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High temperature storage of infant formula milk powder for prediction of storage stability at ambient conditions

机译:婴儿配方奶粉的高温储存,用于预测环境条件下的储存稳定性

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Hexanal formation and pentanal formation were found to be early signs of quality deterioration of both a high lipid infant formula milk powder and a high protein infant formula milk powder with similar lactose and water content; these aldehydes were sensitive predictors for shelf-life at ambient conditions using short term storage at temperatures up to 55 degrees C. Higher temperature loads such as 70 degrees C were found to induce rapid lactose crystallisation entailing a rising water activity, higher levels of free radicals, rapid browning and formation of Strecker aldehydes from protein degradation, of which all were found to be unsuitable for shelf-life prediction. Advanced glycation end products were not detected during storage at 25 degrees C for up to 18 weeks and the rate of oxygen consumption for the reconstituted milk drink was not affected by storage of the infant formulas at 25 degrees C; neither can be recommended for shelf-life prediction. (C) 2017 Elsevier Ltd. All rights reserved.
机译:发现己醛形成和戊醛形成是高脂质婴儿配方奶粉和高蛋白质婴儿配方奶粉的高质量恶化的早期迹象,具有类似的乳糖和含水量;这些醛在环境条件下使用短期储存在高达55摄氏度的温度下的环境条件下是敏感的预测因子。发现诸如70摄氏度的更高的温度载荷,诱导快速乳糖结晶,其需要升高的水活性,更高水平的自由基水平从蛋白质降解中,蛋白质降解的快速褐变和形成醛固醛的形成,其中所有蛋白质降解都没有适用于保质期预测。在25摄氏度下储存期间未检测到先进的糖化末端产物,最多18周,重构牛奶饮料的氧气消耗率不受25摄氏度储存的婴儿公式的影响;也可以推荐给保质期预测。 (c)2017 Elsevier Ltd.保留所有权利。

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