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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Combining poly (methacrylic acid-co-ethylene glycol dimethacrylate) monolith microextraction and octadecyl phosphonic acid-modified zirconia-coated CEC with field-enhanced sample injection for analysis of antidepressants in human plasma and urine.
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Combining poly (methacrylic acid-co-ethylene glycol dimethacrylate) monolith microextraction and octadecyl phosphonic acid-modified zirconia-coated CEC with field-enhanced sample injection for analysis of antidepressants in human plasma and urine.

机译:将聚(甲基丙烯酸-乙二醇二甲基丙烯酸乙二醇酯)整体式微萃取与十八烷基膦酸改性的氧化锆涂层CEC与现场增强的样品注射液结合使用,可分析人血浆和尿液中的抗抑郁药。

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摘要

A method based on poly (methacrylic acid-co-ethylene glycol dimethacrylate) monolith microextraction and octadecylphosphonic acid-modified zirconia-coated CEC followed by field-enhanced sample injection preconcentration technique was proposed for sensitive CE-UV analysis of six antidepressants (doxepin, clozapine, imipramine, paroxetine, fluoxetine and chlorimipramine) in human plasma and urine. A poly(methacrylic acid-co-ethylene glycol dimethacrylate) monolithic capillary column was introduced for the extraction of antidepressants from urine and plasma samples. The hydrophobic main chains and acidic pendant groups of the monolithic column make it a superior material for extraction of basic analytes from aqueous matrix. After extraction, the desorption solvent, which normally provided an excellent medium to ensure direct compatibility for field-enhanced sample injection in CE, was analyzed by CE directly. By the use of alkylphosphonate-modified zirconia-coated CEC for separation of the basic compounds of antidepressants, high separation efficiency and resolution were achieved because that both hydrophobic interaction between analytes and alkylphosphonate-modified zirconia coat and electrophoretic effect work on the separation of antidepressants. The best separation was achieved using a buffer composed of 0.3 M ammonium acetate (adjusted to pH 4.5 with 1 M acetic acid) and 35% ACN v/v, with a temperature and voltage of 20 degrees C and 20 kV, respectively. By applying both preconcentration procedures, LODs of 11.4-51.5 and 3.7-17.0 microg/L were achieved for the six antidepressants in human plasma and urine, respectively. Excellent method of reproducibility was found over a linear range of 50-5000 microg/L in plasma and urine sample.
机译:提出了一种基于聚甲基丙烯酸-乙二醇二甲基丙烯酸乙酯整体微萃取和十八烷基膦酸修饰的氧化锆包覆的CEC的方法,然后采用场增强的样品进样富集技术对六种抗抑郁药(多西平,氯氮平)进行灵敏的CE-UV分析。 ,血浆和尿液中的,丙咪嗪,帕罗西汀,氟西汀和氯丙咪嗪)。引入了聚(甲基丙烯酸-乙二醇二甲基丙烯酸乙二醇酯)整体毛细管柱,用于从尿液和血浆样品中提取抗抑郁药。整体柱的疏水性主链和酸性侧基使其成为从水性基质中提取碱性分析物的上乘材料。萃取后,通常通过CE直接分析解吸溶剂,该溶剂通常提供优异的介质以确保与CE中的现场进样样品直接相容。通过使用烷基膦酸酯改性的氧化锆涂层CEC分离抗抑郁药的碱性化合物,可以实现高分离效率和分离度,因为分析物与烷基膦酸酯改性的氧化锆涂层之间的疏水相互作用以及电泳作用都可用于分离抗抑郁药。使用由0.3 M乙酸铵(用1 M乙酸调节至pH 4.5)和35%ACN v / v组成的缓冲液(温度和电压分别为20摄氏度和20 kV)实现最佳分离。通过应用这两种预浓缩程序,人血浆和尿液中的六种抗抑郁药的LOD分别达到11.4-51.5和3.7-17.0 microg / L。在血浆和尿液样品的线性范围为50-5000 microg / L的范围内发现了极好的重现性方法。

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