Hsu Cheng-Teng, Chung Hsieh-Hsun, Tsai Dong-Mung, Fang Mei-Yen, Hsiao Hung-Chan, Zen Jyh-Myng
Zensor R&D, BIONIME Corporation, and Department of Chemistry, National Chung Hsing University, Taichung 402, Taiwan.
Anal Chem. 2009 Jan 1;81(1):515-8. doi: 10.1021/ac8019619.
We demonstrate here the application of barrel plating gold electrodes for fabricating a new type of disposable amperometric glucose biosensor. It is prepared by inserting two barrel plating gold electrodes onto an injection molding plastic base followed by immobilizing with a bioreagent layer and membrane on the electrode surface. The primary function of barrel plating is to provide an economical way to electroplate manufactured parts. The manufacture procedure is simple and can increase the fabrication precision for automation in mass production. At the two-electrode system, the detection of glucose is linear up to 800 mg/dL (i.e., 44.5 mM, r(2) > 0.99) in pH 7.4 PBS with a sensitivity of 0.71 microA/mM. Excellent sensor-to-sensor reproducibility shows coefficients of variation of only 0.8-1.4% for the detection of 56.5-561.0 mg/dL glucose. In laboratory trials 176 capillary blood samples with a range of 30-572 mg/dL glucose are used to evaluate the clinical application of the biosensor. A good linear correlation is observed between the measured values of the proposed biosensor and laboratory reference. Error grid analysis verifies that the proposed technique is promising in fabricating biosensor strips on a mass scale. As successfully demonstrated by using whole blood glucose as a model analyte, the fabrication technique can extend into other barrel plating noble metal electrodes for various applications.
我们在此展示了滚镀金电极在制造新型一次性安培型葡萄糖生物传感器中的应用。它是通过将两个滚镀金电极插入注塑塑料底座,然后在电极表面固定生物试剂层和膜来制备的。滚镀的主要功能是提供一种电镀制成零件的经济方法。制造过程简单,可提高大规模生产自动化的制造精度。在两电极系统中,在pH 7.4的磷酸盐缓冲盐溶液(PBS)中,葡萄糖检测线性范围高达800 mg/dL(即44.5 mM,r²>0.99),灵敏度为0.71 μA/mM。传感器之间出色的重现性表明,检测56.5 - 561.0 mg/dL葡萄糖时变异系数仅为0.8 - 1.4%。在实验室试验中,使用176份葡萄糖含量在30 - 572 mg/dL范围内的毛细血管血样来评估该生物传感器的临床应用。所提出的生物传感器的测量值与实验室参考值之间观察到良好的线性相关性。误差网格分析验证了所提出的技术在大规模制造生物传感器条方面具有前景。通过使用全血葡萄糖作为模型分析物成功证明,该制造技术可扩展到用于各种应用的其他滚镀贵金属电极。