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Sensitive d-amino acid biosensor based on oxidase/peroxidase system mediated by pentacyanoferrate-bound polymer.

机译:戊酸高铁戊酸酯结合的聚合物介导的基于氧化酶/过氧化物酶系统的敏感d-氨基酸生物传感器。

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摘要

A sensitive d-amino acid oxidase (DAAO)/peroxidase (POD) bienzyme biosensor is constructed, in which pentacyanoferrate-bound poly(1-vinylimidazole) polymer (PVI[Fe(CN)5]) is selected as a mediator. Reductive current of PVI[Fe(CN)5] related to the H2O2 concentration generated in the DAAO reaction was measured at -0.1V vs. Ag|AgCl with DAAO/POD/PVI[Fe(CN)5]-modified electrode. The result revealed that PVI[Fe(CN)5] is suitable as a mediator for this bienzyme system due to its appropriate formal potential and its extremely low reactivity against DAAO. The stability of DAAO was improved by adding free flavin adenine dinucleotide and the electrode composition was optimized for the detection of d-alanine. Nafion and ascorbate oxidase-immobilized films worked successfully to prevent severe interference from uric acid and ascorbic acid. The low detection limits of d-alanine (2μM) and d-serine (2μM) imply its possibility for the determination of extremely low concentration of d-amino acids in physiological fluids. The proposed bienzyme biosensor is proved to be capable of detecting d-amino acids in urine.
机译:构建了一种敏感的d-氨基酸氧化酶(DAAO)/过氧化物酶(POD)双酶生物传感器,其中选择了与五氰基铁酸酯结合的聚(1-乙烯基咪唑)聚合物(PVI [Fe(CN)5])作为介体。用DAAO / POD / PVI [Fe(CN)5]修饰的电极在-0.1V对Ag | AgCl的条件下测量了与DAAO反应中生成的H2O2浓度相关的PVI [Fe(CN)5]的还原电流。结果表明,PVI [Fe(CN)5]由于具有适当的形式电位和对DAAO的极低反应性,因此适合作为该双酶系统的介体。通过添加游离黄素腺嘌呤二核苷酸提高了DAAO的稳定性,并优化了电极成分以检测d-丙氨酸。固定有Nafion和抗坏血酸氧化酶的薄膜可有效防止尿酸和抗坏血酸的严重干扰。 d-丙氨酸(2μM)和d-丝氨酸(2μM)的低检测限意味着它有可能用于测定生理液中极低浓度的d-氨基酸。事实证明,所提出的双酶生物传感器能够检测尿液中的d-氨基酸。

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