首页> 外文期刊>The Science of the Total Environment >Identification, contribution, and estrogenic activity of potential EDCs in a river receiving concentrated livestock effluent in Southern Taiwan
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Identification, contribution, and estrogenic activity of potential EDCs in a river receiving concentrated livestock effluent in Southern Taiwan

机译:台湾南部集中牲畜废水的河流中潜在EDC的鉴定,贡献和雌激素活性

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We assessed 22 selected endocrine-disrupting compounds (EDCs) and other emerging, potentially endocrine-active compounds with estrogenic activity from the waters of the Wuluo River, southern Taiwan. This watershed receives high amounts of livestock and untreated household wastewaters. The river is surrounded by concentrated animal feedlot operations (CAFOs). River water samples were analyzed for selected compounds by liquid chromatography-tandem mass spectrometry (LC-MS/MS), T47D-KBluc reporter gene assay, and E-screen cell proliferation in vitro bioassay. Total concentrations of ∑alkylphenolic compounds (bisphenol A, 4-nonylphenol, t-nonylphenol, octylphenol, nonylphenol mono-ethoxylate, nonylphenol di-ethoxylate) were much higher than ∑estrogens (estrone, 17 β-estradiol, estriol, 17ß-ethynylestradiol, diethylstilbestrol), ∑preservatives (methyl paraben, ethyl paraben, propyl paraben, butyl paraben), ∑UV-filters (benzophenone, methyl benzylidene camphor, benzophenone-3), ∑antimicrobials (triclocarben, triclosan, chloroxylenol), and an insect repellent (diethyltoluamide) over four seasonal sampling periods. The highest concentration was found for bisphenol A with a mean of 302 ng/L. However, its contribution to estrogenic activity was not significant due to its relatively low estrogenic potency. Lower detection rates were found for BP, EE2, TCS, and PCMX, while DES and EP were not detected. E1 and E2 levels in raw water samples were 50% higher than the predicted no-effect concentrations (PNEC) for aquatic organisms of 6 and 2 ng/L, respectively. The potency of estrogenic activity ranged from 11.7 to 190.1 ng/L E2T47D-Kbluc and 6.63 to 84.5 ng/L E2E-Screen for extracted samples. Importantly, estrone contributed 50% of the overall activity in 60% and 44% of the samples based on T47D-KBluc and MCF-7 bioassays, followed by 17 ß-estradiol, highlighting the importance of total steroid estrogen loading. This study demonstrates that the estrogenic activity of target chemicals was comparable to levels found in different countries worldwide. More intense wastewater treatment is required in areas of intensive agriculture in order to prevent adverse impacts on the ambient environment and aquatic ecosystems.
机译:我们评估了来自台湾南部五罗河水域的22种选定的破坏内分泌的化合物(EDC)以及其他新兴的,具有潜在内分泌活性的具有雌激素活性的化合物。该流域吸收了大量牲畜和未经处理的家庭废水。河流被集中的动物饲养场作业(CAFO)包围。通过液相色谱-串联质谱(LC-MS / MS),T47D-KBluc报告基因分析和E-筛选细胞增殖进行体外生物分析,分析了河水样品中的选定化合物。 Σ烷基酚化合物(双酚A,4-壬基酚,叔壬基酚,辛基酚,壬基酚单乙氧基化物,壬基酚二乙氧基化物)的总浓度远高于∑雌激素(雌酮,17β-雌二醇,雌三醇,17ß-乙炔基雌二醇,己二烯雌酚),防腐剂(对羟基苯甲酸甲酯,对羟基苯甲酸乙酯,对羟基苯甲酸丙酯,对羟基苯甲酸丁酯),∑UV过滤器(二苯甲酮,甲基亚苄基樟脑,二苯甲酮-3),∑抗微生物剂(三氯卡宾,三氯生,氯氧酚)和驱虫剂(二乙基甲苯酰胺)在四个季节的采样期内。发现双酚A的最高浓度为302 ng / L。然而,由于其相对较低的雌激素效力,其对雌激素活性的贡献并不显着。发现BP,EE2,TC​​S和PCMX的检测率较低,而未检测到DES和EP。原水样品中的E1和E2水平分别比6 ng / L和2 ng / L的水生生物的预期无效应浓度(PNEC)高50%。提取样品的雌激素活性范围从11.7至190.1ngng / L E2T47D-Kbluc和6.63至84.5ngng / L E2E-Screen。重要的是,基于T47D-KBluc和MCF-7生物测定,雌酮在60%和44%的样品中贡献了总活性的50%,其次是17β-雌二醇,突显了总类固醇雌激素负载的重要性。这项研究表明,目标化学物质的雌激素活性与全球不同国家的水平相当。为了防止对周围环境和水生生态系统的不利影响,在集约化农业领域中需要更严格的废水处理。

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