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Amperometric biosensors employing an insoluble oxidant as an interference-removing agent

机译:使用不溶性氧化剂作为干扰消除剂的安培生物传感器

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摘要

A strong oxidant membrane is introduced to amperometric biosensors in order to solve the problem associated with interference from readily oxidizable species. The proposed biosensors are in planar format, and are composed of four components, i.e. a base amperometric transducer, an enzyme layer, a protecting membrane, and an oxidant membrane. In this sensor format, interfering species are removed by an oxidation reaction during their diffusion through the oxidant membrane. The oxidant membrane is introduced by dispensing a mixture of an oxidant and a polymer matrix as dissolved in an organic solvent, and thus, could be easily adapted to mass fabrication of miniature biosensors. In this work, several different reagents are examined as oxidants: BaO_2, CeO_2, MnO_2 and PbO_2. Of these, PbO_2 is shown to yield biosensors with the best performance, in terms of reducing interfering signals. Two different matrix systems are devised for use in formulatigoxidatn membranes: hydrophilic polyurethane (HPU) and cellulose acetate incorporating poly(ethylene glycol) (CA/PEG). While the CA/PEG-type sensor displays better sensitivity and faster response behavior, the HPU-type is shown to exhibit more pronounced interference-removing ability. The analytical utility of the proposed oxidant membrane is demonstrated by fabricating amperometric glucose and creatinine sensors as the model biosensor systems, and by investigating their response characteristics.
机译:为了解决与易氧化物质的干扰有关的问题,将强氧化剂膜引入电流型生物传感器。所提出的生物传感器是平面形式,并且由四个组件组成,即,基本安培传感器,酶层,保护膜和氧化剂膜。在这种传感器格式中,干扰物质在通过氧化剂膜扩散期间会通过氧化反应去除。通过分配溶解在有机溶剂中的氧化剂和聚合物基质的混合物来引入氧化剂膜,因此,可以容易地使其适于微型生物传感器的批量生产。在这项工作中,检查了几种不同的氧化剂试剂:BaO_2,CeO_2,MnO_2和PbO_2。其中,在减少干扰信号方面,PbO_2被证明可产生具有最佳性能的生物传感器。设计了两种不同的基质体系用于配方氧化膜:亲水性聚氨酯(HPU)和掺入聚乙二醇(CA / PEG)的醋酸纤维素。虽然CA / PEG型传感器显示出更好的灵敏度和更快的响应行为,但HPU型传感器显示出更明显的干扰消除能力。通过制造安培型葡萄糖和肌酐传感器作为模型生物传感器系统,并研究它们的响应特性,证明了拟议的氧化膜的分析实用性。

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