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Phytotoxicity assessment of diclofenac and its phototransformation products

机译:双氯芬酸及其光转化产物的植物毒性评估

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The occurrence of pharmaceuticals in the environment is an emerging issue. Several studies observed that the non-steroidal anti-inflammatory drug diclofenac is ubiquitously present in most of the surveyed surface waters, worldwide. Phototransformation of diclofenac was reported from laboratory assays as well as in natural water systems, raising the question of possible adverse effects of the phototransformation products of diclofenac to aquatic organisms. In this study the phytotoxicity of diclofenac exposed to natural sunlight was evaluated using synchronized cultures of the unicellular chlorophyte Scenedesmus vacuolatus. Diclofenac dissolved in ultra-pure water at 50 mg L?1 was exposed to natural midsummer sunlight for a maximum of 145 h. Twice a day subsamples were taken for chromatography and parallel phytotoxicity assessment. Inhibition of algal reproduction of the initial diclofenac solution was in the mg L?1 range indicating no specific toxicity of diclofenac towards S. vacuolatus. Fast degradation of diclofenac was observed with half lives between 3.3 and 6.4 h during the first and the third day of exposure, respectively. Phytotoxicity increased after 3.5 h of exposure of diclofenac to sunlight and showed a maximum of sixfold enhanced toxicity after 53 h of exposure to sunlight. Several phototransformation products were found during the experiment. The time courses of the relative concentration of three transformation products significantly correlated with enhanced phytotoxicity during the experiment. This indicates a high toxicity potential of phototransformation products of diclofenac at concentration levels that may come close to environmental concentrations of residual diclofenac after degradation. We conclude that toxicity assessment of phototransformation products should be included in the risk assessment of pharmaceuticals in the environment.
机译:环境中药物的出现是一个新兴问题。几项研究发现,在全世界大多数被调查的地表水中普遍存在非甾体类抗炎药双氯芬酸。据实验室测定以及在天然水系统中报道了双氯芬酸的光转化,这提出了双氯芬酸的光转化产物对水生生物可能产生不利影响的问题。在这项研究中,使用同步培养单细胞绿藻场景藻(Scendesmus vacuumlatus)评估双氯芬酸暴露于自然阳光下的植物毒性。将溶解在50 mg L?1 的超纯水中的双氯芬酸暴露在盛夏的自然阳光下最多145小时。每天两次抽取二次样品进行色谱和平行的植物毒性评估。最初的双氯芬酸溶液的藻类繁殖抑制作用在mg L?1 范围内,表明双氯芬酸对空泡链球菌没有特异性毒性。在暴露的第一天和第三天,双氯芬酸快速降解,半衰期分别在3.3至6.4小时之间。双氯芬酸暴露于阳光下3.5小时后,植物毒性增加,暴露于阳光下53小时后,其毒性最大增加了六倍。在实验过程中发现了几种光转化产物。三种转化产物的相对浓度随时间变化的过程与实验过程中增强的植物毒性密切相关。这表明双氯芬酸的光转化产物在浓度水平下具有高毒性潜力,该浓度水平可能接近降解后残留双氯芬酸的环境浓度。我们得出结论,光转化产物的毒性评估应包括在环境药物的风险评估中。

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