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Reproductive Hormone Concentrations and Associated Anatomical Responses: Does Soy Formula Affect Minipuberty in Boys?
Helen B Chin1, Andrea Kelly2,3, Margaret A Adgent4
1Department of Global and Community Health, George Mason University, Fairfax, VA 22030, USA.
Insights
Infant soy formula does not affect male reproductive hormone levels. However, soy formula feeding was linked to faster penile growth and slower anogenital distance changes in infant boys compared to breastfeeding.
Area of Science:
- Pediatric Endocrinology
- Infant Nutrition
- Reproductive Health
Background:
- Soy formula is a common infant food, exposing infants to phytoestrogens.
- Phytoestrogens are known to affect female infant vaginal cytology.
- The impact of soy formula on male infant reproductive development is not well-established.
Purpose of the Study:
- To investigate the association between infant feeding practices and reproductive hormones in infant boys.
- To assess the influence of soy formula on hormone-responsive tissues in infant males.
Main Methods:
- Prospective cohort study of 147 infant boys from birth to 28 weeks.
- Longitudinal assessment of serum testosterone, luteinizing hormone, penile length, anogenital distance, and testis volume.
- Mixed-effects regression splines used to analyze feeding-group differences in age trajectories.
Main Results:
- Serum testosterone levels were similar across all feeding groups (soy formula, cow milk formula, breast milk).
- No significant differences in hormone concentrations or anatomical measures were observed between soy and cow milk formula groups.
- Soy formula-fed boys showed a faster increase in penile length and slower initial anogenital distance lengthening compared to breastfed boys.
Conclusions:
- Infant male reproductive hormone concentrations and anatomical development do not appear to be affected by soy formula compared to cow milk formula.
- Findings suggest that early male reproductive development measures do not respond to phytoestrogen exposure from soy formula during infancy.
Context:
Soy formula feeding is common in infancy and is a source of high exposure to phytoestrogens, documented to influence vaginal cytology in female infants. Its influence on minipuberty in males has not been established.
Objective:
To assess the association between infant feeding practice and longitudinally measured reproductive hormones and hormone-responsive tissues in infant boys.
Methods:
The Infant Feeding and Early Development study was a prospective cohort of maternal-infant dyads requiring exclusive soy formula, cow milk formula, or breast milk feeding during study follow-up. In the 147 infant boy participants, serum testosterone, luteinizing hormone, stretched penile length, anogenital distance, and testis volume were longitudinally assessed from birth to 28 weeks. We examined feeding-group differences in age trajectories for these outcomes using mixed-effects regression splines.
Results:
Median serum testosterone was at pubertal levels at 2 weeks (176 ng/dL [quartiles: 124, 232]) and remained in this range until 12 weeks in all feeding groups. We did not observe differences in trajectories of hormone concentrations or anatomical measures between boys fed soy formula (n = 55) and boys fed cow milk formula (n = 54). Compared with breastfed boys (n = 38), soy formula-fed boys had a more rapid increase in penile length (P = .004) and slower initial lengthening of anogenital distance (P = .03), but no differences in hormone trajectories.
Conclusion:
Reproductive hormone concentrations and anatomical responses followed similar trajectories in soy and cow milk formula-fed infant boys. Our findings suggest that these measures of early male reproductive development do not respond to phytoestrogen exposure during infancy.
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