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Bioelectrochemical activity of an electroactive macromolecular weight coenzyme derivative

机译:电活性大分子辅酶衍生物的生物电化学活性

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As coenzyme utilized by more than hundreds of dehydrogenases, the efficient immobilization and regeneration of nicotinamide adenine dinucleotide (NAD~+) are of great importance and have practical applications in industrial, analytical and biomedical field. In this paper, an electroactive macromolecular weight coenzyme derivative (PEI-DHB-NAD) was prepared by attaching both NAD~+ and 3,4-dihydroxybenzaldehyde (3,4-DHB) to a water-soluble polyelectrolyte, poly(ethylenimine) (PEI). The functional polymer exhibited both electrochemical properties of catechol unites and coenzymatic activity of NAD moieties. The macromolecular NAD analogue showed a substantial degree of efficiency relative to free NAD~+ with alcohol dehydrogenase (ADH) and glucose-6-phophate dehydrogenase (G6PDH), and a litter higher Michaelis-Menton constant (Km) was obtained for the coenzyme derivative than free NAD~+. The bioelectrochemical properties of PEI-DHB-NAD were investigated by using G6PDH as the model enzyme, and both of them were retained on electrode surface by ultrafiltration membrane. The modified electrode showed typical response to substrate without the addition of free coenzyme, which indicated that PEI-DHB-NAD can carry out the electron transfer between electrode and NAD-dependent dehydrogenase. The utilization of polymer-based PEI-DHB-NAD is convenient for the immobilization of both electron mediator and coenzyme, and offers a practical approach for the construction of reagentless biosensors.
机译:作为数百种脱氢酶所利用的辅酶,烟酰胺腺嘌呤二核苷酸(NAD〜+)的有效固定和再生非常重要,并在工业,分析和生物医学领域具有实际应用。本文通过将NAD〜+和3,4-二羟基苯甲醛(3,4-DHB)都连接到水溶性聚电解质聚乙撑亚胺( PEI)。该功能聚合物既显示邻苯二酚单元的电化学性质,又显示NAD部分的辅酶活性。与乙醇脱氢酶(ADH)和葡萄糖-6-磷酸脱氢酶(G6PDH)的游离NAD〜+相比,大分子NAD类似物显示出相当高的效率,并且辅酶衍生物获得了更高的迈克尔斯-曼顿常数(Km)。而不是免费的NAD〜+。以G6PDH为模型酶,研究了PEI-DHB-NAD的生化电化学特性,并通过超滤膜将二者保留在电极表面。修饰的电极在不添加游离辅酶的情况下表现出对底物的典型响应,这表明PEI-DHB-NAD可以在电极与NAD依赖的脱氢酶之间进行电子转移。基于聚合物的PEI-DHB-NAD的使用方便了电子介体和辅酶的固定化,并为构建无试剂生物传感器提供了一种实用的方法。

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