美拉德反应
化学
褐变
糖基化
低聚糖
食品科学
反应性(心理学)
糖基化
婴儿配方奶粉
生物化学
动力学
色谱法
氨基酸
牛奶蛋白
碳水化合物
糖基化终产物
赖氨酸
牛乳
水解
乳制品
作者
Simiao Liu,Meixi Liu,Lei Guan,Yujie Pan,Xin Liu,Yuzhuo Wang,Fazheng Ren,Xuemei Wang,Hao Zhang
标识
DOI:10.1111/1750-3841.70655
摘要
The Maillard reactions during dairy processing significantly affect both nutritional quality and product browning. However, the reactivity differences between human milk oligosaccharides (HMOs) and milk proteins remain unclear-a critical knowledge gap in optimizing infant formula production. This study systematically investigated the reaction kinetics of two structurally distinct HMOs (2'-fucosyllactose and lacto-N-neotetraose) with three major milk proteins (α-lactalbumin, β-lactoglobulin, and β-casein). Combining multiple methods, including furosine quantification, browning degree, SDS-PAGE, and free amino groups, it was found that 2'-fucosyllactose produced 1.3 times more Maillard reaction products than lacto-N-neotetraose, while α-lactalbumin exhibited the earliest glycation among the tested proteins. Kinetic modeling further established a reactivity hierarchy: 2'-fucosyllactose > lacto-N-neotetraose for HMOs and α-lactalbumin > β-lactoglobulin > β-casein for proteins. These findings provide the first comparative kinetic framework for HMO-milk protein interactions, providing specific optimization targets for dairy processing to minimize nutrient losses while controlling browning during infant formula production.
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