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2D separations on a 1D chip: gradient elution moving boundary electrophoresis—chiral capillary zone electrophoresis

机译:一维芯片上的二维分离:梯度洗脱移动边界电泳-手性毛细管区带电泳

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摘要

A new method is described for two-dimensional (2D) separations using a microfluidic chip normally employed for single dimension electrophoresis. The method employs a combination of gradient elution moving boundary electrophoresis (GEMBE) and chiral capillary zone electrophoresis (CZE). The simplicity of the first dimension GEMBE method enables its implementation in the injection channel of a conventional electrophoresis chip, simplifying the design and operation of the device. The method was used for high resolution 2D chiral separations of a mixture of amino acids considered as possible signatures of extant or extinct life for solar system exploration. The enantiomers of aspartic acid, glutamic acid, serine, alanine, and valine were all resolved as well as glycine (achiral) and several unidentified impurities, giving an estimated peak capacity of 35 for the region between valine and glycine. The results highlight the need for high peak capacity separations for chiral amino acid analysis if accurate enantiomeric ratios are to be determined.
机译:描述了使用通常用于单维电泳的微流控芯片进行二维(2D)分离的新方法。该方法结合了梯度洗脱移动边界电泳(GEMBE)和手性毛细管区带电泳(CZE)。第一维GEMBE方法的简单性使其能够在常规电泳芯片的注入通道中实施,从而简化了设备的设计和操作。该方法用于氨基酸混合物的高分辨率2D手性分离,这被认为是太阳系探索现存或灭绝生命的可能特征。天冬氨酸,谷氨酸,丝氨酸,丙氨酸和缬氨酸的对映异构体以及甘氨酸(非手性)和一些未鉴定的杂质均已分离,在缬氨酸和甘氨酸之间的区域估计峰容量为35。结果表明,如果要确定准确的对映体比例,则需要高峰容量分离用于手性氨基酸分析。

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