首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A novel, disposable, screen-printed amperometric biosensor for glucose in serum fabricated using a water-based carbon ink
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A novel, disposable, screen-printed amperometric biosensor for glucose in serum fabricated using a water-based carbon ink

机译:一种新型的,一次性的,丝网印刷的电流型生物传感器,用于使用水性碳墨制造的血清中葡萄糖

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摘要

Screen-printed amperometric glucose biosensors have been fabricated using a water-based carbon ink. The enzyme glucose oxidase (GOD) and the electrocatalyst cobalt phthalocyanine were mixed with the carbon ink prior to the screen-printing process; therefore, biosensors are prepared in a one-step fabrication procedure. Optimisation of the biosensor performance was achieved by studying the effects of pH, buffer strength, and applied potential on the analytical response. Calibration studies were performed under optimum conditions, using amperometry in stirred solution, with an operating potential of +500 mV versus SCE. The sensitivity was found to be 1170 nA mM(-1), with a linear range of 0.025-2 mM; the former represents the detection limit. The disposable amperometric biosensor was evaluated by carrying out replicate determinations on a sample of bovine serum. This was achieved by the method of multiple standard additions and included a correction for background currents arising from oxidisable serum components. The mean serum concentration was calculated to be 8.63 mM and compared well with the supplier's value of 8.3 mM; the coefficient of variation was calculated to be 3.3% (n = 6). (c) 2005 Elsevier B.V. All rights reserved.
机译:丝网印刷的电流型葡萄糖生物传感器已经使用水基碳墨水制造。在丝网印刷之前,将葡萄糖氧化酶(GOD)和电催化剂酞菁钴与碳油墨混合;因此,生物传感器是一步制造的。通过研究pH,缓冲液强度和施加电势对分析响应的影响,实现了生物传感器性能的优化。校准研究是在最佳条件下进行的,使用的是在搅拌溶液中的电流分析法,相对于SCE,工作电位为+500 mV。发现灵敏度为1170 nA mM(-1),线性范围为0.025-2 mM。前者表示检测极限。通过对牛血清样品进行重复测定来评估一次性安培生物传感器。这是通过添加多种标准品的方法实现的,其中包括对可氧化血清成分产生的背景电流的校正。血清平均浓度经计算为8.63 mM,与供应商的8.3 mM值相比较;计算得出的变异系数为3.3%(n = 6)。 (c)2005 Elsevier B.V.保留所有权利。

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