Chen Xiaoqian, Fan Rui, Wang Xinyu, Zhang Lina, Wang Caiyun, Hou Zhanqun, Li Chun, Liu Libo, He Jian
Key Laboratory of Dairy Science, College of Food Science, Northeast Agricultural University, Harbin 150030, China; Heilongjiang Green Food Science Research Institute, Harbin 150028, China.
Inner Mongolia Dairy Technology Research Institute Co., Ltd., Hohhot 010110, China; Inner Mongolia Yili Industrial Group, Co., Ltd., Hohhot 010080, China; National Center of Technology Innovation for Dairy, Hohhot 010110, China.
Food Res Int. 2024 Oct;194:114914. doi: 10.1016/j.foodres.2024.114914. Epub 2024 Aug 13.
Gastrointestinal digestibility behavior, structural and functional characteristics of bovine β-casein (β-CN) were studied in vitro under infant and adult conditions. This direct comparison helps reveal the effects of different physiological stages on the digestive behavior of β-CN. Not only was the degree of hydrolysis (DH) of β-CN analyzed, but also the changes in its digestive morphology, microstructure, and secondary structure during digestion were explored in depth. Meanwhile, we focused on the physicochemical properties of β-CN digesta, including solubility, emulsifying and foaming properties, as well as their functional properties, such as antimicrobial and antioxidant activities. Key results showed that β-CN underwent more extensive hydrolysis in the adult digestion model, with approximately twice the DH compared to the infant model. The adult model exhibited faster digestion kinetics, less protein flocculation, and a more loosened secondary structure, indicating a more efficient digestion process. Notably, the digesta from the adult model displayed significantly improved solubility and emulsifying properties, and also enhanced antioxidant capacities, with significantly better inhibition of two common pathogenic bacteria than the infant model, and an average increase in the diameter of the inhibition zone of approximately 2 mm. These findings underscore the differential digestive behavior and functional potential of β-CN across physiological stages. This comprehensive assessment approach contributes to a more comprehensive insight into the digestive behavior of β-CN. Therefore, we conclude that producing products from unmodified β-CN may be more suitable for the adult population, and that the digesta in the adult model exhibit higher functional properties.
在婴儿和成人条件下,对牛β-酪蛋白(β-CN)的胃肠道消化行为、结构和功能特性进行了体外研究。这种直接比较有助于揭示不同生理阶段对β-CN消化行为的影响。不仅分析了β-CN的水解程度(DH),还深入探讨了其在消化过程中消化形态、微观结构和二级结构的变化。同时,我们关注了β-CN消化物的物理化学性质,包括溶解性、乳化性和起泡性,以及它们的功能特性,如抗菌和抗氧化活性。关键结果表明,β-CN在成人消化模型中经历了更广泛的水解,其DH约为婴儿模型的两倍。成人模型表现出更快的消化动力学、更少的蛋白质絮凝和更松散的二级结构,表明消化过程更有效。值得注意的是,成人模型的消化物显示出显著改善的溶解性和乳化性,并且抗氧化能力增强,对两种常见病原菌的抑制作用明显优于婴儿模型,抑菌圈直径平均增加约2毫米。这些发现强调了β-CN在不同生理阶段的差异消化行为和功能潜力。这种综合评估方法有助于更全面地了解β-CN的消化行为。因此,我们得出结论,由未改性的β-CN生产产品可能更适合成年人群,并且成人模型中的消化物表现出更高的功能特性。