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Updated: May 28, 2026

Long-term Behavioral and Reproductive Consequences of Embryonic Exposure to Low-dose Toxicants
Published on: March 6, 2018
In-Utero Exposure to Electronic Waste Heavy Metals and Adverse Pregnancy and Neonatal Outcomes: A Systematic Review
Jianna R D Sparrow1, George Gray1, Jordan Fischbach1
1Department of Environmental and Occupational Health, Milken Institute of Public Health, The George Washington University, Washington, DC 20052, USA.
Abstract:
Electronic waste (e-waste) recycling releases heavy metals into surrounding environments, creating potential health risks for nearby populations, particularly pregnant women and developing fetuses. This systematic review evaluated human evidence linking prenatal exposure to heavy metals originating from informal e-waste recycling with adverse pregnancy and neonatal outcomes. Electronic databases, including PubMed and Scopus, were searched through 23 September 2025, for studies measuring heavy metal exposure among pregnant women or neonates living in e-waste-affected communities. Following the Navigation Guide methodology, eight observational studies met the inclusion criteria and were assessed for risk of bias and strength of evidence. Across studies, concentrations of heavy metals were higher in exposed populations and were detected in maternal blood, placenta, cord blood, urine, and meconium samples from exposed populations. Prenatal exposure was consistently associated with adverse outcomes, with many studies reporting statistically significant associations between heavy metal exposure and reduced birth weight, length, head circumference, gestational age, neonatal body mass index, lower Apgar scores, impaired neonatal neurobehavioral development, placental molecular alterations, endocrine disruption, and increased neonatal DNA damage. Overall, the evidence was rated as moderate quality with sufficient evidence linking prenatal heavy-metal exposure from e-waste to impaired fetal growth and neonatal development, and limited evidence for pregnancy complications. These findings highlight the need for improved regulation of e-waste recycling and strengthened public health protections for vulnerable populations.
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