Adverse reproductive effects of maternal low‐dose melamine exposure during pregnancy in rats

ABSTRACT Melamine is a heterocyclic, aromatic amine and nitrogen‐enriched environmental toxicant, found in not only adulterated foodstuffs but also industrial household tableware and paints. Previous studies demonstrated adverse effects of high‐dose melamine on human infants and pregnant animals, bu...

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Veröffentlicht in:Environmental toxicology 2017-01, Vol.32 (1), p.131-138
Hauptverfasser: Chu, Ching Yan, Tang, Ling Ying, Li, Lu, Shum, Alisa Sau Wun, Fung, Kwok Pui, Wang, Chi Chiu
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Sprache:eng
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Zusammenfassung:ABSTRACT Melamine is a heterocyclic, aromatic amine and nitrogen‐enriched environmental toxicant, found in not only adulterated foodstuffs but also industrial household tableware and paints. Previous studies demonstrated adverse effects of high‐dose melamine on human infants and pregnant animals, but effects of low‐dose melamine on pregnancy have not been reported. In this study, reproductive effects of low‐dose melamine were investigated in pregnant rats. Melamine in the range of 12.5–50 mg/kg was administered to pregnant rats at different gestational stages. Maternal weight gain was not significantly affected, and other maternal morbidity was not observed. Low‐dose melamine exposure during pregnancy increased fetal size but reduced somite number in gastrulation (GD8.5–GD10.5) and organogenesis (GD10.5–GD16.5) periods, and increased incidence of stillbirth in whole gestational period (GD0.5 to delivery). Embryotoxicity of melamine was further confirmed by whole embryo culture in vitro that melamine retarded embryonic growth, impaired development of brain and heart, and induced open neural tube and atrioventricular defects with increased apoptosis. In conclusion, adverse reproductive effects of low‐dose melamine during pregnancy were identified in the developing rat embryos and the perinatal effects of melamine were gestational and developmental stage dependent. Detailed hazard and risk assessment of melamine in reproduction system are warrant. © 2015 Wiley Periodicals, Inc. Environ Toxicol 32: 131–138, 2017.
ISSN:1520-4081
1522-7278
DOI:10.1002/tox.22218