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在线通过多孔电极去除安培血流葡萄糖测定中的氧化还原活性干扰物。

On-line removal of redox-active interferents by a porous electrode before amperometric blood glucose determination.

机构信息

College of Chemistry and Chemical Engineering, Central South University, Changsha, Hunan 410083, People's Republic of China.

出版信息

Anal Chim Acta. 2012 Mar 16;719:52-6. doi: 10.1016/j.aca.2012.01.008. Epub 2012 Jan 12.

Abstract

A porous reticulated vitreous carbon (RVC) electrode and a disk electrode coupled in tandem in an electrochemical flow cell has been used for electrolytic removal of interferents before amperometric glucose detection. The electrolytic efficiency at the upstream RVC electrode is 100% at a flow rate of 0.1 mL min(-1) or lower. Potential interferents such as acetaminophen, ascorbic acid, and uric acid can be completely eliminated by electrolysis at the RVC electrode. A mixed monolayer comprising glucose oxidase (GOD) and ferrocenyl-1-undecanethiol preformed at the downstream gold disk electrode was used as a mediator-based amperometric glucose sensor. The dependence of the amperometric current on the glucose concentration exhibits good linearity across over three orders of magnitude. The glucose measurements were also found to be reproducible (RSD<3.5%) and accurate. Unlike the chemiluminescence method, this device obviates the use of carcinogenic substrates and the glucose sensor performance is independent of the oxygen present in sample. On the basis that the RVC electrode requires minimal cleanup and the GOD-modified electrode remains stable for a week, the electrochemical flow cell should be amenable for automated on-line removal of redox interferents for other types of enzyme-based biosensors.

摘要

一种多孔网状玻璃碳(RVC)电极与电化学流动池中串联的圆盘电极结合,用于在安培检测葡萄糖之前电解去除干扰物。在流速为 0.1mL/min 或更低时,上游 RVC 电极的电解效率为 100%。在 RVC 电极上电解可以完全去除对氨基苯酚、抗坏血酸和尿酸等潜在干扰物。由葡萄糖氧化酶(GOD)和预先形成于下游金圆盘电极的二茂铁-1-十一硫醇组成的混合单层被用作基于媒介的安培葡萄糖传感器。安培电流对葡萄糖浓度的依赖性在三个数量级以上呈现出良好的线性。葡萄糖测量结果也具有重现性(RSD<3.5%)和准确性。与化学发光法不同,该装置避免了使用致癌底物,并且葡萄糖传感器的性能与样品中存在的氧气无关。由于 RVC 电极需要最小的清洁,并且 GOD 修饰电极在一周内保持稳定,电化学流动池应该适合于自动化在线去除其他类型基于酶的生物传感器的氧化还原干扰物。

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