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Biomimetic biosensor based on lipidic layers containing tyrosinase and lutetium bisphthalocyanine for the detection of antioxidants

机译:基于含酪氨酸酶和双酞菁脂质层的仿生生物传感器,用于检测抗氧化剂

摘要

This paper describes the preparation of a biomimetic Langmuir-Blodgett film of tyrosinase incorporated in a lipidic layer and the use of lutetium bisphthalocyanine as an electron mediator for the voltammetric detection of phenol derivatives, which include one monophenol (vanillic acid), two diphenols (catechol and caffeic acid) and two triphenols (gallic acid and pyrogallol). The first redox process of the voltammetric responses is associated with the reduction of the enzymatically formed o-quinone and is favoured by the lutetium bisphthalocyanine because significant signal amplification is observed, while the second is associated with the electrochemical oxidation of the antioxidant and occurs at lower potentials in the presence of an electron mediator. The biosensor shows low detection limit (1.98 × 10-6 - 27.49 × 10-6 M), good reproducibility, and high affinity to antioxidants (KM in the range of 62.31-144.87 μM).ud The excellent functionality of the enzyme obtained using a biomimetic immobilisation method, the selectivity afforded by enzyme catalysis, the signal enhancement caused by the lutetium bisphthalocyanine mediator and the increased selectivity of the curves due to the occurrence of two redox processes make these sensors exceptionally suitable for the detection of phenolic compounds.
机译:本文描述了在脂质层中掺入酪氨酸酶的仿生Langmuir-Blodgett膜的制备以及双酞菁作为电子介质用于苯酚衍生物的伏安检测,其中包括一种单酚(香草酸),两种二酚(儿茶酚)和咖啡酸)和两种三酚(没食子酸和邻苯三酚)。伏安响应的第一个氧化还原过程与酶促形成的邻苯二酚的减少有关,并且被双酞菁favor所青睐,因为观察到明显的信号放大,而第二个与抗氧化剂的电化学氧化有关,并且发生在较低温度电子介体存在下的电势。该生物传感器显示出低检测限(1.98×10-6-27.49×10-6 M),良好的重现性和对抗氧化剂的高亲和力(KM在62.31-144.87μM范围内)。使用仿生固定方法,酶催化提供的选择性、,双酞菁介体引起的信号增强以及由于两个氧化还原过程的出现而导致的曲线选择性增加,使得这些传感器特别适用于检测酚类化合物。

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