Human milk oligosaccharides: Every baby needs a sugar mama
Олигосахариды грудного молока: каждому ребёнку нужна «сахарная мама»
2012-04-18
SCID: 54.1/2rkd97sa
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antiadhesive antimicrobials / soluble decoy receptorshuman milk oligosaccharides (HMOs)modulation of epithelial and immune responsesnecrotizing enterocolitis risk reductionprebiotic bifidus factor
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Abstract (AI)
Human milk oligosaccharides (HMOs) are a family of structurally diverse unconjugated glycans that are highly abundant in and unique to human milk. Originally, HMOs were discovered as a prebiotic "bifidus factor" that serves as a metabolic substrate for desired bacteria and shapes an intestinal microbiota composition with health benefits for the breast-fed neonate. Today, HMOs are known to be more than just "food for bugs". An accumulating body of evidence suggests that HMOs are antiadhesive antimicrobials that serve as soluble decoy receptors, prevent pathogen attachment to infant mucosal surfaces and lower the risk for viral, bacterial and protozoan parasite infections. In addition, HMOs may modulate epithelial and immune cell responses, reduce excessive mucosal leukocyte infiltration and activation, lower the risk for necrotizing enterocolitis and provide the infant with sialic acid as a potentially essential nutrient for brain development and cognition. Most data, however, stem from in vitro, ex vivo or animal studies and occasionally from association studies in mother-infant cohorts. Powered, randomized and controlled intervention studies will be needed to confirm relevance for human neonates. The first part of this review introduces the pioneers in HMO research, outlines HMO structural diversity and describes what is known about HMO biosynthesis in the mother's mammary gland and their metabolism in the breast-fed infant. The second part highlights the postulated beneficial effects of HMO for the breast-fed neonate, compares HMOs with oligosaccharides in the milk of other mammals and in infant formula and summarizes the current roadblocks and future opportunities for HMO research.
Key Findings
1
HMOs act as antiadhesive antimicrobials/soluble decoy receptors that prevent pathogen attachment and lower risk of viral, bacterial, and protozoan infections.
2
HMOs function as prebiotic 'bifidus factor' substrates that shape intestinal microbiota composition with health benefits for breast-fed neonates.
3
HMOs may supply sialic acid as a potentially essential nutrient for infant brain development and cognition, but most evidence is from in vitro, ex vivo, animal or associative cohort studies, requiring powered randomized controlled trials for confirmation in human neonates.
4
HMOs modulate epithelial and immune cell responses, reduce excessive mucosal leukocyte infiltration and activation, and may lower necrotizing enterocolitis risk.
5
Human milk oligosaccharides (HMOs) are abundant, structurally diverse unconjugated glycans unique to human milk.
Research Object
Human milk oligosaccharides (HMOs)
Research Subject
Biological functions and effects of HMOs for breast-fed neonates, including prebiotic activity, antiadhesive antimicrobial decoy receptor action, modulation of epithelial and immune responses, protection against infections and necrotizing enterocolitis, and provision of sialic acid, as well as their structural diversity, biosynthesis in the mammary gland, metabolism in infants, and comparison with oligosaccharides from other milks and formulas
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2012-04-18
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