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Effects of diluted bitumen exposure on juvenile sockeye salmon: From cells to performance

机译:稀释沥青暴露对红鲑幼鱼的影响:从细胞到生产

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Diluted bitumen (dilbit; the product of oil sands extraction) is transported through freshwater ecosystems critical to Pacific salmon. This is concerning, because crude oil disrupts cardiac development, morphology, and function in embryonic fish, and cardiac impairment in salmon can have major consequences on migratory success and fitness. The sensitivity of early life-stage salmon to dilbit and its specific cardiotoxic effects are unknown. Sockeye salmon parr were exposed to environmentally relevant concentrations of the water-soluble fraction (WSF) of dilbit for 1wk and 4wk, followed by an examination of molecular, morphological, and organismal endpoints related to cardiotoxicity. We show that parr are sensitive to WSF of dilbit, with total polycyclic aromatic hydrocarbon (PAH) concentrations of 3.5 mu g/L sufficient to induce a liver biomarker of PAH exposure, and total PAH of 16.4 mu g/L and 66.7 mu g/L inducing PAH biomarkers in the heart. Furthermore, WSF of dilbit induces concentration-dependent cardiac remodeling coincident with performance effects: fish exposed to 66.7 mu g/L total PAH have relatively fewer myocytes and more collagen in the compact myocardium and impaired swimming performance at 4wk, whereas the opposite changes occur in fish exposed to 3.5 mu g/L total PAH. The results demonstrate cardiac sensitivity to dilbit exposure that could directly impact sockeye migratory success. Environ Toxicol Chem 2017;36:354-360. (c) 2016 SETAC
机译:稀释的沥青(莳萝;油砂提取物)通过对太平洋鲑鱼至关重要的淡水生态系统运输。这令人担忧,因为原油会破坏胚胎鱼的心脏发育,形态和功能,而鲑鱼的心脏损害可能对迁移成功和适应性产生重大影响。生命早期鲑鱼对dilbit的敏感性及其特定的心脏毒性作用尚不清楚。红大马哈鲑鱼暴露于环境相关浓度的dilbit水溶性部分(WSF)中1wk和4wk,然后检查与心脏毒性有关的分子,形态和生物终点。我们显示parr对Dilbit的WSF敏感,总多环芳烃(PAH)浓度为3.5μg / L,足以诱导PAH暴露的肝脏生物标志物,总PAH为16.4μg/ L和66.7μg / L。 L在心脏中诱导PAH生物标志物。此外,Dilbit的WSF会引起浓度依赖性的心脏重塑,并伴有性能影响:暴露于66.7μg / L总PAH的鱼在紧凑的心肌中具有相对较少的心肌细胞和更多的胶原蛋白,并且在4wk时游泳性能受损,而相反的变化发生在鱼类暴露于总含量为3.5μg / L的PAH中。结果表明心脏对dilbit暴露的敏感性可能直接影响红大马迁移成功。 Environ Toxicol Chem 2017; 36:354-360。 (c)2016年SETAC

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