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ENZYMATICALLY AMPLIFIED VOLTAMMETRIC SENSOR FOR MICROLITER SAMPLE VOLUMES OF SALICYLATE

机译:水杨酸酯微细样品体积的酶放大伏安传感器

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摘要

A new voltammetric sensing strategy for salicylate employing two enzymes and applicable to microliter sample volumes is demonstrated, The method involves the use of the enzyme salicylate hydroxylase to convert salicylate to catechol, which is oxidized at a carbon electrode, The product of this oxidation reaction, o-quinone, is then reduced by a second enzyme, glucose oxidase, to regenerate catechol, Reoxidation of catechol results in a signal that is amplified due to repeated cycling of catechol molecules between the oxidized and reduced states, This chemistry is implemented in two configurations, (i) A paper disk into which both enzymes have been absorbed is mounted on a coplanar three electrode assembly for aqueous experiments, Determination of salicylate in a nonprescription dermatological product is demonstrated, (ii) A small solution volume confined directly on the coplanar electrodes is used for determination of salicylate in whole blood, The advantages of the use of two enzymes and of monitoring steady-state catalytic currents are discussed.
机译:展示了一种采用两种酶的水杨酸伏安感测新策略,该策略适用于微升样品量,该方法涉及使用水杨酸羟化酶将水杨酸转化为邻苯二酚,后者在碳电极上被氧化,是该氧化反应的产物,然后通过第二种酶葡萄糖氧化酶还原邻苯二酚以再生邻苯二酚。由于邻苯二酚分子在氧化态和还原态之间反复循环,邻苯二酚的再氧化会导致信号放大。 ,(i)将两种酶均被吸收的纸盘安装在共面三电极组件上进行水实验,证明了非处方皮肤病产品中水杨酸酯的测定,(ii)少量溶液直接限制在共面电极上用于测定全血中的水杨酸酯,使用两种酶的优势讨论了如何监测稳态催化电流。

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