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Bisphenol-diglycidyl ethers in paired urine and serum samples from children and adolescents: Partitioning, clearance and exposure assessment. | LitMetric

Bisphenol-diglycidyl ethers in paired urine and serum samples from children and adolescents: Partitioning, clearance and exposure assessment.

Environ Pollut

Beijing Key Laboratory of Diagnostic and Traceability Technologies for Food Poisoning, Beijing Center for Disease Control & Prevention, Beijing, 100013, China. Electronic address:

Published: August 2022

AI Article Synopsis

  • The study focuses on bisphenol diglycidyl ethers (BDGEs) commonly used in food packaging and their potential toxic effects, particularly on children and adolescents.
  • Researchers analyzed urine and serum samples from 181 children and adolescents in Beijing and found that BADGE·2HO was the primary pollutant detected.
  • The findings suggest that BDGEs have varying degrees of renal clearance and a higher tendency to accumulate in blood, highlighting concerns over their safety and exposure levels among the young population.

Article Abstract

Bisphenol A diglycidyl ether (BADGE), bisphenol F diglycidyl ether (BFDGE), and their derivatives are frequently used in food packaging materials. Some toxicological studies have shown that the endocrine-disrupting activities of these compounds are similar to or higher than those of bisphenol A (BPA), which may also adversely affect the growth and development of children and adolescents. Here, we investigated nine bisphenol-diglycidyl ethers (BDGEs) in 181 paired urine and serum samples from children and adolescents from Beijing to determine their partitioning, clearance and exposure levels. The results showed that nine BDGEs were detected in 181 urine and serum samples from children and adolescents from Beijing. Bisphenol A bis(2,3-dihydroxypropyl) glycidyl ether (BADGE·2HO) was the primary pollutant. The daily intake of ∑BDGEs was 15.217 ng/kg bw/day among children and adolescents in Beijing. The ranking of BDGEs in terms of renal clearance rate (CL) in this study population was BADGE > BADGE·2HO > BFDGE > bisphenol F bis(3-chloro-2-hydroxypropyl) glycidyl ether (BFDGE·2HCl) > bisphenol A (3-chloro-2-hydroxypropyl) (2,3-dihydroxypropyl) glycidyl ether (BADGE·HCl·HO). In addition, the serum and urine ratios (S/U ratios) of BFDGE·2HCl, BADGE·2HO, BFDGE, BADGE, and BADGE·HCl·HO were higher than 1, indicating that these contaminants have a higher enrichment capacity in human blood. To our knowledge, this is the first study on the partitioning and renal clearance rate of BDGEs in paired urine and serum samples from children and adolescents.

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Source
http://dx.doi.org/10.1016/j.envpol.2022.119351DOI Listing

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