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Liquid phase microextraction integrated into a microchip device for the extraction of fluoroquinolones from urine samples

机译:液相微萃取集成到微芯片装置中,用于从尿液中提取氟质喹

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摘要

For the first time, liquid phase microextraction miniaturized into a microfluidic chip device (mu LPME) combined with a HPLC procedure using diode array (DAD) has been developed for the determination of four fluoroquinolones: marbofloxacin (MRB), norfloxacin (NRF), ciprofloxacin (CPR) and danofloxacin (DNF). The microfluidic chip consisted of two symmetrical channels which contained the acceptor and sample solution separated by a flat polypropylene membrane. Also, a comprehensive study was carried out in order to determine the importance of geometry optimization in microchips based liquid phase microextraction. The optimal channel size was 23 mm length, 3 mm width and 60 pm depth. Both solutions were delivered to the chip using two syringe pumps and the extract collected was directly analyzed by HPLC. The extractions were carried out under double-flow conditions and completed after 7 min. The procedure was successfully applied to urine samples obtaining recoveries within the range of 35 and 62% for all compounds and 10 mu L sample consumption.
机译:首次,用于使用二极管阵列(爸爸)的微流体芯片装置(MU LPME)小型化的液相微萃取与使用二极管阵列(爸爸)的HPLC程序进行了用于测定四种氟喹啉酮:马巴氟沙星(MRB),NORFLOXACIN(NRF),CIPROFLOXACIN (CPR)和Danofloxacin(DNF)。微流体芯片由两个对称通道组成,其含有由扁平聚丙烯膜分离的受体和样品溶液。此外,进行了综合研究,以确定基于微芯片的液相微萃取的几何优化的重要性。最佳通道尺寸为23毫米长,3毫米宽,深度为60μm深度。使用两个注射器泵将两种溶液递送到芯片,并通过HPLC直接分析收集的提取物。萃取在双流条件下进行并在7分钟后完成。该方法成功地应用于尿液样品,从而在所有化合物和10μl样品消耗的范围内获得35和62%的回收率。

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