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A Longitudinal Study of Estrogen-Responsive Tissues and Hormone Concentrations in Infants Fed Soy Formula
Margaret A Adgent1,2, David M Umbach3, Babette S Zemel4,5
1Epidemiology Branch, National Institute of Environmental Health Sciences, National Institutes of Health, Research Triangle Park, North Carolina.
Insights
Infants fed soy formula showed estrogenic effects on development compared to cow
Area of Science:
- Endocrinology
- Pediatrics
- Developmental Biology
Background:
- Infants fed soy formula experience high exposure to isoflavones, which are chemicals with estrogen-like activity.
- The physiological effects of this exposure on infant development are not well understood.
Purpose of the Study:
- To compare estrogen-responsive postnatal development in infants fed exclusively soy formula, cow-milk formula, or breast milk.
Main Methods:
- A cohort of 410 infants was divided into three feeding groups: soy formula, cow-milk formula, and breast milk.
- Measurements included maturation index of epithelial cells, uterine volume, breast-bud diameter, and hormone levels.
- Statistical analysis used mixed-effects regression splines to estimate developmental trajectories.
Main Results:
- Girls fed soy formula showed a higher vaginal-cell maturation index and slower decrease in uterine volume compared to those fed cow-milk formula.
- No significant differences in breast-bud diameter or hormone levels were observed between soy-fed and cow-milk-fed girls.
- Boys fed soy formula showed no significant differences compared to those fed cow-milk formula; estradiol was undetectable.
Conclusions:
- Soy formula feeding in girls was associated with developmental trajectories indicative of exogenous estrogen exposure.
- Further research is necessary to fully understand the long-term effects of soy-based formula on child development.
Purpose:
Chemicals with hormonelike activity, such as estrogenic isoflavones, may perturb human development. Infants exclusively fed soy-based formula are highly exposed to isoflavones, but their physiologic responses remain uncharacterized. Estrogen-responsive postnatal development was compared in infants exclusively fed soy formula, cow-milk formula, and breast milk.
Methods:
We enrolled 410 infants born in Philadelphia-area hospitals between 2010 and 2014; 283 were exclusively fed soy formula (n = 102), cow-milk formula (n = 111), or breast milk (n = 70) throughout the study (birth to 28 or 36 weeks for boys and girls, respectively). We repeatedly measured maturation index (MI) in vaginal and urethral epithelial cells using standard cytological methods, uterine volume and breast-bud diameter using ultrasound, and serum estradiol and follicle-stimulating hormone levels. We estimated MI, organ-growth, and hormone trajectories by diet using mixed-effects regression splines.
Results:
Maternal demographics did not differ between cow-milk-fed and soy-fed infants but did differ between formula-fed and breastfed infants. Vaginal-cell MI trended higher (P = 0.01) and uterine volume decreased more slowly (P = 0.01) in soy-fed girls compared with cow-milk-fed girls; however, their trajectories of breast-bud diameter and hormone concentrations did not differ. We observed no significant differences between boys fed cow-milk vs soy formula; estradiol was not detectable. Breastfed infants differed from soy-formula-fed infants in vaginal-cell MI, uterine volume, and girls' estradiol and boys' breast-bud diameter trajectories.
Conclusions:
Relative to girls fed cow-milk formula, those fed soy formula demonstrated tissue- and organ-level developmental trajectories consistent with response to exogenous estrogen exposure. Studies are needed to further evaluate the effects of soy on child development.
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