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Capillary electrophoresis for drug analysis

机译:毛细管电泳进行药物分析

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Abstract: Capillary electrophoresis (CE) is a high resolution separation technique which is amenable to a wide variety of solutes, including compounds which are thermally degradable, non-volatile and highly polar, and is therefore well suited for drug analysis. Techniques which have been used in our laboratory include electrokinetic chromatography (ECC), free zone electrophoresis (CZE) and capillary electrochromatography (CEC). ECC, which uses a charged run buffer additive which migrates counter to osmotic flow, is excellent for many applications, including, drug screening and analyses of heroin, cocaine and methamphetamine samples. ECC approaches include the use of micelles and charged cyclodextrins, which allow for the separation of complex mixtures. Simultaneous separation of acidic, neutral and basic solutes and the resolution of optical isomers and positional isomers are possible. CZE has been used for the analysis of small ions (cations and anions) in heroin exhibits. For the ECC and CZE experiments performed in our laboratory, uncoated capillaries were used. In contrast, CEC uses capillaries packed with high performance liquid chromatography stationary phases, and offers both high peak capacities and unique selectivities. Applications include the analysis of cannabinoids and drug screening. Although CE suffers from limited concentration sensitivity, it is still applicable to trace analysis of drug samples, especially when using injection techniques such as stacking, or detection schemes such as laser induced fluorescence and extended pathlength UV.!16
机译:摘要:毛细管电泳(CE)是一种高分辨率分离技术,适用于多种溶质,包括可热降解,不挥发和高极性的化合物,因此非常适合药物分析。我们实验室使用的技术包括电动色谱(ECC),自由区电泳(CZE)和毛细管电色谱(CEC)。 ECC使用带电荷的运行缓冲添加剂,可逆渗透而迁移,非常适合许多应用,包括药物筛选以及海洛因,可卡因和甲基苯丙胺样品的分析。 ECC方法包括使用胶束和带电的环糊精,从而可以分离复杂的混合物。可以同时分离酸性,中性和碱性溶质,并拆分旋光异构体和位置异构体。 CZE已用于分析海洛因展品中的小离子(阳离子和阴离子)。对于在我们实验室中进行的ECC和CZE实验,使用了未涂层的毛细管。相反,CEC使用填充有高效液相色谱固定相的毛细管,并提供高峰容量和独特的选择性。应用包括大麻素分析和药物筛选。尽管CE的浓度灵敏度有限,但它仍然适用于药物样品的痕量分析,尤其是在使用诸如堆叠之类的注射技术或诸如激光诱导荧光和扩展光程UV等检测方案时!16

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