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Metabolomic Investigations of the Temporal Effects of Exposure to Pharmaceuticals and Personal Care Products and Their Mixture in the Eastern Oyster (Crassostrea virginica)

机译:东部牡蛎(Crassostrea virginica)暴露于药品和个人护理产品及其混合物的时间效应的代谢组学研究

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The eastern oyster (Crassostrea virginica) supports a large aquaculture industry and is a keystone species along the Atlantic seaboard. Native oysters are routinely exposed to a complex mixture of contaminants that increasingly includes pharmaceuticals and personal care products (PPCPs). Unfortunately, the biological effects of chemical mixtures on oysters are poorly understood. Untargeted gas chromatography-mass spectrometry metabolomics was utilized to quantify the response of oysters exposed to fluoxetine, N,N-diethyl-meta-toluamide, 17 alpha-ethynylestradiol, diphenhydramine, and their mixture. Oysters were exposed to 1 mu g/L of each chemical or mixture for 10 d, followed by an 8-d depuration period. Adductor muscle (n = 14/treatment) was sampled at days 0, 1, 5, 10, and 18. Trajectory analysis illustrated that metabolic effects and class separation of the treatments varied at each time point and that, overall, the oysters were only able to partially recover from these exposures post-depuration. Altered metabolites were associated with cellular energetics (i.e., Krebs cycle intermediates), as well as amino acid metabolism and fatty acids. Exposure to these PPCPs also affected metabolic pathways associated with anaerobic metabolism, osmotic stress, and oxidative stress, in addition to the physiological effects of each chemical's postulated mechanism of action. Following depuration, fewer metabolites were altered, but none of the treatments returned them to their initial control values, indicating that metabolic disruptions were long-lasting. Interestingly, the mixture did not directly cluster with individual treatments in the scores plot from partial least squares discriminant analysis, and many of its affected metabolic pathways were not well predicted from the individual treatments. The present study highlights the utility of untargeted metabolomics in developing exposure biomarkers for compounds with different modes of action in bivalves. Environ Toxicol Chem 2020;00:1-18. (c) 2019 SETAC
机译:东部牡蛎(Crassostrea virginica)支持大型水产养殖业,是大西洋沿岸的主要物种。本地牡蛎通常会暴露于复杂的污染物混合物中,这种污染物越来越多地包括药品和个人护理产品(PPCP)。不幸的是,人们对化学混合物对牡蛎的生物学影响了解得很少。利用非靶向气相色谱-质谱联用代谢组学来定量暴露于氟西汀,N,N-二乙基-间甲酰胺,17α-乙炔基雌二醇,苯海拉明及其混合物的牡蛎的响应。将牡蛎暴露于1μg/ L的每种化学物质或混合物10 d,然后进行8 d的净化期。在第0、1、5、10和18天取样肌(n = 14 /处理)。弹道分析表明,在每个时间点,处理的代谢作用和类别分离各不相同,总的来说,牡蛎只净化后能够部分地从这些暴露中恢复过来。代谢物的改变与细胞能量学(即克雷布斯循环中间体)以及氨基酸代谢和脂肪酸有关。暴露于这些PPCP还会影响与无氧代谢,渗透压和氧化应激相关的代谢途径,此外还影响每种化学物质假定的作用机理的生理作用。净化后,代谢物的改变较少,但没有一种疗法能使它们恢复到初始控制值,这表明代谢破坏是持久的。有趣的是,在偏最小二乘判别分析的分数图中,混合物并未直接与单独的治疗聚类,并且从单独的治疗中并未很好地预测其许多受影响的代谢途径。本研究强调了非靶向代谢组学在开发双壳类动物具有不同作用方式的化合物的暴露生物标志物中的实用性。环境毒性化学2020; 00:1-18。 (c)2019年SETAC

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