Department of Civil and Environmental Engineering , University of Pittsburgh , 3700 O'Hara Street , Pittsburgh , Pennsylvania 15261 , United States.
Institute for Chemical and Bioengineering , ETH Zurich , Vladimir-Prelog-Weg 1 , 8093 Zurich , Switzerland.
Environ Sci Technol. 2018 Jun 19;52(12):6965-6973. doi: 10.1021/acs.est.8b00146. Epub 2018 May 7.
Food is an important source of human exposure to hazardous chemicals. Chemical concentration in a food item depends on local environmental contamination, production conditions, and, for animal-derived foods, on feed. Here, we investigate these influences on the accumulation of individual polybrominated diphenyl ether congeners (PBDEs) in farmed Atlantic salmon ( Salmo salar). We develop a dynamic model over a full sea-cage salmon production cycle. To assess the influence of metabolic debromination on PBDE congener profiles, in vitro measurements of debromination rates in fish liver cells were extrapolated to whole-body metabolic rate constants. Model results indicate that the dominant factors governing PBDE concentration in Atlantic salmon fillet are uptake via contaminated feed and fish growth, whereas the influence of metabolic debromination is minor. PBDE concentrations in fish feed depend on several factors, including the geographic origin of fish feed ingredients, which are produced and traded globally. Human exposure to PBDE via salmon consumption is less influenced by environmental concentrations at the location of salmon farming than by environmental concentrations influencing feed components. This dependence of PBDE concentrations in salmon on the origin and composition of feed reveals the complexity of predicting contaminant concentrations in globally traded food.
食物是人类接触有害化学物质的一个重要来源。食品中化学物质的浓度取决于当地的环境污染、生产条件,以及动物源性食品的饲料。在这里,我们研究了这些因素对养殖大西洋鲑鱼(Salmo salar)中个体多溴二苯醚同系物(PBDEs)积累的影响。我们开发了一个完整的网箱鲑鱼生产周期的动态模型。为了评估代谢脱溴对 PBDE 同系物分布的影响,我们将鱼肝细胞中脱溴率的体外测量值外推到全身代谢速率常数。模型结果表明,决定大西洋鲑鱼片 PBDE 浓度的主要因素是通过受污染的饲料和鱼类生长进行的摄取,而代谢脱溴的影响较小。鱼饲料中的 PBDE 浓度取决于多个因素,包括鱼饲料成分的地理来源,这些成分在全球范围内生产和交易。人类通过食用鲑鱼接触 PBDE 的情况受鲑鱼养殖地点环境浓度的影响小于受影响饲料成分的环境浓度的影响。鲑鱼中 PBDE 浓度取决于饲料的来源和组成,这揭示了预测在全球贸易的食品中污染物浓度的复杂性。