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Investigation of pharmaceutical metabolites in environmental waters by LC-MS/MS

机译:LC-MS / MS法研究环境水中的药物代谢物

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摘要

Pharmaceuticals, once ingested, are commonly metabolized in the body into more polar and soluble forms. These compounds might not be completely removed in the waste-water treatment plants and consequently being discharged into the aquatic ecosystem. In this work, a multi-class sensitive method for the analysis of 21 compounds, including 7 widely consumed pharmaceuticals and 14 relevant metabolites, has been developed based on the use of UHPLC-MS/MS in selected reaction monitoring (SRM) mode. The method was validated in six surface waters (SW) and six effluent waste-waters (EWW) at realistic concentration levels that can be found in waters. The optimized method was applied to the analysis of different types of water samples (rivers, lakes and effluent wastewater), detecting nearly all the parent compounds and metabolites investigated in this work. This fact illustrates that not only pharmaceuticals but also their metabolites are commonly present in these types of waters. Analytical research and monitoring programs should be directed not only towards parent pharmaceuticals but also towards relevant metabolites to have a realistic overview of the impact of pharmaceuticals in the aquatic environment.
机译:药物一旦被摄入,通常会在体内代谢为极性更大和可溶的形式。这些化合物可能不会在废水处理厂中被完全清除,因此被排放到水生生态系统中。在这项工作中,基于在选定的反应监测(SRM)模式下使用UHPLC-MS / MS,开发了一种用于分析21种化合物(包括7种广泛消费的药物和14种相关代谢物)的多级灵敏方法。该方法已在六个地表水(SW)和六个废水废水(EWW)中进行了验证,且浓度可在水中找到。优化后的方法被用于分析不同类型的水样(河流,湖泊和废水),检测出这项工作中研究的几乎所有母体化合物和代谢物。这个事实说明,在这些类型的水域中不仅普遍存在药物,而且它们的代谢产物也普遍存在。分析研究和监测计划不仅应针对母体药物,而且还应针对相关的代谢物,以便对药物在水生环境中的影响进行现实的概述。

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