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人类对 BDE-209 生物转化的新认识:电子废物拆解工血清中邻位取代羟基化高溴化二苯醚代谢物的独特出现。

New Insights into Human Biotransformation of BDE-209: Unique Occurrence of Metabolites of Ortho-Substituted Hydroxylated Higher Brominated Diphenyl Ethers in the Serum of e-Waste Dismantlers.

机构信息

State Key Laboratory of Organic Geochemistry, Guangdong Key Laboratory of Environment Protection and Resource Utilization, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, Guangdong 510640, China.

Institute of Environmental Pollution and Health, School of Environmental and Chemical Engineering, Shanghai University, Shanghai 200444, China.

出版信息

Environ Sci Technol. 2022 Jul 19;56(14):10239-10248. doi: 10.1021/acs.est.2c02074. Epub 2022 Jul 5.

Abstract

Extremely high levels of decabromodiphenyl ether (BDE-209) are frequently found in the serum of occupationally exposed groups, such as e-waste dismantlers and firefighters. However, the metabolism of BDE-209 in the human body is not adequately studied. In this study, 24 serum samples were collected from workers at a typical e-waste recycling workshop in Taizhou, Eastern China, and the occurrence and fate of these higher brominated diphenyl ethers (PBDEs) were investigated. The median concentration of the total PBDEs in the serum was 199 ng/g lipid weight (lw), ranging from 125 to 622 ng/g lw. Higher brominated octa- to deca-BDEs accounted for more than 80% of the total PBDEs. Three ortho-hydroxylated metabolites of PBDEs─6-OH-BDE196, 6-OH-BDE199, and 6'-OH-BDE206─were widely detected with a total concentration (median) of 92.7 ng/g lw. The concentrations of the three OH-PBDEs were significantly higher than their octa- and nona-PBDE homologues, even exceeding those of the total PBDEs in several samples, indicating that the formation of OH-PBDEs was a major metabolic pathway of the higher brominated PBDEs in occupationally exposed workers. An almost linear correlation between 6-OH-BDE196 and 6-OH-BDE199 ( = 0.971, < 0.001) indicates that they might undergo a similar biotransformation pathway in the human body or may be derived from the same precursor. In addition, the occurrence of a series of penta- to hepta- ortho-substituted OH-PBDEs was preliminarily identified according to their unique "predioxin" mass spectral profiles by GC-ECNI-MS. Taken together, the tentative metabolic pathway for BDE-209 in e-waste dismantlers was proposed. The oxidative metabolism of BDE-209 was mainly observed at the ortho positions to form 6'-OH-BDE-206, which later underwent a consecutive loss of bromine atoms at the meta or para positions to generate other -OH-PBDEs. Further studies are urgently needed to identify the chemical structures of these -OH-PBDE metabolites, and perhaps more importantly to clarify the potentially toxic effects, along with their underlying molecular mechanisms.

摘要

极高水平的十溴二苯醚(BDE-209)经常在职业暴露人群的血清中被发现,例如电子废物拆解工和消防员。然而,BDE-209 在人体中的代谢情况尚未得到充分研究。在这项研究中,从中国东部台州的一家典型电子废物回收车间的工人中采集了 24 份血清样本,研究了这些更高溴化二苯醚(PBDE)的存在和命运。血清中总 PBDE 的中位数浓度为 199ng/g 脂质重量(lw),范围为 125-622ng/g lw。更高溴化的八至十溴代 PBDE 占总 PBDE 的 80%以上。三种邻位羟基化代谢产物 PBDEs-6-OH-BDE196、6-OH-BDE199 和 6'-OH-BDE206-广泛检出,总浓度(中位数)为 92.7ng/g lw。这三种 OH-PBDE 的浓度明显高于它们的八溴和非溴同系物,甚至在几个样本中超过了总 PBDE 的浓度,表明 OH-PBDE 的形成是职业暴露工人中更高溴化 PBDE 的主要代谢途径。6-OH-BDE196 和 6-OH-BDE199 之间几乎呈线性相关(=0.971,<0.001),表明它们可能在人体内经历相似的生物转化途径,或者可能源自同一前体。此外,根据 GC-ECNI-MS 独特的“前二恶英”质谱特征,初步鉴定出一系列五溴至七溴邻位取代的 OH-PBDE。综上所述,提出了电子废物拆解工体内 BDE-209 的推测代谢途径。BDE-209 的氧化代谢主要发生在邻位,形成 6'-OH-BDE-206,随后在间位或对位连续失去溴原子,生成其他-OH-PBDE。急需进一步研究来鉴定这些-OH-PBDE 代谢物的化学结构,或许更重要的是要阐明其潜在的毒性作用及其潜在的分子机制。

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