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Uptake, biotransformation and elimination of selected pharmaceuticals in a freshwater invertebrate measured using liquid chromatography tandem mass spectrometry

机译:使用液相色谱串联质谱法测量的淡水无脊椎动物中的选定药物的吸收,生物转化和消除

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摘要

Methods were developed to assess uptake and elimination kinetics in Gammarus pulex of nine pharmaceuticals (sulfamethazine, carbamazepine, diazepam, temazepam, trimethoprim, warfarin, metoprolol, nifedipine and propranolol) using targeted LC-MS/MS to determine bioconcentration factors (BCFs) using a 96 h toxicokinetic exposure and depuration period. The derived BCFs for these pharmaceuticals did not trigger any regulatory thresholds and ranged from 0-73 L kg−1 (sulfamethazine showed no bioconcentration). Metabolism of chemicals can affect accurate BCF determination through parameterisation of the kinetic models. The added selectivity of LC-MS/MS allowed us to develop confirmatory methods to monitor the biotransformation of propranolol, carbamazepine and diazepam in G. pulex. Varying concentrations of the biotransformed products; 4-hydroxypropranolol sulphate, carbamazepine-10,11-epoxide, nordiazepam, oxazepam and temazepam were measured following exposure of the precursor compounds. For diazepam, the biotransformation product nordiazepam was present at higher concentrations than the parent compound at 94 ng g−1 dw. Overall, the results indicate that pharmaceutical accumulation is low in these freshwater amphipods, which can potentially be explained by the rapid biotransformation and excretion.
机译:开发了方法,以靶向LC-MS / MS评估九种药物(磺胺二甲嘧啶,卡马西平,地西epa,替马西,、甲氧苄氨苄,华法林,美托洛尔,硝苯地平和普萘洛尔)在γ-羟色胺中的吸收和消除动力学,从而使用a-LC / MS / MS确定生物浓缩因子(BCF) 96小时的毒代动力学暴露和净化期。这些药物的衍生BCF不会触发任何监管阈值,范围为0-73 L kg-1(磺胺二甲嘧啶没有生物浓度)。化学物质的代谢可通过动力学模型的参数化影响准确的BCF测定。 LC-MS / MS的增加的选择性使我们能够开发验证方法来监测普萘洛尔中普萘洛尔,卡马西平和地西epa的生物转化。不同浓度的生物转化产物;在暴露前体化合物后,测量了4-羟基普萘洛尔硫酸盐,卡马西平-10,11-环氧化物,去甲西p,奥沙西m和替马西m。对于地西epa,生物转化产物去甲西p的浓度高于母体化合物,浓度为94 ng g-1 dw。总体而言,结果表明这些淡水两栖动物的药物蓄积量很低,这可能由快速的生物转化和排泄来解释。

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