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Gut colonization in preterm infants supplemented with bovine colostrum in the first week of life: An explorative
Ping-Ping Jiang1,2, Tik Muk2, Lukasz Krych3
1School of Public Health, Sun Yat-sen University, Guangzhou, Guangdong, China.
Insights
Bovine colostrum (BC) supplementation in preterm infants altered gut bacteria compared to donor milk (DM). This may impact nutrient metabolism and gut development in newborns.
Area of Science:
- Neonatal nutrition
- Microbiome research
- Infant gut health
Background:
- Enteral feeding and gut colonization are crucial for preterm infant gut maturation.
- Bovine colostrum (BC) is a potential supplement for mother's milk (MM) when insufficient.
- This study investigates the impact of BC versus donor milk (DM) on gut colonization in preterm infants.
Purpose of the Study:
- To determine if bovine colostrum (BC) or donor milk (DM) supplementation affects gut microbiome development in preterm infants.
- To explore correlations between gut bacteria and plasma amino acid levels.
Main Methods:
- Fecal samples collected on day 7 from preterm infants (n=24) supplemented with BC or DM.
- Gut microbiome (GM) analyzed using 16S ribosomal RNA amplicon sequencing.
- Correlations between bacterial taxa and plasma chemistry, including amino acids, were assessed.
Main Results:
- BC-supplemented infants had lower relative abundance of Lactobacillaceae and Enterococcaceae than DM-fed infants.
- Planococcaceae abundance was higher in infants born via cesarean section.
- Enterobacteriaceae abundance negatively correlated with plasma levels of several essential and nonessential amino acids.
Conclusions:
- Neonatal nutrition supplements like BC or DM can influence gut microbiome (GM) development and nutrient metabolism in preterm infants.
- Further research is needed to confirm these findings and their long-term clinical implications for preterm infants.
Background:
In the first weeks after birth, enteral feeding and bacterial colonization interact to influence gut maturation in preterm infants. Bovine colostrum (BC) has been suggested as a relevant supplementary diet when own mother's milk (MM) is insufficient or absent. This pilot trial tests whether the supplement type, BC or donor human milk (DM), affects gut colonization in preterm infants during the first week of life.
Methods:
On day 7, fecal samples were collected from preterm infants (n = 24) fed BC or DM as a supplement to MM. The gut microbiome (GM) was analyzed by 16S ribosomal RNA amplicon sequencing. Correlations between the relative abundance of specific bacterial taxa and blood chemistry variables, including amino acids, were explored.
Results:
BC-supplemented infants showed a lower relative abundance of the families Lactobacillaceae and Enterococcaceae than DM infants. Planococcaceae were more abundant in infants delivered by cesarean birth vs vaginally. The relative abundance of bacterial families, specifically Enterobacteriaceae, correlated negatively with plasma levels of multiple essential and nonessential amino acids (valine, isoleucine, lysine, histidine, and arginine).
Conclusion:
The nature of nutrition supplements (BC or DM) just after birth may affect GM development and nutrient metabolism in the neonatal period of preterm infants. The exploratory nature of our study calls for confirmation of these results and their possible long-term clinical implications for preterm infants.
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