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In-Transit Electroextraction of Small-Molecule Pharmaceuticals from Blood

机译:来自血液的小分子药物的过境电催化

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An electrokinetic platform was developed for extracting small-molecule pharmaceuticals from a dried blood spot. Through the exclusion of liquid reagents and use of low field strength (6 V cm(-1)), the electroextraction of a dnig from a dried blood spot, deposited on a polymer inclusion membrane (PIM), could be realised while in transit in the mail. In transit sample preparation provides a potential solution to in situ sample degradation and may accelerate the workflow upon arrival of a patient sample at the analytical facility. The electroextraction method was enabled through our discovery of the use of 15-20 pm thin PIMs as electrophoretic separation medium in absence of liquid reagents. Here, a PIM consisting of cellulose triacetate as polymer base, 2-nitrophenyl octyl ether as plasticizer and 1-ethyl-3-meihylinzidazolium bis(tri-fluoromeihylsulfonyl)imide as carrier was used. The PIM, was packaged with two 12 V batteries to supply the separation voltage. A blood spot containing berberine chloride was deposited and dried before the applying the separation potential, allowing for the electroextraction while the packaged device was shipped in internal mail. Upon arrival in the analytical laboratory, the PIM was analysed using a fluorescence microscope with photon multiplier tube, quantifying the berberine extracted away from the sample matrix. This platform represents a new opportunity for processing clinical samples during transport to the laboratory, saving time and manual handling to accelerate the time to result.
机译:开发了一种用于从干燥的血液斑点提取小分子药物的电动电动平台。通过排除液体试剂和使用低场强(6Vcm(-1)),可以在运输过程中实现沉积在聚合物包裹膜(PIM)上的干燥血斑的DNIG的电拔除邮件。在运输过程中,制备提供潜在的溶液,其原位样品降解,并且可以在分析设施到达患者样品时加速工作流程。通过在不存在液体试剂的情况下,通过我们发现使用15-20pm薄Pim作为电泳分离介质,使电催化方法成为电泳。这里,使用由纤维素三乙酸纤维素作为聚合物基质,2-硝基苯基辛基醚作为增塑剂和1-乙基-3-Meihylinzidazolium作为载体作为载体的PIM作为载体。 PIM包装有两节12伏电池供应分离电压。在施加分离电位之前沉积含有小檗碱氯化物的血液点,并在包装​​装置在内部邮件中运输时允许电拔除。到达分析实验室后,使用具有光子倍增管的荧光显微镜分析PIM,定量从样品基质中提取的小檗碱。该平台代表了在运输到实验室,节省时间和手动处理期间处理临床样本的新机会,以加速结果。

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