TY - JOUR
T1 - Screening of benzodiazepines in thirty European rivers
AU - Fick, Jerker
AU - Brodin, Tomas
AU - Heynen, Martina
AU - Klaminder, Jonatan
AU - Jonsson, Micael
AU - Grabicova, Katerina
AU - Randak, Tomas
AU - Grabic, Roman
AU - Kodes, Vit
AU - Slobodnik, Jaroslav
AU - Sweetman, Andrew
AU - Earnshaw, Mark
AU - Caracciolo, Anna Barra
AU - Lettieri, Teresa
AU - Loos, Robert
PY - 2017
Y1 - 2017
N2 - Pharmaceuticals as environmental contaminants have received a lot of interest over the past decade but, for several pharmaceuticals, relatively little is known about their occurrence in European surface waters. Benzodiazepines, a class of pharmaceuticals with anxiolytic properties, have received interest due to their behavioral modifying effect on exposed biota. In this study, our results show the presence of one or more benzodiazepine(s) in 86% of the analyzed surface water samples (n = 138) from 30 rivers, representing seven larger European catchments. Of the 13 benzodiazepines included in the study, we detected 9, which together showed median and mean concentrations (of the results above limit of quantification) of 5.4 and 9.6 ng L-1, respectively. Four benzodiazepines (oxazepam, temazepam, clobazam, and bromazepam) were the most commonly detected. In particular, oxazepam had the highest frequency of detection (85%) and a maximum concentration of 61 ng L-1. Temazepam and clobazam were found in 26% (maximum concentration of 39 ng L-1) and 14% (maximum concentration of 11 ng L-1) of the samples analyzed, respectively. Finally, bromazepam was found only in Germany and in 16 out of total 138 samples (12%), with a maximum concentration of 320 ng L-1. This study clearly shows that benzodiazepines are common micro-contaminants of the largest European river systems at ng L-1 levels. Although these concentrations are more than a magnitude lower than those reported to have effective effects on exposed biota, environmental effects cannot be excluded considering the possibility of additive and sub-lethal effects. (C) 2017 Elsevier Ltd. All rights reserved.
AB - Pharmaceuticals as environmental contaminants have received a lot of interest over the past decade but, for several pharmaceuticals, relatively little is known about their occurrence in European surface waters. Benzodiazepines, a class of pharmaceuticals with anxiolytic properties, have received interest due to their behavioral modifying effect on exposed biota. In this study, our results show the presence of one or more benzodiazepine(s) in 86% of the analyzed surface water samples (n = 138) from 30 rivers, representing seven larger European catchments. Of the 13 benzodiazepines included in the study, we detected 9, which together showed median and mean concentrations (of the results above limit of quantification) of 5.4 and 9.6 ng L-1, respectively. Four benzodiazepines (oxazepam, temazepam, clobazam, and bromazepam) were the most commonly detected. In particular, oxazepam had the highest frequency of detection (85%) and a maximum concentration of 61 ng L-1. Temazepam and clobazam were found in 26% (maximum concentration of 39 ng L-1) and 14% (maximum concentration of 11 ng L-1) of the samples analyzed, respectively. Finally, bromazepam was found only in Germany and in 16 out of total 138 samples (12%), with a maximum concentration of 320 ng L-1. This study clearly shows that benzodiazepines are common micro-contaminants of the largest European river systems at ng L-1 levels. Although these concentrations are more than a magnitude lower than those reported to have effective effects on exposed biota, environmental effects cannot be excluded considering the possibility of additive and sub-lethal effects. (C) 2017 Elsevier Ltd. All rights reserved.
KW - Anxiolytics
KW - Oxazepam
KW - Temazepam
KW - Clobazam
KW - Bromazepam
KW - Anxiolytics
KW - Oxazepam
KW - Temazepam
KW - Clobazam
KW - Bromazepam
UR - https://res.slu.se/id/publ/119850
U2 - 10.1016/j.chemosphere.2017.02.126
DO - 10.1016/j.chemosphere.2017.02.126
M3 - Journal article
SN - 0045-6535
VL - 176
SP - 324
EP - 332
JO - Chemosphere
JF - Chemosphere
ER -