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Levels of organophosphate flame retardants and their metabolites among 391 volunteers in Taiwan

Difference between adults and children

Bibliographic Data

ID22079487
AuthorsFu-Jen Cheng, Fu‐Jen Cheng (0000-0003-1960-2274, Chang Gung University), Chih-Hwa Wang (0000-0002-3695-7889, Chang Gung University), Hsiu-Yung Pan (0009-0001-7341-4082, Chang Gung University), Chih-Cheng Chen (0000-0003-2530-8733), Chih‐cheng Chen (0000-0001-8723-6152, Chang Gung University), Wan-Ting Huang (0009-0001-3383-7945), Wan‐Ting Huang (0000-0002-4344-9567, Chang Gung University), Shau-Hsuan Li (0000-0002-7140-9132, Chang Gung University), Liang‐Jen Wang (0000-0002-5320-1151, Chang Gung University), Liang-Jen Wang, Chin‐Chou Wang (0000-0003-2932-751X, Chang Gung University), Chin-Chou Wang, Wen‐Chin Lee (0000-0001-6172-1483, Chang Gung University), Wen-Chin Lee, Kai‐Fan Tsai (0000-0002-0148-3302, Chang Gung University), Kai-Fan Tsai, Yu‐Che Ou (0000-0002-2849-5661, Chang Gung University), Yu-Che Ou, Chia‐Te Kung (0000-0002-8158-9587, Chang Gung University, corresponding author), Chia-Te Kung
Year2023
Volume11
Pages1186561-1186561
Publication date2023-08-30
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Public Health (JOURNAL)
Journal identifiersISSN: 2296-2565 • E-ISSN: 2296-2565
PublisherFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fpubh.2023.1186561
PMID37711251
OpenAlexW4386329561
LanguageEN
References cited56

Background Organophosphate flame retardants (OPFRs) are ubiquitous in the environment. The compositions and concentrations of different OPFRs metabolites vary in different environments depending on different human activities. The objective of the present study was to evaluate the exposure of different age groups to OPFRs in Taiwan. Methods Volunteers provided urine samples and responded to questionnaires including demographic factors, underlying disease, lifestyle information, and occupation from October 2021 to January 2022. OPFR measurements were performed using a Waters Acquity Ultra-Performance Liquid Chromatography system coupled with a Waters Xevo TQ-XS mass spectrometer. Results A total of 391 volunteers (74 children and 317 adults) were enrolled in this study. The concentrations (presented as μg/g creatinine) of bis(1,3-dichloro-2-propyl) phosphate (BDCPP, p = 0.029) and tri-n-butyl phosphate (TNBP, p = 0.008) were higher in the adult group, while the concentrations of bis-2-chloroethyl phosphate (BCEP, p = 0.024), diphenyl phosphate (DPHP, p 6 years), the concentration of di(2-n-butoxyethyl) phthalate (DBEP, 1.14 vs. 0.20 μg/g creatinine, p = 0.001), DPHP (1.23 vs. 0.54 μg/g creatinine, p = 0.036), TBEP (1.63 vs. 0.29 μg/g creatinine, p < 0.001), and the sum of OPFR metabolites (ΣOPFRs, 6.58 vs. 2.04 μg/g creatinine, p < 0.001) were statistically higher in preschool-aged children. After adjusting for confounding factors, pre-school age [odds ratio (OR): 4.579, 95% confidence interval (CI): 1.389–13.115] and current smoker (OR: 5.328, 95%CI: 1.858–14.955) were independently associated with the risk of ΣOPFRs higher than 90 percentile. Conclusion This study revealed the distribution of different OPFRs metabolites in children and adults. DBEP, DPHP, TBEP, and ΣOPFR were higher in preschool-aged children. Pre-school age and current smoking status were independent risk factors for ΣOPFRs higher than 90 percentile

Biology · Chromatography · Creatinine · Organophosphate · Pesticide · Phosphate · Urine · Carcinogens and Genotoxicity Assessment · Chemistry · Pesticide Exposure and Toxicity · Toxic Organic Pollutants Impact · Biochemistry · Environmental Chemistry

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