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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Processes involved in sweeping as sample enrichment method in cyclodextrin-modified micellar electrokinetic chromatography of hydrophobic basic analytes
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Processes involved in sweeping as sample enrichment method in cyclodextrin-modified micellar electrokinetic chromatography of hydrophobic basic analytes

机译:疏水性碱性分析物的环糊精修饰胶束电动色谱中作为样品富集方法的清扫过程

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Sweeping is an enrichment method in MEKC, which includes following steps: stacking/destacking of the micelles, sweeping of analyte by the stacked/destacked micelles, destacking/stacking of the swept analyte zone and additional focusing/defocusing due to the retention factor gradient effect (RFGE). In this study, we investigate additional processes, regarding online focusing in cyclodextrin-modified MEKC (CD-MEKC) of hydrophobic basic analytes: dynamic pH junction (sample with pH different from that of BGE) and adsorption of analyte onto the capillary wall within the sample zone. It is demonstrated that the developed method for the assessment of the sweeping efficiency is also applicable to CD-MEKC taking ethylparaben as an example of acidic analytes and desloratadine as an example of basic analytes using different types of β-cyclodextrin. Our previous results regarding RFGE as an additional focusing/defocusing effect in sweeping-MEKC are confirmed for the case that the apparent distribution coefficient differs for the sample and the BGE due to a different content of the complex-forming agent cyclodextrin and due to a pH difference between the sample and the BGE. Despite being significantly more hydrophobic than ethylparaben, desloratadine shows an unexpectedly low enrichment factor. This enrichment factor is nearly unaffected by the addition of CD to the BGE. This unexpected behavior is attributed to wall adsorption of the protonated hydrophobic basic analyte within the sample zone, which significantly counteracts the sweeping process. This assumption is corroborated by an improvement in the enrichment factor achieved via addition of a dynamic coating agent (triethylamine) to the sample solution.
机译:扫描是MEKC中的一种富集方法,包括以下步骤:胶束的堆叠/拆解,堆叠的/堆叠的胶束对分析物的扫描,扫掠的分析物区域的堆叠/堆叠以及由于保留因子梯度效应产生的额外聚焦/散焦(RFGE)。在这项研究中,我们研究了有关在线聚焦于疏水性碱性分析物的环糊精修饰的MEKC(CD-MEKC)的其他过程:动态pH结(pH不同于BGE的样品)以及分析物在毛细管内的毛细管壁上的吸附。样本区。证明了开发的评估扫除效率的方法也适用于CD-MEKC,以对羟基苯甲酸乙酯为酸性分析物为例,去氯雷他定为使用不同类型的β-环糊精的碱性分析物为例。我们先前关于RFGE作为扫掠MEKC中额外的聚焦/散焦效果的结果在以下情况下得到了证实:样品中的BGE的表观分布系数由于复合物形成剂环糊精含量的不同以及pH值而不同。样品和BGE之间的差异。尽管去氯雷他定的疏水性明显高于对羟基苯甲酸乙酯,但其富集因子却出乎意料地低。该富集因子几乎不受CD加入BGE的影响。这种出乎意料的行为归因于质子化疏水性碱性分析物在样品区内的壁吸附,这大大抵消了清扫过程。通过向样品溶液中添加动态涂层剂(三乙胺)获得的富集因子得到改善,证实了这一假设。

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