首页> 外文期刊>Environmental Toxicology and Chemistry >INFLUENCE OF THE TEMPERATURE GRADIENT IN BLUBBER ON THE BIOACCUMULATION OF PERSISTENT LIPOPHILIC ORGANIC CHEMICALS IN SEALS
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INFLUENCE OF THE TEMPERATURE GRADIENT IN BLUBBER ON THE BIOACCUMULATION OF PERSISTENT LIPOPHILIC ORGANIC CHEMICALS IN SEALS

机译:橡胶中的温度梯度对密封中持久性脂质有机化学物质的生物累积的影响

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Seals constitute an important link in food webs of the Arctic environment and are an important vector of persistent lipophilic organic pollutants to top predators (e.g., polar bears) and humans. Two fugacity-based, non–steady state, mechanistic lifetime models were assembled to explore the influence of the temperature gradient in the insulating blubber on the distribution and bioaccumulation of persistent lipophilic organic pollutants in seals. The behavior of a two-compartment model that distinguishes between the gastrointestinal tract and the seal itself was compared with a three-compartment model, in which a separate blubber compartment was implemented with a temperature gradient through the insulation layer. In both models, equilibrium partitioning between the animal's tissues, blood, and milk was assumed. The models were parameterized for ringed seals (Phoca hispida) and evaluated using field data for bioaccumulation of polychlorinated biphenyls in this species. The two-compartment model resulted in predicted concentrations below reported field data. This was in particular the case for females, for which the elimination of the contaminants via milk was overpredicted by up to one order of magnitude. The three-compartment model with its consideration of the temperature gradient in blubber yielded predictions that were much more consistent with the field data. It also predicted a fractionation of polychlorinated biphenyl congeners between different blubber layers, as well as between blubber and blood or milk, which was in good qualitative agreement with observations reported in the literature. This work indicates that the temperature gradient in the blubber has an impact on the bioaccumulation of persistent lipophilic organic pollutants in seals and in marine mammals in general.
机译:海豹构成了北极环境食物网中的重要纽带,并且是持久的亲脂性有机污染物与主要掠食者(例如北极熊)和人类的重要媒介。组装了两个基于逸度的非稳态机械寿命模型,以探索绝缘脂中温度梯度对密封中持久性亲脂性有机污染物的分布和生物累积的影响。将区分胃肠道和密封件本身的两室模型的行为与三室模型进行比较,在三室模型中,通过绝缘层以温度梯度实施单独的润滑脂室。在这两种模型中,都假定动物组织,血液和牛奶之间的平衡分配。对环斑海豹(Phoca hispida)的模型进行参数化,并使用现场数据评估该物种中多氯联苯的生物蓄积性。两室模型得出的预测浓度低于报告的田间数据。对于女性而言尤其如此,因为通过牛奶消除的污染物被高估了一个数量级。考虑到润滑脂温度梯度的三室模型得出的预测与现场数据更加一致。它还预测了在不同的润滑脂层之间以及在润滑脂与血液或牛奶之间的多氯联苯同源物的分馏,这与文献报道的观察结果在质量上是一致的。这项工作表明,润滑脂中的温度梯度会对海豹和整个海洋哺乳动物中持久性亲脂性有机污染物的生物蓄积产生影响。

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