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Reducing micropollutants with source control: substance flow analysis of 212 pharmaceuticals in faeces and urine

机译:通过源控制减少微量污染物:粪便和尿液中212种药物的物质流分析

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Pharmaceuticals in the aquatic environment are raising concern. It is expected that many anthropogenic pharmaceuticals are largely excreted via urine; a popular argument for introducing urine source separation. However, to date, this assumption lacks verification. We close this gap with quantitative screening of official pharmaceutical data. We analysed the excretion pathways of 212 pharmaceuticals' active ingredients (AI), equalling 1,409 products. On average, 64% (±27%) of each AI was excreted via urine, and 35% (±26%) via faeces. In urine, 42% (±28%) of each AI was excreted as metabolites. However, these numbers need cautious interpretation. We found an extreme variability (1) between different therapeutic groups, (2) within some groups and (3) sometimes even between products of the same AI. We discuss various therapeutic groups and include Swiss sales' quantities. For instance, urine source separation could very effectively remove the highly sold and non-degradable x-ray contrast media: 94% (±4%) are excreted via urine. However, for different pharmaceuticals belonging to cytostatics, excretion via urine was 6–98%. Because of such large variability we advise caution to introduce the still imperfect urine separation technology solely because of pharmaceuticals. Nonetheless, together with other good arguments for this innovation, removal of pharmaceuticals is a welcome side effect.
机译:水生环境中的药品引起了人们的关注。预计许多人为药物通过尿液大量排泄。关于引入尿源分离的流行论点。但是,到目前为止,这一假设还没有得到验证。我们通过对官方药品数据进行定量筛选来缩小这一差距。我们分析了212种药物的有效成分(AI)的排泄途径,相当于1,409种产品。平均而言,每种AI的64%(±27%)通过尿液排泄,而35%(±26%)通过粪便排泄。在尿液中,每种AI的42%(±28%)作为代谢产物排出体外。但是,这些数字需要谨慎解释。我们发现(1)不同治疗组之间,(2)一些组内以及(3)有时甚至同一AI产品之间存在极大差异。我们讨论各种治疗组,包括瑞士销售量。例如,尿液源分离可以非常有效地去除销量高且不可降解的X射线造影剂:94%(±4%)通过尿液排出。但是,对于属于细胞抑制剂的不同药物,尿液排泄率为6–98%。由于存在如此大的可变性,我们建议谨慎地仅由于药品而引入仍不完善的尿液分离技术。但是,连同此创新的其他良好论据,去除药物是令人欢迎的副作用。

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