Milk fat globule membrane: composition, production and its potential as encapsulant for bioactives and probiotics

益生菌 食品科学 免疫系统 化学 消化(炼金术) 微生物学 生物 细菌 免疫学 色谱法 遗传学
作者
Dan Yao,Chaminda Senaka Ranadheera,Cai Shen,Wei Wei,Ling‐Zhi Cheong
出处
期刊:Critical Reviews in Food Science and Nutrition [Taylor & Francis]
卷期号:: 1-16 被引量:11
标识
DOI:10.1080/10408398.2023.2249992
摘要

AbstractMilk fat globule membrane (MFGM) is a complex trilayer structure present in mammalian milk and is mainly composed of phospholipids and proteins (>90%). Many studies revealed MFGM has positive effects on the immune system, brain development, and cognitive function of infants. Probiotics are live microorganisms that have been found to improve mental health and insulin sensitivity, regulate immunity, and prevent allergies. Probiotics are unstable and prone to degradation by environmental, processing, and storage conditions. In this review, the processes used for encapsulation of probiotics particularly the potential of MFGM and its constituents as encapsulating materials for probiotics are described. This study analyzes the importance of MFGM in encapsulating bioactive substances and emphasizes the interaction with probiotics and the gut as well as its resistance to adverse environmental factors in the digestive system when used as a probiotic embedding material. MFGM can enhance the gastric acid resistance and bile resistance of probiotics, mainly manifested in the survival rate of probiotics. Due to the role of digestion, MFGM-coated probiotics can be released in the intestine, and due to the biocompatibility of the membrane, it can promote the binding of probiotics to intestinal epithelial cells, and promote the colonization of some probiotics in the intestine.Keywords: Colonizationencapsulationgastric acid and bile resistanceMilk fat globule membraneprobiotics Disclosure statementNo potential conflict of interest was reported by the authors.Additional informationFundingThe authors acknowledge the support of Key R&D Program of Zhejiang (2022C04009, China). Dan Yao acknowledged funding support from Zhejiang Xinmiao Talent Program (2022R405B071).
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