Fecal microbiome and metabolome of infants fed bovine MFGM supplemented formula or standard formula with breast-fed infants as reference: a randomized controlled trial
Фекальный микробиом и метаболом младенцев, получавших смесь с добавлением бычьей мембраны жировых глобул молока или стандартную смесь, с младенцами на грудном вскармливании в качестве референсной группы: рандомизированное контролируемое исследование
2019-08-12
SCID: 54.1/6u4qm39g
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amino acid fermentationfecal metabolomefecal microbiomeinfant formulamilk fat globule membrane
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Abstract (AI)
Human milk delivers an array of bioactive components that safeguard infant growth and development and maintain healthy gut microbiota. Milk fat globule membrane (MFGM) is a biologically functional fraction of milk increasingly linked to beneficial outcomes in infants through protection from pathogens, modulation of the immune system and improved neurodevelopment. In the present study, we characterized the fecal microbiome and metabolome of infants fed a bovine MFGM supplemented experimental formula (EF) and compared to infants fed standard formula (SF) and a breast-fed reference group. The impact of MFGM on the fecal microbiome was moderate; however, the fecal metabolome of EF-fed infants showed a significant reduction of several metabolites including lactate, succinate, amino acids and their derivatives from that of infants fed SF. Introduction of weaning food with either human milk or infant formula reduces the distinct characteristics of breast-fed- or formula-fed- like infant fecal microbiome and metabolome profiles. Our findings support the hypothesis that higher levels of protein in infant formula and the lack of human milk oligosaccharides promote a shift toward amino acid fermentation in the gut. MFGM may play a role in shaping gut microbial activity and function.
Key Findings
1
Bovine MFGM supplementation produced a moderate impact on the fecal microbiome compared with standard infant formula.
2
Higher formula protein levels and absence of human milk oligosaccharides were associated with a shift toward gut amino-acid fermentation.
3
Introducing weaning foods diminished the distinct breast-fed versus formula-fed characteristics of infant fecal microbiome and metabolome profiles.
4
MFGM-supplemented formula significantly reduced fecal lactate, succinate, amino acids, and amino-acid derivatives relative to standard formula.
5
The findings suggest that MFGM can influence gut microbial activity and metabolic function in formula-fed infants.
Research Object
Fecal microbiome and metabolome of infants fed bovine MFGM-supplemented experimental formula, standard formula, or breast milk (reference)
Research Subject
The effects of bovine MFGM supplementation and feeding type on infant gut microbial composition and metabolic activity, including metabolite profiles and amino acid fermentation
Publication Details
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2019-08-12
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