An Extensively Hydrolyzed Formula Supplemented with Two Human Milk Oligosaccharides Modifies the Fecal Microbiome and Metabolome in Infants with Cow's Milk Protein Allergy.

International journal of molecular sciences. 2023;24(14)
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Human milk oligosaccharides (HMO) are important for the establishment and maturation of the early microbiome in infants and as such play a role in modulating immunity. The aim of this double-blind, randomised, controlled study was to evaluate the effect of HMO supplementation of extensively hydrolysed formula (EHF) on the faecal microbiome in infants with cow’s milk protein allergy (CMPA). 194 non-breastfed infants with CMPA were randomised to receive either an HMO supplemented EHF or control EHF until 12 months of age. The HMO supplemented infants displayed a higher abundance of bifidobacteria and slower microbiome maturation compared to controls as well as changes in faecal amino acid degradation and bile acid conjugation. These effects were more pronounced in infants who were started on the intervention before the age of 3 months. The authors concluded that HMO supplementation reversed, in part, the dysbiosis commonly observed in infants with CMPA.

Abstract

Cow's milk protein allergy (CMPA) is a prevalent food allergy among infants and young children. We conducted a randomized, multicenter intervention study involving 194 non-breastfed infants with CMPA until 12 months of age (clinical trial registration: NCT03085134). One exploratory objective was to assess the effects of a whey-based extensively hydrolyzed formula (EHF) supplemented with 2'-fucosyllactose (2'-FL) and lacto-N-neotetraose (LNnT) on the fecal microbiome and metabolome in this population. Thus, fecal samples were collected at baseline, 1 and 3 months from enrollment, as well as at 12 months of age. Human milk oligosaccharides (HMO) supplementation led to the enrichment of bifidobacteria in the gut microbiome and delayed the shift of the microbiome composition toward an adult-like pattern. We identified specific HMO-mediated changes in fecal amino acid degradation and bile acid conjugation, particularly in infants commencing the HMO-supplemented formula before the age of three months. Thus, HMO supplementation partially corrected the dysbiosis commonly observed in infants with CMPA. Further investigation is necessary to determine the clinical significance of these findings in terms of a reduced incidence of respiratory infections and other potential health benefits.

Lifestyle medicine

Patient Centred Factors : Mediators/Microbiome
Environmental Inputs : Nutrients
Personal Lifestyle Factors : Nutrition
Functional Laboratory Testing : Stool
Bioactive Substances : Human milk oligosaccharides

Methodological quality

Jadad score : 3
Allocation concealment : Not applicable

Metadata

Nutrition Evidence keywords : Cow's milk protein allergy