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基于 SU-8 的微流控芯片电泳的电化学集成检测用于神经递质分析。

Fabrication of SU-8 based microchip electrophoresis with integrated electrochemical detection for neurotransmitters.

机构信息

Departamento de Química Física y Analítica, Universidad de Oviedo, Asturias, Spain.

出版信息

Talanta. 2009 Nov 15;80(1):24-30. doi: 10.1016/j.talanta.2009.05.049. Epub 2009 Jun 25.

DOI:10.1016/j.talanta.2009.05.049
PMID:19782188
Abstract

A new SU-8 based microchip capillary electrophoresis (MCE) device has been developed for the first time with integrated electrochemical detection. Embedded electrophoretic microchannels have been fabricated with a multilayer technology based on bonding and releasing steps of stacked SU-8 films. This technology has allowed the monolithic integration in the device of the electrochemical detection system based on platinum electrodes. The fabrication of the chips presented in this work is totally compatible with reel-to-reel techniques, which guarantee a low cost and high reliability production. The influence of relevant experimental variables, such as the separation voltage and detection potential, has been studied on the SU-8 microchip with an attractive analytical performance. Thus, the effective electrical isolation of the end-channel amperometric detector has been also demonstrated. The good performance of the SU-8 device has been proven for separation and detection of the neurotransmitters, dopamine (DA) and epinephrine (EP). High efficiency (30,000-80,000 N/m), excellent precision, good detection limit (450 nM) and resolution (0.90-1.30) has been achieved on the SU-8 microchip. These SU-8 devices have shown a better performance than commercial Topas (thermoplastic olefin polymer of amorphous structure) microchips. The low cost and versatile SU-8 microchip with integrated platinum film electrochemical detector holds great promise for high-volume production of disposable microfluidic analytical devices.

摘要

首次开发了一种基于新型 SU-8 的微芯片毛细管电泳 (MCE) 装置,该装置具有集成电化学检测功能。嵌入式电泳微通道采用多层技术制造,该技术基于堆叠 SU-8 薄膜的键合和释放步骤。这种技术允许电化学检测系统的基于铂电极的单片集成到设备中。本工作中提出的芯片的制造完全与卷对卷技术兼容,可保证低成本和高可靠性的生产。已经研究了相关实验变量(例如分离电压和检测电位)对 SU-8 微芯片的影响,从而实现了末端通道安培检测器的有效电隔离。SU-8 装置的出色性能已通过分离和检测神经递质多巴胺 (DA) 和肾上腺素 (EP) 得到证明。在 SU-8 微芯片上实现了高效率(30,000-80,000 N/m)、出色的精度、良好的检测限(450 nM)和分辨率(0.90-1.30)。这些 SU-8 器件的性能优于商用 Topas(热塑性烯烃聚合物,具有无定形结构)微芯片。具有集成铂薄膜电化学检测器的低成本和多功能 SU-8 微芯片有望大规模生产一次性微流控分析设备。

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