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Donated Human Milk as a Determinant Factor for the Gut Bifidobacterial Ecology in Premature Babies
Silvia Arboleya1,2, Silvia Saturio1,2, Marta Suárez3
1Department of Microbiology and Biochemistry of Dairy Products, Instituto de Productos Lácteos de Asturias (IPLA-CSIC), 33300 Villaviciosa, Asturias, Spain.
Insights
Donor human milk feeding in premature infants alters gut bifidobacterial populations, increasing diversity. This finding may inform strategies to optimize infant gut health when own-mother milk is unavailable.
Area of Science:
- Neonatal microbiome research
- Infant nutrition and gut health
Background:
- Premature infants often cannot breastfeed, necessitating alternative feeding methods like donor human milk.
- The impact of donor milk on the gut microbiome, specifically the genus *Bifidobacterium*, remains unclear.
Purpose of the Study:
- To investigate the effect of donor human milk versus own-mother milk on the gut bifidobacterial communities in premature infants.
- To analyze differences in *Bifidobacterium* species composition and metabolic activity based on feeding type.
Main Methods:
- Analysis of gut bifidobacterial communities in 42 premature infants using 16S rRNA-23S rRNA internal transcriber spaces (ITS) region sequencing and quantitative PCR (q-PCR).
- Assessment of fecal metabolic activity using gas chromatography.
Main Results:
- Distinct bifidobacterial profiles were observed between infants fed donor human milk and own-mother milk.
- Higher bifidobacterial diversity was noted in the group receiving human donor milk.
Conclusions:
- Feeding type significantly shapes the gut bifidobacterial composition in premature infants.
- Understanding these differences can guide the development of interventions to enhance gut health in neonatal units.
Abstract:
Correct establishment of the gut microbiome is compromised in premature babies, with Bifidobacterium being one of the most affected genera. Prematurity often entails the inability to successfully breastfeed, therefore requiring the implementation of other feeding modes; breast milk expression from a donor mother is the recommended option when their own mother's milk is not available. Some studies showed different gut microbial profiles in premature infants fed with breast milk and donor human milk, however, it is not known how this affects the species composition of the genus Bifidobacterium. The objective of this study was to assess the effect of donated human milk on shaping the gut bifidobacterial populations of premature babies during the first three months of life. We analyzed the gut bifidobacterial communities of 42 premature babies fed with human donor milk or own-mother milk by the 16S rRNA-23S rRNA internal transcriber spaces (ITS) region sequencing and q-PCR. Moreover, metabolic activity was assessed by gas chromatography. We observed a specific bifidobacterial profile based on feeding type, with higher bifidobacterial diversity in the human donor milk group. Differences in specific Bifidobacterium species composition may contribute to the development of specific new strategies or treatments aimed at mimicking the impact of own-mother milk feeding in neonatal units.
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