食品科学 ›› 2026, Vol. 47 ›› Issue (13): 1-8.doi: 10.7506/spkx1002-6630-20251024-171

• 基础研究 •    下一篇

富含乳脂肪球膜乳清分离蛋白粉体外模拟婴幼儿胃肠道消化特性

龙田静,王亚格,张依锦,董凯伦,刘菲帆,赵佳园,陶明煊,罗海波,刘琛,郭宇星   

  1. (1.南京师范大学食品与制药工程学院,江苏 南京 210000;2.江苏农牧科技职业技术学院食品与健康学院,江苏 泰州 225300)
  • 出版日期:2026-07-15 发布日期:2026-07-17
  • 基金资助:
    江苏省高等学校基础科学(自然科学)研究重大项目(25KJA550002); 省部共建农产品质量安全危害因子与风险防控国家重点实验室项目(2021DG700024-KF202424); 国家自然科学基金面上项目(32372355);江苏省前沿技术研发计划(现代农业)项目(SBF20250400061); 江苏省林业科技创新与推广项目(LYKJ[2022]12)

In Vitro Infant Gastrointestinal Digestion Characteristics of Milk Fat Globule Membrane-Enriched Whey Protein Isolates

LONG Tianjing, WANG Yage, ZHANG Yijin, DONG Kailun, LIU Feifan, ZHAO Jiayuan, TAO Mingxuan, LUO Haibo, LIU Chen, GUO Yuxing   

  1. (1. School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing 210000, China; 2. College of Food and Health, Jiangsu Agri-animal Husbandry Vocational College, Taizhou 225300, China)
  • Online:2026-07-15 Published:2026-07-17

摘要: 近年来,富含乳脂肪球膜(milk fat globule membrane,MFGM)的乳清分离蛋白(whey protein isolate,WPI)粉(M-WPI)作为一种新兴的婴幼儿配方乳粉配料受到广泛关注。分析并比较3 种不同来源M-WPI(Hilmar M-WPI、Friesland M-WPI、Fonterra M-WPI)的氨基酸组成、蛋白质溶解性、磷脂分布、粒径与Zeta电位及其在体外模拟婴幼儿消化过程中的微观结构变化与蛋白质水解特性,并构建3 种M-WPI乳液,通过激光扫描共聚焦显微镜和傅里叶变换红外光谱对乳液结构进行分析和表征。结果显示,相较于Fonterra M-WPI,Hilmar M-WPI和Friesland M-WPI的亲水性氨基酸相对含量更高,蛋白质溶解性更好,粒径较小,消化速率较快;3 种M-WPI中,MFGM蛋白的体外模拟婴幼儿消化耐受性存在差异,其中嗜乳脂蛋白在胃消化段表现出较高消化稳定性;此外,3 种M-WPI构建的乳液均能在不同程度上形成磷脂环状包裹的类母乳脂肪球界面结构。本研究为不同来源M-WPI在婴幼儿配方乳粉及功能性乳制品中的配方优化与应用提供了理论支撑。

关键词: 富含乳脂肪球膜乳清蛋白粉;模拟婴幼儿体外胃肠消化;蛋白质体外消化;仿母乳脂肪球膜结构

Abstract: As an emerging ingredient for infant formula, milk fat globule membrane (MFGM)-enriched whey protein isolate (M-WPI) has attracted widespread interest in recent years. This study analyzed and compared the amino acid composition, protein solubility, phospholipid distribution, particle size, and zeta potential of M-WPI from three different sources (Hilmar M-WPI, Friesland M-WPI, and Fonterra M-WPI) along with changes in their microstructure and protein hydrolysis characteristics during in vitro simulated infant digestion. Furthermore, three M-WPI emulsions were constructed and analyzed for their structural properties using confocal laser scanning microscopy (CLSM) and Fourier transform infrared (FTIR) spectroscopy. The results showed that compared with Fonterra M-WPI, Hilmar and Friesland M-WPI exhibited higher hydrophilic amino acid relative contents, better protein solubility, smaller particle size, and faster digestion rates. Differences were observed in the simulated infant digestion tolerance of MFGM proteins among the three M-WPI samples, with butyrophilin demonstrating higher digestive stability in the gastric phase. Additionally, emulsions prepared with all three M-WPIs formed phospholipid-coated, breast milk-like fat globule interfacial structures to varying degrees. The findings of this study provide theoretical support for the application and formulation optimization of M-WPI from different sources in infant formula and functional dairy products.

Key words: milk fat globule membrane-enriched whey protein isolate; in vitro simulated infant gastrointestinal digestion; in vitro protein digestion; humanized milk fat globule membrane

中图分类号: