Chen Yu, Guo Chunxian, Lim Layhar, Cheong Serchoong, Zhang Qingxin, Tang Kumcheong, Reboud Julien
Institute of Microelectronics, 11 Science Park Road, Singapore.
Anal Chem. 2008 Feb 15;80(4):1133-40. doi: 10.1021/ac071182j.
This paper presents a compact microelectrode array (MEA) system, to study potassium ion-induced dopamine release from PC12 neural cells, without relying on a micromanipulator and a microscope. The MEA chip was integrated with a custom-made "test jig", which provides a robust electrical interfacing tool between the microchip and the macroenvironment, together with a potentiostat and a microfluidic syringe pump. This integrated system significantly simplifies the operation procedures, enhances sensing performance, and reduces fabrication costs. The achieved detection limit for dopamine is 3.8 x 10-2 muM (signal/noise, S/N = 3) and the dopamine linear calibration range is up to 7.39 +/- 0.06 muM (mean +/- SE). The effects of the extracelluar matrix collagen coating of the microelectrodes on dopamine sensing behaviors, as well as the influences of K+ and l-3,4-digydroxyphenylalanine concentrations and incubation times on dopamine release, were extensively studied. The results show that our system is well suited for biologists to study chemical release from living cells as well as drug effects on secreting cells. The current system also shows a potential for further improvements toward a multichip array system for drug screening applications.
本文介绍了一种紧凑型微电极阵列(MEA)系统,用于研究钾离子诱导PC12神经细胞释放多巴胺,无需依赖显微操作器和显微镜。MEA芯片与定制的“测试夹具”集成在一起,该夹具提供了微芯片与宏观环境之间强大的电接口工具,同时还配备了恒电位仪和微流控注射泵。这种集成系统显著简化了操作程序,提高了传感性能,并降低了制造成本。实现的多巴胺检测限为3.8×10⁻² μM(信号/噪声,S/N = 3),多巴胺线性校准范围高达7.39±0.06 μM(平均值±标准误差)。广泛研究了微电极的细胞外基质胶原蛋白涂层对多巴胺传感行为的影响,以及钾离子和L-3,4-二羟基苯丙氨酸浓度及孵育时间对多巴胺释放的影响。结果表明,我们的系统非常适合生物学家研究活细胞的化学释放以及药物对分泌细胞的作用。当前系统还显示出进一步改进为用于药物筛选应用的多芯片阵列系统的潜力。