首页> 外文期刊>Environmental toxicology and chemistry >Dietary accumulation of hexabromocyclododecane diastereoisomers in juvenile rainbow trout (Oncorhynchus mykiss) I: bioaccumulation parameters and evidence of bioisomerization.
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Dietary accumulation of hexabromocyclododecane diastereoisomers in juvenile rainbow trout (Oncorhynchus mykiss) I: bioaccumulation parameters and evidence of bioisomerization.

机译:少年虹鳟(Oncorhynchus mykiss)中六溴环十二烷非对映异构体的膳食积累I:生物积累参数和生物异构化证据。

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Juvenile rainbow trout (Oncorhynchus mykiss) were exposed to three diastereoisomers (alpha, beta, gamma) of hexabromocyclododecane (C12H18Br6) via their diet for 56 d followed by 112 d of untreated food to examine bioaccumulation parameters and test the hypothesis of in vivo bioisomerization. Four groups of 70 fish were used in the study. Three groups were exposed to food fortified with known concentrations of an individual diastereoisomer, while a fourth group were fed unfortified food. Bioaccumulation of the gamma-diastereoisomer was linear during the uptake phase, while the alpha- and beta-diastereoisomers were found to increase exponentially with respective doubling times of 8.2 and 17.1 d. Both the beta- and the gamma-diastereoisomers followed a first-order depuration kinetics with calculated half-lives of 157 +/- 71 and 144 +/- 60 d (+/-1 x standard error), respectively. The biomagnification factor (BMF) for the alpha-diastereoisomer (BMF = 9.2) was two times greater than the beta-diastereoisomer(BMF = 4.3); the large BMF for the beta-diastereoisomer is consistent with this diastereoisomer dominating higher-trophic-level organisms. Although the BMF of the beta-diastereoisomer suggests that it will biomagnify, it is rarely detected in environmental samples because it is present in small quantities in commercial mixtures. Results from these studies also provide evidence of bioisomerization of the beta- and gamma-diastereoisomers. Most importantly, the alpha-diastereoisomer that was recalcitrant to bioisomerization by juvenile rainbow trout in this study and known to be the dominant diastereosiomer in fish was bioformed from both the beta- and the gamma-diastereoisomers. To our knowledge, this is the first report of bioisomerization of a halogenated organic pollutant in biota.
机译:将幼年虹鳟(Oncorhynchus mykiss)的饮食中分别暴露于三种六溴环十二烷(C12H18Br6)的非对映异构体(α,β,γ)中,持续56 d,然后暴露于未经处理的食物中112 d,以检查生物蓄积参数并测试体内生物异构化的假说。在研究中使用了四组70条鱼。三组暴露于以已知浓度的单个非对映异构体强化的食物中,而第四组接受未经强化的食物。在吸收阶段,γ-非对映异构体的生物蓄积是线性的,而α-和β-非对映异构体被发现成倍增加,分别为8.2和17.1 d。 β-和γ-非对映异构体都遵循一级净化动力学,计算的半衰期分别为157 +/- 71 d和144 +/- 60 d(+/- 1 x标准误差)。 α-非对映异构体(BMF = 9.2)的生物放大系数(BMF)是β-非对映异构体(BMF = 4.3)的两倍。 β-非对映异构体的大BMF与这种非对映异构体占主导地位的高营养生物相一致。尽管β-非对映异构体的BMF可以生物放大,但由于在商业混合物中少量存在,因此在环境样品中很少发现。这些研究的结果也提供了β-和γ-非对映异构体生物异构化的证据。最重要的是,在这项研究中,α-非对映异构体对幼体虹鳟的生物异构化具有顽固性,并且已知是鱼类中的主要非对映异构体,都是由β-和γ-非对映异构体形成的。据我们所知,这是生物群中卤代有机污染物发生生物异构化的第一份报告。

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