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微净化-纳流色谱-纳喷雾串联质谱法用于底栖无脊椎动物中痕量药物的检测和定量。

MicroQuEChERS-nanoliquid chromatography-nanospray-tandem mass spectrometry for the detection and quantification of trace pharmaceuticals in benthic invertebrates.

机构信息

Université de Lyon-Institut des Sciences Analytiques, UMR 5280 CNRS-Equipe TRACES, Université Lyon1, ENS-Lyon-5 rue de la Doua, 69100 Villeurbanne, France.

IRSTEA, UR MAEP, Laboratoire d'écotoxicologie, 5 rue de la Doua, 69009 Lyon, France.

出版信息

Talanta. 2015 Jan;132:796-802. doi: 10.1016/j.talanta.2014.10.030. Epub 2014 Oct 29.

DOI:10.1016/j.talanta.2014.10.030
PMID:25476380
Abstract

Due to industrialization and the use of chemical products in everyday life, various types of drugs and pesticides are present in our environment, which threaten and cause negative impacts on aquatic ecosystems. The consequences of these pollutants are gradually becoming visible. Recent evidence confirms that long term exposure to environmental pharmaceutical concentrations can induce adverse effects in aquatic vertebrates and invertebrates such as reproductive impairments and collapse wild populations. Consequently, one of the challenges of environmental science is to evaluate the associated risks. In this context, a new methodology has been developed using nano-LC-nano-ESI MS/MS to quantify traces of two pharmaceuticals (a neuropharmaceutical drug, fluoxetine, and an anticonvulsant drug, carbamazepine) in two molluscs, Potamopyrgus antipodarum and Valvata piscinalis, which are both prosobranch gastropods. A simple and quick extraction method was developed based on a modified and miniaturized version of the QuEChERS method. The procedure involves the extraction of approximately 10 mg of wet mollusc tissue by 500 µL of a mixture of acetonitrile/water/hexane (50/20/30) and 100 mg of buffer salt. Thus, the extraction step was carried out on an individual scale. The sensitivity of this method allowed for the detection of levels as low as 18 ng/g and 128 ng/g for carbamazepine and fluoxetine, respectively, with recoveries of greater than 85% for the two targeted compounds. This method was then applied to both gastropod species exposed to fluoxetine under laboratory conditions. The results provide evidence of bioaccumulation in both P. antipodarum and V. piscinalis and reveal the inter-species differences.

摘要

由于工业化和日常生活中化学产品的使用,各种类型的药物和农药存在于我们的环境中,对水生生态系统造成威胁并产生负面影响。这些污染物的后果逐渐显现。最近的证据证实,长期暴露于环境药物浓度会对水生脊椎动物和无脊椎动物(如生殖障碍和野生种群崩溃)产生不良影响。因此,环境科学的挑战之一是评估相关风险。在这种情况下,使用纳升 LC-纳升电喷雾串联质谱(nano-LC-nano-ESI MS/MS)开发了一种新的方法,用于定量两种药物(一种神经药物氟西汀和一种抗惊厥药物卡马西平)在两种软体动物(美洲大沼螺和圆田螺)中的痕量。根据 QuEChERS 方法的改良和微型化版本开发了一种简单快速的提取方法。该方法包括用 500 µL 乙腈/水/己烷(50/20/30)和 100 mg 缓冲盐提取约 10 mg 湿软体动物组织。因此,提取步骤是在个体规模上进行的。该方法的灵敏度允许检测到低至 18 ng/g 和 128 ng/g 的卡马西平和氟西汀,两种目标化合物的回收率均大于 85%。然后将该方法应用于在实验室条件下暴露于氟西汀的两种腹足类动物。结果表明,两种腹足类动物均有生物蓄积的证据,并揭示了种间差异。

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