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首页> 外文期刊>Scientific reports. >DBS-platform for biomonitoring and toxicokinetics of toxicants: proof of concept using LC-MS/MS analysis of fipronil and its metabolites in blood
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DBS-platform for biomonitoring and toxicokinetics of toxicants: proof of concept using LC-MS/MS analysis of fipronil and its metabolites in blood

机译:DBS平台毒物的生物监测和毒性学术:使用氟氯丙酮的LC-MS / MS分析概念证明及其血液代谢物

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A simple, sensitive and high throughput LC-MS/MS method was developed and validated for quantification of fipronil, fipronil sulfone and fipronil desulfinyl in rat and human dried blood spots (DBS). DBS samples were prepared by spiking 10?μl blood on DMPK-C cards followed by drying at room temperature. The whole blood spots were then punched from the card and extracted using acetonitrile. The total chromatographic run time of the method was only 2?min. The lower limit of quantification of the method was 0.1?ng/ml for all the analytes. The method was successfully applied to determine fipronil desulfinyl in DBS samples obtained from its toxicokinetic study in rats following intravenous dose (1?mg/kg). In conclusion, the proposed DBS methodology has significant potential in toxicokinetics and biomonitoring studies of environmental toxicants. This microvolume DBS technique will be an ideal tool for biomonitoring studies, particularly in paediatric population. Small volume requirements, minimally invasive blood sampling method, easier storage and shipping procedure make DBS a suitable technique for such studies. Further, DBS technique contributes towards the principles of 3Rs resulting in significant reduction in the number of rodents used and refinement in sample collection for toxicokinetic studies.
机译:开发并验证了一种简单,灵敏和高通量的LC-MS / MS方法,用于定量FIPRONIL,FIPRONIL砜和REIPRONIL脱硫基大鼠和人干血斑(DBS)。 DBS样品通过在DMPK-C卡上掺入10≤μL血液,然后在室温下干燥。然后从卡上冲压整个血斑并使用乙腈提取。该方法的总色谱运行时间仅为2?分钟。所有分析物的方法的定量下限为0.1≤ng/ ml。成功地应用该方法以确定从其静脉内剂量(1×Mg / kg)之后的大鼠毒性动力学研究中获得的DBS样品中的氟镍硅氧基。总之,拟议的DBS方法具有巨大的毒物动脉管性和环境毒物生物监测研究的潜力。这种微孔DBS技术将是生物监测研究的理想工具,特别是在儿科人群中。小体积要求,微创血液采样方法,更容易存储和运输程序使DBS​​成为这种研究的合适技术。此外,DBS技术有助于3RS的原理,导致毒物动力学研究的样品收集中使用和改进的啮齿动物数量显着降低。

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