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首页> 外文期刊>Sensors and Actuators. B, Chemical >Amperometric PDMS/glass capillary electrophoresis-based biosensor microchip for catechol and dopamine detection
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Amperometric PDMS/glass capillary electrophoresis-based biosensor microchip for catechol and dopamine detection

机译:基于安培PDMS /玻璃毛细管电泳的生物传感器微芯片,用于检测儿茶酚和多巴胺

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摘要

A new microfabricated lab-pn-chip device with a fully integrated electrochemical (EC) detection system has been developed. In this biochip set-up, all the detector electrodes as well as the high-voltage separation electrodes are incorporated directly onto a glass substrate via traditional microfabrication techniques (photolithography, wet-chemical etching, electron-beam evaporation, lift-off). The lab-on-chip device includes a top PDMS plate containing the separation and injection channels for capillary electrophoresis (CE). This CE/EC device has no more external electrodes. The electrodes' geometry, their position and the thickness of the deposited metal layers were established by photolithographical patterning. This biosensor chip has been used to detect dopamine and catechol, two important catecholamines with total running times of less than 90 s. For both catecholamines, the dependence of the current signal on the concentration was showing a good linearity in the range from 20 to 100 μM, with a sensitivity of 16.1 pA/μM for dopamine and to 2.7 pA/μM for catechol, and detection limits of 2 μM dopamine and 8 μM catechol.
机译:已经开发出一种具有完全集成的电化学(EC)检测系统的新型微型实验室pn芯片设备。在这种生物芯片设置中,所有检测器电极以及高压分离电极都通过传统的微加工技术(光刻,湿化学蚀刻,电子束蒸发,剥离)直接掺入玻璃基板上。芯片实验室设备包括一个顶部PDMS板,其中包含用于毛细管电泳(CE)的分离和注入通道。此CE / EC设备不再有外部电极。电极的几何形状,它们的位置和沉积的金属层的厚度通过光刻图案化来确定。该生物传感器芯片已用于检测多巴胺和儿茶酚,这两种重要的儿茶酚胺总运行时间少于90 s。对于两种儿茶酚胺,电流信号对浓度的依赖性在20至100μM范围内均表现出良好的线性,对多巴胺的敏感性为16.1 pA /μM,对儿茶酚的敏感性为2.7 pA /μM,检测限为2μM多巴胺和8μM儿茶酚。

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