首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Design of a new cartridge for selective solid phase extraction using molecularly imprinted polymers: Selective extraction of theophylline from human serum samples
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Design of a new cartridge for selective solid phase extraction using molecularly imprinted polymers: Selective extraction of theophylline from human serum samples

机译:使用分子印迹聚合物选择性固相萃取的新型药筒的设计:从人血清样品中选择性提取茶碱

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摘要

This paper describes design of a new cartridge for selective solid phase extraction (SPE) using molecularly imprinted polymers (MIPs). The apparatus which is termed solvent extraction-MISPE (SE-MISPE) cartridge, consisted of a modified conventional micro test tube and has been developed to perform simultaneous forward-extraction of analyte from aqueous sample solution to an organic phase and back-extraction to MIP solid phase. In order to evaluate the performance of the proposed method, extraction of theophylline (THP) from human serum sample was investigated. An appropriate amount of THP-imprinted polymer was placed in the bottom of the micro tube and an organic solvent pipetted onto it and left to swell the polymer completely. A polyethylene frit to secure MIP particles was positioned by two Teflon rings such that it was fixed below the level of the organic layer. Then, aqueous sample solution containing THP was layered over the organic phase and the lid was closed. After completion of extraction, the organic and aqueous phases were removed and the adsorbed analyte was desorbed using a polar organic solvent. In order to reach the highest recovery, the experimental parameters such as the type of organic solvent, pH and ionic strength of aqueous phase, organic to aqueous volume ratio, time of extraction, type and amount of desorbent solvent were optimized. Under the experimental conditions, a plot of HPLC peak areas vs. initial concentrations of THP in the concentration interval of 0.5-30 mu g ml(-1) showed a good linearity (r = 0.9974). The limit of detection (LOD) and limit of quantification (LOQ) based on three and ten times of the noise of HPLC profile were 0.09 and 0.3 mu g ml(-1), respectively. The relative standard deviation (RSD) of the proposed method for the extraction and determination of 5 mu g THP from 200 mu l standard sample solution for 3 replicate measurements was 3.5%. The results showed that by means of the proposed cartridge, THIP could significantly separate from the other structurally related compounds such as theobromine (THB) and caffeine (CAF). The added THP could be quantitatively recovered (79-83%) from the serum samples by the proposed procedure, being thus a guarantee of the accuracy of the SE-MISPE procedure. In addition, the loss of capability of the SE-MISPE cartridge was not considerably observed after 10 times loading and elution cycles.
机译:本文介绍了一种使用分子印迹聚合物(MIP)进行选择性固相萃取(SPE)的新型滤筒的设计。该设备称为溶剂萃取-MISPE(SE-MISPE)盒,由改进的常规微型试管组成,并且已开发为可同时将分析物从水溶液样品溶液向前萃取到有机相,再反萃取到MIP固相。为了评估该方法的性能,研究了从人血清样品中提取茶碱(THP)的方法。将适量的THP印迹聚合物置于微管底部,将有机溶剂吸移到微管底部,然后使聚合物完全溶胀。用于固定MIP颗粒的聚乙烯玻璃料通过两个特富龙环放置,使其固定在有机层以下。然后,将包含THP的样品水溶液分层在有机相上,并盖上盖子。萃取完成后,除去有机相和水相,并使用极性有机溶剂使吸附的分析物脱附。为了达到最高的回收率,对诸如有机溶剂的类型,pH和水相离子强度,有机与水的体积比,萃取时间,脱附剂的类型和用量等实验参数进行了优化。在实验条件下,在0.5-30μg ml(-1)的浓度范围内HPLC峰面积与THP初始浓度的关系图显示出良好的线性(r = 0.9974)。基于HPLC谱图噪声的三倍和十倍的检测限(LOD)和定量限(LOQ)分别为0.09和0.3μg ml(-1)。拟议的方法从200微升标准样品溶液中提取和测定5微克THP,进行3次重复测量,其相对标准偏差(RSD)为3.5%。结果表明,通过拟议的药筒,THIP可以与其他与结构相关的化合物(如可可碱(THB)和咖啡因(CAF))明显分离。所提出的方法可以从血清样品中定量回收添加的THP(79-83%),从而保证了SE-MISPE方法的准确性。此外,在10次上样和洗脱循环后,未显着观察到SE-MISPE滤芯的功能丧失。

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