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Construction of Biosensor for Detection of Phenolic CompoundUsing Thermostabilized Agaricus bisporus Tyrosinase

机译:酚类化合物检测生物传感器的构建使用热摩托伞菌Bispyrus酪氨酸酶

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摘要

Tyrosinase is a copper-containing enzyme that catalyzes the oxidation of phenols which is wide spread in nature from microorganisms to plants and animals. Tyrosinase was extracted from Agaricus bisporus, and its thermostability was studied at high temperature by using different polymer additives such as starch, agar and sucrose. The stability of the enzyme was enhanced with starch (10 %), agar (0.5 %) and sucrose (10 %). Enzyme stability in the presence of starch has been increased to which was directly recorded as a melting process by differential scanning calorimetry technique and also showed the considerable retention in the enzymatic activity up to 67 % when compared to the control. Voltammetric biosensor was constructed as a tool used to detect the phenolic compounds in a sample, for which the stabilized tyrosinase was fabricated on an electrochemical transducer. The constructed voltammetric thermostabilized tyrosinase biosensor can be used for the detection of phenolic compounds present in the environmental samples at extreme temperature conditions.
机译:酪氨酸酶是一种含铜酶,其催化酚的氧化,这些酚类从微生物与植物和动物的微生物蔓延。酪氨酸酶从姬松茸中提取,通过使用不同的聚合物添加剂如淀粉,琼脂和蔗糖,在高温下研究其热稳定性。用淀粉(10%),琼脂(0.5%)和蔗糖(10%)增强酶的稳定性。淀粉存在下的酶稳定性增加到通过差示扫描量热法技术直接记录为熔化过程,并且与对照相比,酶活性高达67%的酶活性相当大的保留。构造伏安生物传感器作为用于检测样品中的酚类化合物的工具,在电化学换能器上制造稳定的酪氨酸酶。构造的伏安热稳压酪氨酸酶生物传感器可用于在极端温度条件下检测环境样品中存在的酚类化合物。

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