Functional Significance of Different Milk Constituents in Modulating the Gut Microbiome and Infant Health
Monica Yadav, Ayushi Kapoor, Aparna Verma, Kiran Ambatipudi
Journal of Agricultural and Food Chemistry
Abstract
Human milk, the gold standard for optimal nourishment, controls the microbial composition of infants by either enhancing or limiting bacterial growth. The milk fat globule membrane has gained interest in gut-related functions and cognitive development. The membrane proteins can directly interact with probiotic bacteria, influencing their survival and adhesion through gastrointestinal transit, whereas membrane phospholipids increase the residence time of probiotic bacteria in the gut. The commensal bacteria in milk act as the initial inoculum in building up the gut colonization of an infant, whereas oligosaccharides promote proliferation of beneficial microorganisms. Interestingly, milk extracellular vesicles are also involved in influencing the microbiota composition but are not well-explored. This review highlights the contribution of different milk components in modulating the infant gut microbiota, particularly the fat globule membrane, and the complex interplay between host- and brain-gut microbiota signaling affecting infant and adult health positively.
Extracted Claims
3 claims extracted from this paper into the knowledge graph
milk oligosaccharides promote proliferation of beneficial microorganisms
“oligosaccharides promote proliferation of beneficial microorganisms”
milk fat globule membrane influences probiotic bacteria survival and adhesion
“The membrane proteins can directly interact with probiotic bacteria, influencing their survival and adhesion through gastrointestinal transit”
milk fat globule membrane phospholipids increase residence time of probiotic bacteria in the gut
“whereas membrane phospholipids increase the residence time of probiotic bacteria in the gut”