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Updated: May 30, 2025

Breast Milk Enhances Growth of Enteroids: An Ex Vivo Model of Cell Proliferation
Published on: February 15, 2018
Breastmilk polyamines modify gut gene expression in children at three months of age
María Sánchez-Campillo1, Antonio Gázquez2, María T Pastor-Fajardo3
1Biomedical Research Institute of Murcia (IMIB-Arrixaca), Murcia, Spain; Department of Physiology, University of Murcia, Murcia, Spain.
Insights
Breastmilk contains spermidine and spermine, crucial for infant gut and immune development. Higher polyamine levels in breastmilk influence infant intestinal gene expression related to cell localization and immunity.
Area of Science:
- Human nutrition
- Molecular biology
- Immunology
Background:
- Breastmilk is a primary source of polyamines for newborns, essential for gut maturation and immune regulation.
- Polyamines play a vital role in infant development, though mechanisms require further elucidation.
- Human milk polyamine content exceeds that of infant formulas.
Purpose of the Study:
- Quantify polyamines in mature human breastmilk.
- Investigate the effects of breastmilk polyamines on infant intestinal gene expression at three months of age.
Main Methods:
- Quantified polyamines (spermidine, spermine, putrescine) in mature milk from 195 mothers.
- Assessed maternal dietary intake using food frequency questionnaires.
- Analyzed intestinal gene expression in infants via microarray on gut exfoliated cells, comparing high vs. low polyamine milk consumers.
Main Results:
- Spermidine and spermine were the predominant polyamines in breastmilk; putrescine levels were lower.
- Maternal diet did not correlate with breastmilk polyamine levels; no differences found between allergic and non-allergic mothers.
- High polyamine breastmilk intake altered gene expression in infant gut cells, significantly impacting cell localization and immune system pathways, with 15 differentially expressed genes identified.
Conclusions:
- Mature breastmilk is rich in spermidine and spermine.
- Higher breastmilk polyamine concentrations are associated with distinct intestinal gene expression patterns in infants, particularly in immune-related genes.
Background & Aims:
Breastmilk is one of the main sources of exogenous polyamines for newborns and contains higher polyamine content than infant formulas. Polyamines are involved in gut maturation and immune system regulation in animals, although the underlying mechanisms are not fully understood. We quantified polyamines in human mature breastmilk and evaluate their effects on intestinal gene expression in babies at three months of age.
Methods:
Polyamines were quantified in mature milk of 195 women from the prospective Mediterranean NELA birth cohort (Murcia, Spain) at 3 months postpartum. Maternal dietary intake was assessed by food frequency questionnaires. Intestinal gene expression was analysed in babies receiving breastmilk, with high (>p50, n = 25) or low (
Results:
Spermidine and spermine were the most prevalent polyamines in breastmilk at 3 months postpartum, while levels of putrescine were lower. Maternal dietary intake of polyamines was not associated with polyamine concentration in breastmilk and there were no differences in the polyamine content between allergic and non-allergic mothers. Microarray analyses of exfoliated gut cells revealed that cell localization and immune system were the most significant biological processes affected by high vs low polyamines in breastmilk. There were 15 differentially expressed genes, 3 up-regulated and 12 down-regulated, in high compared to low polyamine groups. Among the up-regulated genes were tumour necrosis factor alpha-induced protein 6 (TNFAIP6) and interleukin 8; while other immune system-related genes, such as integral membrane protein 2C, lymphocyte antigen 6 complex, transmembrane protein 179B were down-regulated.
Conclusions:
Mature breastmilk presents spermidine and spermine as the most prevalent polyamines. Babies receiving milk with higher polyamine levels showed differences in the expression of genes associated with cell localization and immune system processes.
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