首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Development of an extraction and purification method for the determination of multi-class pharmaceuticals and endocrine disruptors in freshwater invertebrates
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Development of an extraction and purification method for the determination of multi-class pharmaceuticals and endocrine disruptors in freshwater invertebrates

机译:建立一种提取和纯化方法,用于测定淡水无脊椎动物中的多种药物和内分泌干扰物

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摘要

Aquatic organisms from freshwater ecosystems impacted by waste water treatment plant (WWTP) effluents are constantly exposed to constant concentrations of pharmaceuticals, endocrine disruptors and related compounds, among other anthropogenic contaminants. Macroinvertebrates inhabiting freshwater ecosystems might be useful bioindicators of exposure to contaminants, since their lives are long enough to bioaccumulate, but at the same time may integrate short-term changes in the environment. However, studies about potential bioaccumulation of emerging contaminants in these organisms are very scarce. The objectives of this study were to develop an analytical methodology for the analysis of 41 pharmaceuticals and 21 endocrine disruptors in freshwater invertebrates. In addition, bioaccumulation of these contaminants in three macroinvertebrate taxa inhabiting a waste water treatment plant -impacted river was evaluated. The method for the simultaneous extraction of both families of compounds is based on sonication, purification via removal of phospholipids, and analysis by ultra performance liquid chromatography coupled to a mass spectrometer (UPLC-MS/MS) in tandem. Recoveries for pharmaceuticals were 34-125%, and for endocrine disruptors were 48-117%. Method detection limits (MDLs) for EDCs were in the range of 0.080-2.4 ng g(-1), and for pharmaceuticals, 0.060-4.3 ng g(-1). These pollutants were detected in water samples taken downstream the waste water treatment plant effluent at concentrations up to 572 ng L-1. Two non-esteroidal anti-inflammatory drugs, diclofenac and ibuprofen, and four endocrine disruptors - estrone, bisphenol A. TBEP, and nonylphenol - were detected in at least one macroinvertebrate taxa in concentrations up to 183 ng g(-1) (dry weight). An isobaric interference was identified during the analysis of diclofenac in Hydropsyche samples, which was successfully discriminated via accurate mass determination by TFC-LTQ Orbitrap. (C) 2014 Elsevier B.V. All rights reserved.
机译:来自废水处理厂(WWTP)废水影响的淡水生态系统的水生生物不断暴露于恒定浓度的药品,内分泌干扰物和相关化合物以及其他人为污染物。居住在淡水生态系统中的大型无脊椎动物可能是暴露于污染物的有用生物指示剂,因为它们的寿命足够长,可以进行生物蓄积,但同时也可以整合环境的短期变化。但是,关于这些生物中新兴污染物潜在生物蓄积的研究非常少。这项研究的目的是开发一种分析方法,用于分析淡水无脊椎动物中的41种药物和21种内分泌干扰物。此外,评估了居住在受污水处理厂影响的河流的三种大型无脊椎动物分类中这些污染物的生物蓄积性。同时提取两个化合物家族的方法是基于超声处理,通过去除磷脂进行纯化以及通过串联有质谱仪(UPLC-MS / MS)的超高效液相色谱进行分析。药品的回收率为34-125%,内分泌干扰物的回收率为48-117%。 EDC的方法检测限(MDL)在0.080-2.4 ng g(-1)的范围内,而药物在0.060-4.3 ng g(-1)的范围内。这些污染物在废水处理厂废水下游采集的水样中被检测到,浓度最高为572 ng L-1。在至少一种大型无脊椎动物类群中检出了两种非类固醇抗炎药,双氯芬酸和布洛芬,以及四种内分泌干扰物-雌酮,双酚A. TBEP和壬基酚-最高浓度为183 ng g(-1)(干重) )。在Hydropsyche样品中的双氯芬酸分析过程中发现了同量异位干扰,通过TFC-LTQ Orbitrap的精确质量测定成功地将其区分。 (C)2014 Elsevier B.V.保留所有权利。

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