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A sensitive liquid chromatography/tandem mass spectrometry method for the determination of natural and synthetic steroid estrogens in seawater and marine biota, with a focus on proposed Water Framework Directive Environmental Quality Standards

机译:一种灵敏的液相色谱/串联质谱法测定海水和海洋生物群中天然和合成的类固醇雌激素,重点是拟议的水框架指令环境质量标准

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摘要

RATIONALE: Trace levels of natural and synthetic steroid estrogens estrone (E1), 17b-estradiol (E2) and 17a-ethynyl estradiol (EE2) have been demonstrated to exert adverse effects in exposed organisms. E2 and EE2 have been proposed for inclusion in the Water Framework Directive (WFD) list of priority pollutants; however, the detection and accurate quantification of these compounds provide significant challenges, due to the low detection limits required.METHODS: A sensitive method combining ultrasonication, solid-phase extraction (SPE) and liquid chromatography/tandem mass spectrometry, with electrospray ionisation in negative mode (LC/ESI-MS/MS), capable of determining E1, E2 and EE2 at concentrations between 0.07 and 60 ng/L for seawater and between 0.4 and 200 ng/g wet weight in Mytilus spp. is reported.Recoveries at the limit of quantification (LOQ) ranged from 95 to 102% and 88 to 100% for water and tissue, respectively. Salinity (12 to 35%) and typical marine particulate matter loadings (between 10 and 100 mg/L) were not found to affect analyte recoveries. RESULTS: The first detection of E1 by LC/MS/MS in Irish marine waters (Dublin Bay, at 0.76 ng/L) is reported. Steroids were not detected in Galway Bay, or in any mussel samples from Dublin, Galway and Clare. The level of E2 detected in the dissolved water phase was below the proposed WFD Environmental Quality Standard (EQS) in other surface waters. CONCLUSIONS: The proposed method is suitable for the detection of E1, E2 and EE2 at biologically relevant concentrations and, due to the specificity offered, is not subject to potential interferences from endogenous E1 and E2 which often complicate the interpretation of estrogenic biomarker assays.
机译:理由:痕量天然和合成类固醇雌激素雌酮(E1),17b-雌二醇(E2)和17a-乙炔基雌二醇(EE2)在暴露的生物体中会产生不利影响。已提议将E2和EE2列入《水框架指令》(WFD)优先污染物清单;然而,由于所需的检测限较低,因此这些化合物的检测和准确定量提出了严峻的挑战。方法:结合超声,固相萃取(SPE)和液相色谱/串联质谱的灵敏方法,电喷雾电离为负模式(LC / ESI-MS / MS),能够以0.07至60 ng / L的海水浓度和0.4至200 ng / g湿重的Mytilus spp浓度测定E1,E2和EE2。水和组织的定量限(LOQ)回收率分别为95%至102%和88%至100%。盐度(12%至35%)和典型的海洋颗粒物含量(10至100 mg / L)未影响分析物的回收率。结果:据报道,LC / MS / MS在爱尔兰海水(都柏林湾,0.76 ng / L)中首次检测到E1。在戈尔韦湾或都柏林,戈尔韦和克莱尔的任何贻贝样本中均未检测到类固醇。在其他地表水中,在溶解水相中检测到的E2含量低于建议的WFD环境质量标准(EQS)。结论:所提出的方法适用于在生物学上相关浓度的E1,E2和EE2的检测,并且由于提供的特异性,不受内源E1和E2的潜在干扰,这通常会使雌激素生物标志物测定的解释复杂化。

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    Ronan, J.; McHugh, B.;

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