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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Separation of proteins by zone electrophoresis on-line coupled with isotachophoresis on a column-coupling chip with conductivity detection.
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Separation of proteins by zone electrophoresis on-line coupled with isotachophoresis on a column-coupling chip with conductivity detection.

机译:通过区域电泳在线分离蛋白质,并在具有电导检测功能的柱耦合芯片上通过等速电泳进行分离。

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摘要

This feasibility study deals with the separations of proteins by an on-line combination of zone electrophoresis (ZE) with isotachophoresis (ITP) on a poly(methylmethacrylate) column-coupling (CC) chip with integrated conductivity detection. ITP and ZE provided specific analytical functions while performing the cationic mode of the separation. ITP served, mainly, for concentrations of proteins and its concentrating power was beneficial in reaching a low dispersion transfer (injection) of the proteinous constituents, loaded on the CC chip in a 960 nL volume, into the ZE separation stage. This was complemented by an electrophoretically driven removal of the sample constituents migrating in front of the focused proteins from the separation system before the ZE separation. On the other hand, ZE served as a final separation (destacking) method and it was used under the separating conditions providing the resolutions and sensitive conductivity detections of the test proteins. In this way, ITP and ZE cooperatively contributed to low- or sub-mug/mL concentration detectabilities of proteins and their quantitations at 1-5 mug/mL concentrations. However, a full benefit in concentration detectabilities of proteins, expected from the use of the ITP-ZE combination, was not reached in this work. Small adsorption losses of proteins and detection disturbances in the ZE stage of separation, very likely due to trace constituents concentrated by ITP, appear to set limits in the detection of proteins in our experiments. The ITP-ZE separations were carried out in a hydrodynamically closed separation compartment of the chip with suppressed hydrodynamic and electroosmotic flows of the electrolyte solutions. Such transport conditions, minimizing fluctuations of the migration velocities of the separated constituents, undoubtedly contributed to highly reproducible migrations of the separated proteins (fluctuations of the migration time of a particular protein were typically 0.5% RSD in repeated ITP-ZE runs).
机译:这项可行性研究通过在集成了电导率检测的聚(甲基丙烯酸甲酯)柱耦合(CC)芯片上通过区域电泳(ZE)与等速电泳(ITP)的在线组合来处理蛋白质的分离。 ITP和ZE在执行阳离子分离模式时提供了特定的分析功能。 ITP主要用于蛋白质的浓缩,其浓缩能力有利于将以960 nL体积装载在CC芯片上的蛋白质成分以较低的分散度转移(注射)到ZE分离阶段。在ZE分离之前,通过电泳驱动的方法从电泳分离系统中去除迁移到聚焦蛋白前面的样品成分,这是一个补充。另一方面,ZE作为最终分离(堆积)方法,在分离条件下使用,可提供分离度和对测试蛋白的灵敏电导检测。这样,ITP和ZE共同促进了低杯或亚杯/ mL蛋白质浓度检测能力及其在1-5杯/ mL浓度下的定量分析。但是,这项工作并未达到使用ITP-ZE组合所期望的蛋白质浓度检测能力的全部优势。蛋白质小的吸附损失和ZE分离阶段的检测干扰(很可能是由于ITP浓缩了痕量成分)似乎在我们的实验中为蛋白质检测设定了限制。 ITP-ZE分离是在芯片的流体动力学封闭的分离室中进行的,其中电解质溶液的流体动力学和电渗流受到抑制。这样的运输条件,最大程度地减少了分离出的成分的迁移速度的波动,无疑有助于分离出的蛋白质的高度可复制的迁移(特定蛋白质的迁移时间的波动在重复的ITP-ZE运行中通常为0.5%RSD)。

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