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February 19, 2026Environmental Science & Technology0 citations

Beyond Nephrotoxicity: Maternal–Fetal Transfer of Melamine and Potential Disruption of Placental Steroid Hormones

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YSYumeng ShiCTCuiliu TengJCJiangnan Chen

Key Points

  • This research aims to evaluate the transplacental transfer of melamine and its derivatives and their potential effects on fetal development and placental hormone production.
  • Analyzed melamine derivatives in maternal urine, blood, amniotic fluid, and cord blood.
  • Measured transplacental transfer efficiencies using association with lipophilicity.
  • Utilized BeWo assays to assess mechanistic pathways of melamine derivatives crossing the placenta.
  • Significant levels of melamine derivatives detected in fetal compartments.
  • Transplacental transfer efficiencies were notable, with values around 1.36 to 1.64.
  • Negative correlation found between maternal melamine levels and birth weight, particularly in female infants.

Abstract

The widespread use of melamine (MEL) and its derivatives has resulted in pervasive human exposure, yet their transplacental transfer and developmental consequences remain insufficiently characterized. In a mother-infant cohort, we quantified four MEL derivatives in matched maternal urine (median: 31.9 ng/mL), maternal blood (1.10 ng/mL), amniotic fluid (15.0 ng/mL), and cord blood (2.01 ng/mL), demonstrating substantial fetal exposure. Transplacental transfer efficiencies of MEL, ammelide, and cyanuric acid (CYA) were 1.46, 1.36, and 1.64, respectively, and were inversely correlated with their log Kow values. Maternal MEL concentration was negatively associated with birth weight, particularly in female infants (10β = 90.5%, 95% CI: 83.0%, 98.9%), estriol mediating approximately 30.7% of this effect. BeWo assays demonstrated that MEL derivatives cross the placental barrier via combined passive diffusion and transporter-modulated processes, involving folate-related transporters together with multiple xenobiotic transport systems. In trophoblast cells, coexposure to MEL and CYA (1:9) at environmentally relevant concentrations suppressed estradiol and estriol secretion in a nonmonotonic, dose-dependent manner, accompanied by down-regulation of key steroidogenic enzymes and compensatory up-regulation of estrogen receptors. Overall, this study provides integrated evidence that MEL analogues may cross the placenta via nutrient-mimicking transport pathways and disrupt placental steroidogenesis, potentially impairing fetal growth.

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Cite This Study

Shi et al. (2026) studied this question.

synapsesocial.com/papers/6996a7b5ecb39a600b3edaf5https://doi.org/10.1021/acs.est.5c16310
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