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An improved biosensor for acetaldehyde determination using a bienzymatic strategy at poly(neutral red) modified carbon film electrodes

机译:一种改进的生物传感器,用于在聚(中性红)修饰的碳膜电极上使用双酶策略测定乙醛

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摘要

Improved biosensors for acetaldehyde determination have been developed using a bienzymatic strategy, based on a mediator-modified carbon film electrode and co-immobilisation of NADH oxidase and aldehyde dehydrogenase. Modification of the carbon film electrode with poly(neutral red) mediator resulted in a sensitive, low-cost and reliable NADH detector. Immobilisation of the enzymes was performed using encapsulation in a sol-gel matrix or cross-linking with glutaraldehyde. The bienzymatic biosensors were characterized by studying the influence of pH, applied potential and co-factors. The sol-gel and glutaraldehyde biosensors showed a linear response up to 60 [mu]M and 100 [mu]M, respectively, with detection limits of 2.6 [mu]M and 3.3 [mu]M and sensitivities were 1.7 [mu]A mM-1 and 5.6 [mu]A mM-1. The optimised biosensors showed good stability and good selectivity and have been tested for application for the determination of acetaldehyde in natural samples such as wine.
机译:基于介体修饰的碳膜电极以及NADH氧化酶和醛脱氢酶的共固定化,已使用双酶策略开发了用于乙醛测定的改良生物传感器。用聚(中性红)介体修饰碳膜电极可得到灵敏,低成本且可靠的NADH检测器。使用封装在溶胶-凝胶基质中或与戊二醛交联的酶来固定酶。通过研究pH,施加电势和辅助因子的影响来表征双酶生物传感器。溶胶-凝胶和戊二醛生物传感器分别显示出高达60μM和100μM的线性响应,检测限为2.6μM和3.3μM,灵敏度为1.7μA mM-1和5.6μAmM-1。经过优化的生物传感器显示出良好的稳定性和良好的选择性,并经过测试可用于测定自然样品(如酒)中的乙醛。

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