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无标记微流控自由流动等电聚焦、pH梯度传感以及生物分子和血浆组分的近实时等电点测定

Label-free microfluidic free-flow isoelectric focusing, pH gradient sensing and near real-time isoelectric point determination of biomolecules and blood plasma fractions.

作者信息

Poehler Elisabeth, Herzog Christin, Lotter Carsten, Pfeiffer Simon A, Aigner Daniel, Mayr Torsten, Nagl Stefan

机构信息

Institut für Analytische Chemie, Universität Leipzig, Johannisallee 29, 04103 Leipzig, Germany.

Institut für Analytische Chemie und Lebensmittelchemie, Technische Universität Graz, Stremayrgasse 9/III, 8010 Graz, Österreich, Austria.

出版信息

Analyst. 2015 Nov 21;140(22):7496-502. doi: 10.1039/c5an01345c.

DOI:10.1039/c5an01345c
PMID:26501586
Abstract

We demonstrate the fabrication, characterization and application of microfluidic chips capable of continuous electrophoretic separation via free flow isoelectric focussing (FFIEF). By integration of a near-infrared (NIR) fluorescent pH sensor layer under the whole separation bed, on-line observation of the pH gradient and determination of biomolecular isoelectric points (pI) was achieved within a few seconds. Using an optical setup for imaging of the intrinsic fluorescence of biomolecules at 266 nm excitation, labelling steps could be avoided and the native biomolecules could be separated, collected and analysed for their pI. The fabricated microchip was successfully used for the monitoring of the separation and simultaneous observation of the pH gradient during the isoelectric focussing of the proteins α-lactalbumin and β-lactoglobulin, blood plasma proteins and the antibiotics ampicillin and ofloxacin. The obtained pIs are in good agreement with literature data, demonstrating the applicability of the system. Mass spectra from the separated antibiotics taken after 15 minutes of continuous separation from different fractions at the end of the microchip validated the separation via microfluidic isoelectric focussing and indicate the possibility of further on- or off-chip processing steps.

摘要

我们展示了能够通过自由流动等电聚焦(FFIEF)进行连续电泳分离的微流控芯片的制造、表征及应用。通过在整个分离床下方集成近红外(NIR)荧光pH传感器层,可在几秒钟内实现pH梯度的在线观察以及生物分子等电点(pI)的测定。使用光学装置对266 nm激发下生物分子的固有荧光进行成像,可避免标记步骤,并能对天然生物分子进行分离、收集及pI分析。所制造的微芯片成功用于监测蛋白质α-乳白蛋白和β-乳球蛋白、血浆蛋白以及抗生素氨苄西林和氧氟沙星等电聚焦过程中的分离情况并同时观察pH梯度。所获得的pI与文献数据高度吻合,证明了该系统的适用性。在微芯片末端从不同馏分连续分离15分钟后采集的分离抗生素的质谱图验证了通过微流控等电聚焦进行的分离,并表明了进一步进行芯片上或芯片外处理步骤的可能性。

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