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Measurement of Triclosan in Water Using a Magnetic Particle Enzyme Immunoassay

机译:磁性颗粒酶免疫法测定水中的三氯生

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A sensitive magnetic particle-based immunoassay to determine triclosan [5-chloro-2-(2,4-dichlo-rophenoxy)phenol] in drinking water and wastewater was developed. Rabbit antiserum was produced by immunizing the rabbit with 6-[5-chloro-2-(2,4-dichlorophenoxy)phenoxy]hexanoic acid-keyhole limpet hemocyanin. Horseradish peroxidase was conjugated with 4-[3-bromo-4-(2,4-dibromophenoxy)-phenoxy]butyric acid via N-hydroxysuccinimide (NHS) and 1-ethyl-3-(3-dimethylaminopropyl)carbo-diimide (EDC). The triclosan antibody was coupled to magnetic particles via the NHS/EDC reaction. The antibodies were able to recognize some structurally related polybrominated biphenyl ethers but did not recognize various common pollutants that were less similar to the hapten. The ELISA could detect triclosan in standard solution (25% methanol/H_2O v/v) at 20 ppt and its metabolite, methyl-triclosan, at 15 ppt. Water samples from different treatment stages were prepared to contain 25% methanol and analyzed directly without any sample extraction or preconcentration. The results showed that recoveries were >80% and the % CV was <10%, demonstrating the assay was both accurate and precise. Application of the triclosan ELISA to water treatment plants showed that tap water at various purification stages had low concentrations of triclosan (<20 ppt) and required an increased sample size for appropriate detection and measurement. Application of ELISA to the wastewater treatment plants (WWTP) demonstrated high concentrations of triclosan (in general, >3000 ppt in water entering the WWTP) with the levels decreasing as the water proceeded through the processing plant (<500 ppt at outflow sewage). The ELISA measurement was shown to be equivalent to the more specific GC-MS analysis on a number of wastewater treatment samples with a high degree of correlation, with the exception of a few samples with very high triclosan concentrations (>5000 ppt). Measurement of methyl-triclosan (in WWTP) using GC-MS demonstrated the levels of this compound to be low. In summary, a rapid, sensitive, accurate, and precise magnetic particle-based immunoassay has been developed for triclosan analysis, which can serve as a cost-effective monitoring tool for various water samples.
机译:建立了一种灵敏的基于磁性粒子的免疫测定法,用于测定饮用水和废水中的三氯生[5-氯-2-(2,4-二氯-苯甲氧基)苯酚]。通过用6- [5-氯-2-(2,4-二氯苯氧基)苯氧基]己酸-匙孔血蓝蛋白免疫兔子来产生兔子抗血清。辣根过氧化物酶通过N-羟基琥珀酰亚胺(NHS)和1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)与4- [3-溴-4-(2,4-二溴苯氧基)-苯氧基]丁酸偶联)。三氯生抗体通过NHS / EDC反应与磁性颗粒偶联。该抗体能够识别某些结构相关的多溴联苯醚,但不能识别与半抗原不太相似的各种常见污染物。 ELISA可以检测20 ppt的标准溶液(25%甲醇/ H_2O v / v)中的三氯生及其15 ppt的代谢产物甲基三氯生。准备了来自不同处理阶段的水样品,其中含有25%的甲醇,并且无需任何样品提取或预浓缩即可直接进行分析。结果表明,回收率> 80%,%CV <10%,证明该测定既准确又精确。三氯生ELISA在水处理厂的应用表明,各个纯化阶段的自来水三氯生浓度低(<20 ppt),并且需要增加样本量才能进行适当的检测和测量。 ELISA在废水处理厂(WWTP)中的应用表明高浓度的三氯生(通常,进入WWTP的水中> 3000 ppt),并且随着水通过加工厂而降低(在流出污水中<500 ppt)。结果表明,除了一些三氯生浓度很高(> 5000 ppt)的样品外,ELISA的测定与许多具有高度相关性的废水处理样品的GC-MS分析相当。使用GC-MS测量甲基三氯甲烷(在污水处理厂中)表明该化合物的含量较低。总之,已经开发了一种快速,灵敏,准确和精确的基于磁性粒子的免疫分析法用于三氯生分析,可以用作各种水样的经济有效的监测工具。

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