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Serum concentrations of legacy and emerging halogenated flame retardants in a Norwegian cohort: Relationship to external exposure

机译:在挪威队列中的血清遗产和新出现的卤化阻燃剂:与外部暴露的关系

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摘要

Sixty-one serum samples from a Norwegian cohort were analyzed for 43 emerging and legacy halogenated flame retardants (HFRs). BDE-47, -153, -197 and -209 were detected in >56% of the samples with median concentrations of 0.23, 1.0, 0.64 and 1.5ng/g lipid, respectively. BDE-49, -85, -99, -100, -154, -206, -207, - 208 as well as HBB, syn- and anti-DDC-CO, OBTMPI, DBDPE, α-HBCDD and TBBPA were also detected in some serum samples (detection frequencies of 2-36%). Other tri-octaBDEs, TBP-AE, α- and β-DBE-DBCH, BATE, pTBX, αβ-TBCO, PBBz, TBCT, PBT, PBEB, DPTE, EH-TBB, BTBPE, BEH-TEBP, HCDBCO,-β and γ-HBCDD were below the limits of detection (mLOD). Concentrations of individual BDE congeners detected in this study were within the range from previous European studies. Positive correlations were seen between concentrations of BDE-47 in dust and BDE-153 in serum, between BDE-153 in dust and BDE-153 in serum, and between BDE-153 masses in handwipes and BDE-47 concentrations in serum (Spearman's rank, 0.29 < r < 0.43). Associations between the number of phones/mobiles, numbers of electronic equipment per person in the home and the consumption of specific food categories (such as soups/spices/sauces and alcoholic beverages) with BDE-47 and -153 serum levels were confirmed by multivariate linear regression analyses. The measured median serum level of BDE-47 was slightly over-predicted by a factor of 5.5 whereas other BDE congeners were under-predicted by factors of 13-6000 when compared to serum concentrations predicted from external exposure media (inhalation, dermal uptake, dietary intake from duplicate diet and dust ingestion) using a simple one compartment pharmacokinetic (PK) model. BDE-153 was not detected and BDE-197 not analyzed in food so no dietary intake assessments for these could be made, which may partially explain the discrepancies between their measured and predicted serum concentrations. Overall, our results suggest that exposure via diet is the most important exposure pathway for BDE-47 and -209, with diet being responsible for more than 96% of the total daily intake of these two BDEs in the Norwegian cohort.
机译:分析来自挪威队队队的六十一体血清样本,43个新兴和遗留卤化阻燃剂(HFRS)。 BDE-47,-153,-197和-209分别检测> 56%的样品,分别为0.23,1.0,0.64和1.5ng / g脂质的中值浓度。还检测到BDE-49,-85,-29,-100,-154,-206,-207,-208以及HBB,Syn-and Anti-DDC-Co,Detmpi,DBDPE,α-HBCDD和TBBPA也被检测到在一些血清样品中(检测频率为2-36%)。其他三八八虫,TBP-AE,α-和β-DBE-DBCH,Bate,PTBX,Aβ-TBCO,PBBZ,TBCT,PBT,PBEB,DPTE,EH-TBB,BTBPE,BEH-TEBP,HCDBCO,-β γ-HBCDD低于检测限(MLOD)。本研究中检测到的个体BDE同一剂的浓度在以前的欧洲研究范围内。在血清BDE-153在血清中的BDE-153之间的BDE-47浓度和BDE-153之间以及BDE-153在血清中的BDE-153浓度(Spearman排名)之间的BDE-153之间的BDE-153和BDE-47浓度之间的阳性相关性,0.29

著录项

  • 来源
    《Environmental research》 |2019年第11期|108731.1-108731.8|共8页
  • 作者单位

    Department of Environmental Science and Analytical Chemistry (ACES) Stockholm University SE-106 91 Stockholm Sweden;

    Department of Environmental Science and Analytical Chemistry (ACES) Stockholm University SE-106 91 Stockholm Sweden;

    Department of Environmental Exposure and Epidemiology Norwegian Institute of Public Health (NIPH) PQ Box 222 Sk0yen 0213 Oslo Norway;

    Department of Environmental Exposure and Epidemiology Norwegian Institute of Public Health (NIPH) PQ Box 222 Sk0yen 0213 Oslo Norway;

    Department of Environmental Exposure and Epidemiology Norwegian Institute of Public Health (NIPH) PQ Box 222 Sk0yen 0213 Oslo Norway;

    Department of Environmental Science and Analytical Chemistry (ACES) Stockholm University SE-106 91 Stockholm Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    PBDEs; Flame retardants; Serum; Diet; Exposure;

    机译:PBDES;阻燃剂;血清;饮食;接触;

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