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立体异构体特异性海洋食物网中手性溴系阻燃剂六溴环十二烷和四溴双酚 A 醚的营养动态及其对人类暴露的影响。

Stereoisomer-Specific Trophodynamics of the Chiral Brominated Flame Retardants HBCD and TBECH in a Marine Food Web, with Implications for Human Exposure.

机构信息

Department of Science and Environmental Studies , The Education University of Hong of Kong , Hong Kong SAR , China.

Department of Biology , Hong Kong Baptist University , Hong Kong SAR , China.

出版信息

Environ Sci Technol. 2018 Aug 7;52(15):8183-8193. doi: 10.1021/acs.est.8b02206. Epub 2018 Jul 9.

Abstract

Stereoisomers of 1,2,5,6,9,10-hexabromocyclododecane (HBCD) and 1,2-dibromo-4-(1,2-dibromoethyl)-cyclohexane (TBECH) were determined in sediments and 30 marine species in a marine food web to investigate their trophic transfer. Lipid content was found to affect the bioaccumulation of ΣHBCD and ΣTBECH in these species. Elevated biomagnification of each diastereomer from prey species to marine mammals was observed. For HBCD, biota samples showed a shift from γ- to α-HBCD when compared with sediments and technical mixtures; trophic magnification potential of (-)-α- and (+)-α-HBCD were observed in the food web, with trophic magnification factors (TMFs) of 11.8 and 8.7, respectively. For TBECH, the relative abundance of γ- and δ-TBECH exhibited an increasing trend from abiotic matrices to biota samples; trophic magnification was observed for each diastereomer, with TMFs ranging from 1.9 to 3.5. The enantioselective bioaccumulation of the first eluting enantiomer of δ-TBECH in organisms at higher TLs was consistently observed across samples. This is the first report on the trophic transfer of TBECH in the food web. The estimated daily intake of HBCD for Hong Kong residents was approximately 16-times higher than that for the general population in China, and the health risk to local children was high, based on the relevant available reference dose.

摘要

立体异构体 1,2,5,6,9,10-六溴环十二烷(HBCD)和 1,2-二溴-4-(1,2-二溴乙基)环己烷(TBECH)在沉积物和海洋食物网中的 30 种海洋物种中进行了测定,以研究它们的营养转移。发现脂质含量会影响这些物种中ΣHBCD 和ΣTBECH 的生物累积。从猎物物种到海洋哺乳动物的每种非对映异构体的生物放大作用都有所增加。与沉积物和技术混合物相比,生物样本中 HBCD 表现出从γ-HBCD 向α-HBCD 的转变;在食物网中观察到(-)-α-和(+)-α-HBCD 的营养放大潜力,其营养放大因子(TMF)分别为 11.8 和 8.7。对于 TBECH,γ-和δ-TBECH 的相对丰度从无生命基质到生物样本呈上升趋势;每个非对映异构体都观察到营养放大,其营养放大因子(TMF)范围从 1.9 到 3.5。在组织中,具有较高 TL 的生物体中首先洗脱的δ-TBECH 的对映体表现出对映选择性生物累积,这种现象在所有样本中一致存在。这是关于 TBECH 在食物网中营养转移的首次报道。根据相关的可用参考剂量,香港居民对 HBCD 的估计每日摄入量比中国一般人群高约 16 倍,当地儿童面临的健康风险很高。

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