MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.
MOE Key Laboratory of Laser Life Science & Institute of Laser Life Science, College of Biophotonics, South China Normal University, Guangzhou 510631, China.
Biosens Bioelectron. 2017 Aug 15;94:335-343. doi: 10.1016/j.bios.2017.03.007. Epub 2017 Mar 7.
This paper introduces a new and simple concept for fabricating low-cost, easy-to-use capillary microchannel (CMC) assisted thread-based microfluidic analytical devices (CMCA-μTADs) for bipolar electrochemiluminescence (BP-ECL) application. The thread with patterns of carbon screen-printed electrodes and bare thread zones (BTZs) is embedded into a CMC. Such CMCA-μTADs can produce a strong and stable BP-ECL signal, and have an extremely low cost ($0.01 per device). Interestingly, the CMCA-μTADs are ultraflexible, and can be bent with a 135° bending angle at the BTZ or with a 150° bending angle at the middle of bipolar electrode (BPE), with no loss of analytical performance. Additionally, the two commonly-used ECL systems of Ru(bpy)/TPA and luminol/HO are applied to demonstrate the quantitative ability of the BP-ECL CMCA-μTADs. It has been shown that the proposed devices have successfully fulfilled the detection of TPA and HO, with detection limits of 0.00432mM and 0.00603mM, respectively. Based on the luminol/HO ECL system, the CMCA-μTADs are further applied for the glucose measurement, with the detection limit of 0.0205mM. Finally, the applicability and validity of the CMCA-μTADs are demonstrated for the measurements of HO in milk, and glucose in human urine and serum. The results indicate that the proposed devices have the potential to become an important new tool for a wide range of applications.
本文提出了一种新的简单概念,用于制造低成本、易于使用的毛细管微通道(CMC)辅助基于线的微流控分析器件(CMCA-μTAD),用于双极电化学发光(BP-ECL)应用。带有碳丝网印刷电极图案和裸线区(BTZ)的线嵌入到 CMC 中。这种 CMCA-μTAD 可以产生强而稳定的 BP-ECL 信号,且成本极低(每个器件 0.01 美元)。有趣的是,CMCA-μTAD 具有超柔韧性,可以在 BTZ 处弯曲 135°,或者在双极电极(BPE)中间弯曲 150°,而不会损失分析性能。此外,两种常用的 ECL 体系 Ru(bpy)/TPA 和鲁米诺/HO 被应用于证明 BP-ECL CMCA-μTAD 的定量能力。结果表明,所提出的器件已成功实现了 TPA 和 HO 的检测,检测限分别为 0.00432mM 和 0.00603mM。基于鲁米诺/HO ECL 体系,CMCA-μTAD 进一步用于葡萄糖测量,检测限为 0.0205mM。最后,CMCA-μTAD 的适用性和有效性通过测量牛奶中的 HO 和人尿和血清中的葡萄糖得到了证明。结果表明,所提出的器件具有成为广泛应用的重要新工具的潜力。