shelf-life prediction of processed milk by solid-phase microextraction, mass spectrometry, and multivariate analysis.

机译:通过固相微萃取,质谱和多元分析预测加工乳的保质期。

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A technique based on solid-phase microextraction, mass spectrometry, and multivariate analysis (SPME-MS-MVA) was used to predict the shelf life of pasteurized and homogenized reduced-fat milk and whole-fat chocolate milk sampled over a 7 month period. Using SPME-MS-MVA, which is essentially a mass spectrometry-based electronic-nose instrument, volatile bacterial metabolites were extracted from milk with SPME (Carboxen-PDMS) and injected into a GC capillary column at elevated temperature. Mass fragmentation profiles from the unresolved milk volatile components were normalized to the intensity of a chlorobenzene internal standard mass peak (m/z 112) and subjected to MVA. Prediction models based on partial least-squares regression of mass intensity lists were able to predict the shelf life of samples to approximately +/-1 day, with correlation coefficients greater than 0.98 for the two types of milk samples. Using principal component analysis techniques, the procedure was also useful for classifying samples that were rendered unpalatable by nonmicrobial sources (contamination by copper and sanitizer) as well as by bacteria.
机译:使用基于固相微萃取,质谱和多元分析(SPME-MS-MVA)的技术来预测经过7个月采样的巴氏灭菌和均质化的减脂牛奶和全脂巧克力牛奶的保质期。使用本质上是基于质谱的电子鼻仪器SPME-MS-MVA,用SPME(Carboxen-PDMS)从牛奶中提取挥发性细菌代谢物,并在高温下注入GC毛细管柱中。来自未溶解的牛奶挥发性成分的质量碎片图被标准化为氯苯内标质量峰(m / z 112)的强度,并进行MVA分析。基于质量强度列表的偏最小二乘回归的预测模型能够预测样品的保质期约+/- 1天,两种类型的牛奶样品的相关系数均大于0.98。使用主成分分析技术,该程序还可用于对因非微生物来源(被铜和消毒剂污染)以及细菌而变得难吃的样品进行分类。

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