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Highly Sensitive Analysis in Capillary Electrophoresis Using Large-volume Sample Stacking with an Electroosmotic Flow Pump Combined with Field-amplified Sample Injection

机译:使用大体积样品堆叠用电渗流量泵的毛细管电泳的高敏感性分析与现场扩增的样品注射相结合

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To achieve highly sensitive analysis without labor-intensive experimental procedures in capillary electrophoresis (CE), large-volume sample stacking with an electroosmotic flow pump (LVSEP)–field-amplified sample injection (FASI) was combined with a dynamic coating technique. In this study, poly(vinyl pyrrolidone) (PVP) was employed for the dynamic coating additive. Since a standard fluorescent dye, fluorescein, was well concentrated in a conventional LVSEP, the PVP dynamically-coated capillaries can be also applied to the LVSEP-FASI analysis. In our home-made CE apparatus, however, current breakdown was often caused, especially at a longer electrokinetic injection time due to bubble formation. To avoid the interference of bubble formation, the distance between the tips of the electrode and the capillary in the vertical direction was changed from 0 to 2.5 cm under the magnetic stirring condition. This allowed for a long electrokinetic injection time of up to 20 min, resulting in a sensitive enhancement factor (SEF) of 34900 for fluorescein. The developed method was applied to the chiral analysis of amino acids in CE. As a result, leucine (Leu) was successfully separated in LVSEP-FASI with SEFs of 6420 and 4500 for the D- and L-Leu peaks, respectively.
机译:为了在没有毛细管电泳(Ce)中的劳动密集型实验程序的高敏感性分析,用电渗流泵(LVSEP)-FIELDS-FIELDS-SAMMATIZED样品注射(FASI)堆叠大体积样品与动态涂层技术相结合。在该研究中,使用聚(乙烯基吡咯烷酮)(PVP)用于动态涂料添加剂。由于标准荧光染料,荧光素浓缩,常规LVSEP浓缩,PVP动态涂层毛细管也可以应用于LVSEP-FASI分析。然而,在我们自制的CE设备中,通常引起电流击穿,特别是在泡沫形成引起的电动注射时间较长。为了避免气泡形成的干涉,在磁力搅拌条件下,电极尖端和垂直方向上的毛细管之间的距离变为2.5cm。这允许长达20分钟的长电动注射时间,导致荧光素34900的敏感增强因子(SEF)。将开发方法应用于Ce中氨基酸的手性分析。结果,亮氨酸(Leu)分别在LVSEP-FASI中成功分离,SEF为6420和4500的D-和L-Leu峰。

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