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Direct Hadamard Transform Capillary Zone Electrophoresis without Instrumental Modifications

机译:直接Hadamard转化毛细管区电泳,无乐器修改

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摘要

We report the first successful implementation of a multiplexing method on a standard capillary electrophoresis system with UV detection that is independent of additional hardware. This was achieved using the Hadamard transform approach and employing vial exchange and voltage suspensions for translation of pseudorandom binary sequence elements into sample and background electrolyte injections of a capillary zone electrophoresis separation. Sequences exceeding peak capacity of the capillary were subdivided into shorter subsequences measured successively and realigned afterward based on EOF marker or analyte peaks. This way, we realized and deconvoluted modulation sequences as long as 8-bit (255 injections) for two systems containing either AMP or a mixture of the nucleotides (A,C,G,U)MP resulting in electropherograms of considerably improved signal-to-noise ratio. We achieved factors of intensity enhancement of around 6.9 and 5.2, respectively (theoretical maximum 8.0). This contribution, further, presents experimental and simulation studies on the effects on zones during injection and separation when experiencing voltage suspensions. Besides analysis of EOF behavior and influence of diffusion dispersion, we also provide data on the significance of specific electrophoretic errors such as peak position shift, inconsistent sample injection, and peak broadening on the quality of the inverse Hadamard transform. Moreover, the application of our approach to the practical analysis of a milk sample is described. The results demonstrate the applicability of multiplexing on unmodified standard CE instrumentation and establish a new suitable methodology to enhance the low sensitivity of on-column UV detection in capillary electrophoresis.
机译:我们在具有UV检测的标准毛细管电泳系统上首次成功实现了多路复用方法,其与额外的硬件无关。这是使用Hadamard变换方法实现的,并采用小瓶交换和电压悬浮液,用于将伪随机二进制序列元素翻译成样品和背景电解液注射毛细管区电泳分离。超过毛细血管峰值容量的序列被细分为依次测量的较短子程,并基于EOF标记或分析物峰来重新调整。这样,我们实现了含有AMP或核苷酸(A,C,G,U)MP的两个系统的8位(255次注射)的解递质调制序列,导致显着改善信号的电泳图 - 到 - 不良比率。我们达到了强度增强的因素分别为6.9和5.2(理论最大值8.0)。此外,这种贡献提出了在经历电压悬浮液时在注射和分离过程中对区域的影响的实验和模拟研究。除了分析EOF的行为和扩散分散的影响之外,还提供了关于特定电泳误差的重要性的数据,例如峰位置偏移,不一致的样品注入,以及对逆hadamard变换的质量的峰值扩展。此外,描述了我们对乳汁样品的实际分析的应用。结果证明了多路复用对未经修改的标准CE仪器的适用性,并建立了一种新的合适方法,以提高毛细管电泳中柱上UV检测的低灵敏度。

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  • 来源
    《Analytical chemistry》 |2018年第14期|共9页
  • 作者单位

    Ludwig Maximilian Univ Munich Fac Chem &

    Pharm Butenandtstr 5-13 D-81377 Munich Germany;

    Ludwig Maximilian Univ Munich Fac Chem &

    Pharm Butenandtstr 5-13 D-81377 Munich Germany;

    Ludwig Maximilian Univ Munich Fac Chem &

    Pharm Butenandtstr 5-13 D-81377 Munich Germany;

    Ludwig Maximilian Univ Munich Fac Chem &

    Pharm Butenandtstr 5-13 D-81377 Munich Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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