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Application of Fluorescence Spectroscopy for Monitoring Changes in Nonfat Dry Milk During Storage

机译:荧光光谱在监测脱脂奶粉储存过程中的变化中的应用

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The objective of this study was to determine if fluorescence spectroscopy could be used to characterize the biochemical characteristics of nonfat dry milk (NDM) caused by manufacturing and storage conditions. Nine low-heat NDM samples were collected from 3 manufacturers and stored at 4 temperatures (4, 22, 35, and 50℃) for 8 wk. The spectra of Maillard products, trypto-phan, and riboflavin were recorded and analyzed with principal components analysis. Colorimetric indices L~*, a~*, and b~* were also determined. The before-storage NDM samples collected from each manufacturer had different fluorescent characteristics. Inconsistency was observed for the NDM samples collected from 1 manufacturer, whereas the samples from the other 2 manufacturers displayed consistent fluorescence characteristics. Biochemical reactions, such as Maillard reaction, modification of the tryptophan environment, and degradation of riboflavin occurred during the manufacturing process. For each of the data collections, discrimination of the NDM samples stored at 50℃ from the samples stored at 4, 22, and 35℃ was observed in the similarity maps. The factor loadings of the first 2 principal components for the fluorescence spectra of the samples before storage were similar to the principal components analysis results of the samples during storage. It appears that similar factors are responsible for the variation in the samples before storage and their changes during storage. Additionally, storage of the samples at 50℃ accelerated these reactions. The results demonstrate that front-face fluorescence spectroscopy, coupled with multivariate statistical methods, can be utilized as an analytical technique to monitor variation in NDM samples from different manufacturers and changes during storage.
机译:这项研究的目的是确定荧光光谱法是否可用于表征由制造和储存条件引起的脱脂奶粉(NDM)的生化特性。从3个制造商处收集了9个低热NDM样品,并在4个温度(4、22、35和50℃)下存储了8周。记录美拉德产物,色氨酸和核黄素的光谱,并用主成分分析法进行分析。还确定了比色指数L〜*,a〜*和b〜*。从每个制造商收集的存储前NDM样品具有不同的荧光特性。从一个制造商处收集的NDM样品观察到不一致,而从其他两个制造商处收集的样品显示出一致的荧光特性。在制造过程中发生了生化反应,例如美拉德反应,色氨酸环境的改变和核黄素的降解。对于每个数据收集,在相似图中都观察到了分别将50℃的NDM样品与4、22和35℃的NDM样品区分开。储存前样品荧光光谱的前2个主成分的因子负载与保存期间样品的主成分分析结果相似。似乎相似的因素是造成样品在储存前的变化以及在储存期间的变化的原因。此外,将样品保存在50℃会加速这些反应。结果表明,正面荧光光谱技术与多元统计方法相结合,可以用作分析技术,以监测来自不同制造商的NDM样品的变化以及在存储过程中的变化。

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