首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A separation voltage polarity switching method for higher sample loading capacity and better separation resolution in transient capillary isotachophoresis separation
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A separation voltage polarity switching method for higher sample loading capacity and better separation resolution in transient capillary isotachophoresis separation

机译:用于较高样本负载能力的分离电压极性切换方法和瞬态毛细管同位状分离中更好的分离分辨率

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摘要

A separation voltage polarity switching transient capillary isotachophoresis (PS-tCITP) was developed to overcome a major sample loading volume limitation in transient capillary isotachophoresis (tCITP). The fundamental idea of PS-tCITP is to let sample ions move back and forth in a separation capillary during their initial isotachophoresis focusing stage by switching the polarity of the separation voltage, in order to both increase the sample loading volume and improve the separation efficiency as compared to the conventional tCITP method. The experimental evaluation of the novel PS-tCITP method by using two peptide standards at 2 mu M concentration showed that the maximum sample loading volume could be increased from 45% of the total separation capillary volume in tCITP to 70% in PS-tCITP, which resulted in a more than 1.5 fold increase in the peptide peak intensity at a given length/volume of the separation capillary. Due to the consecutive focusing of sample volume from each polarity switching of the separation voltage, the separation time window at a given sample loading volume was also increased significantly in PS-tCITP as compared to tCITP. Experiment comparison between tCITP and PS-tCITP at 45% sample loading volume using the same setup showed that the migration time difference between the two peptide peaks increased from 0.3 min in tCITP to 0.363 min in PS-tCITP with similar peak widths and heights, resulting in roughly a 21% improvement in separation resolution. The performance advantages of PS-tCITP separation over tCITP separation were further verified by using a mixture of six peptide standards.
机译:开发了一种分离电压极性切换瞬时毛细管毛细血管(PS-TCITP)以克服瞬态毛细管同位感(TCITP)的主要样品负载量限制。 PS-TCITP的基本思想是通过切换分离电压的极性,在其初始等异孢子率聚焦阶段,以使样品离子在分离毛细管中来回移动,以增加样品负载量并提高分离效率与传统的TCITP方法相比。通过使用以2微米的浓度表明,最大的样品加载量可以从在tCITP总分离毛细管体积的45%PS-tCITP,被提高到70%两个肽标准新颖PS-tCITP方法的实验评估,其在给定长度/体积的分离毛细管的肽峰强度下产生超过1.5倍。由于从分离电压的每个极性切换的样本体积的连续聚焦,与TCITP相比,PS-TCITP的给定样品负载体积的分离时间窗口也显着增加。使用相同设置的TCITP和PS-TCITP之间的实验比较,使用相同的设置显示,两种肽峰之间的迁移时间差从TCITP中的0.3分钟增加到PS-TCITP中的0.363分钟,具有类似的峰值宽度和高度,产生在分离分辨率的提高约为21%。通过使用六种肽标准的混合物进一步验证PS-TCITP分离PS-TCITP分离的性能优势。

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