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A composite amperometric tyrosinase biosensor for the determination of the additive propyl gallate in foodstuffs

机译:一种复合安培酪氨酸酶生物传感器,用于测定食品中的没食子酸丙酯

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The performance of a graphite-Teflon composite amperometric tyrosinase biosensor for the determination of the food additive propyl gallate (PG) in different types of foodstuffs is reported. The enzyme reaction involves the catalytic oxidation of PG to the corresponding o-quinone, and the electrochemical reduction of this o-quinone was employed to monitor the enzyme reaction. Depending on the nature of the food sample analysed and on the presence of other phenolic antioxidants in these samples, aqueous buffer solutions or predominantly nonaqueous acetonitrile-Tris buffer mixtures were employed as working media. Experimental conditions such as the aqueous solution percentage in the predominantly nonaqueous medium, pH, and the potential to be applied were optimised. Control charts constructed showed a useful lifetime for the biosensor of 40 days when working in phosphate buffer of pH 6.5, and of 50 days in 80:20 acetonitrile-Tris buffer (pH 7.4) mixture. The limits of detection obtained for PG in these media were 9.0 X 10(-7) and 1.1 X 10(-6) mol L-1, respectively. The composite bioelectrode also performed well in the flow-injection mode. PG was determined in dehydrated broth bars using the phosphate buffer solution of pH 6.5 as working medium. However, PG was determined in spiked olive oil in the working medium formed by the 80:20 acetonitrile-Tris buffer mixture, because a liquid-liquid extraction step was carried out. Comparison of the results with those obtained by applying reference methods showed that no significant differences existed at a significance level of 0.05. (c) 2004 Elsevier B.V. All rights reserved.
机译:报道了石墨-铁氟龙复合安培酪氨酸酶生物传感器在不同类型食品中测定食品添加剂没食子酸丙酯(PG)的性能。酶反应涉及将PG催化氧化为相应的邻醌,并采用该邻醌的电化学还原来监测酶反应。根据所分析食品样品的性质以及这些样品中其他酚类抗氧化剂的存在,可以使用缓冲水溶液或主要为非水的乙腈-Tris缓冲液混合物作为工作介质。优化了实验条件,例如主要在非水介质中的水溶液百分比,pH值和施加电位。构建的控制图显示,在pH 6.5的磷酸盐缓冲液中工作时,该生物传感器的使用寿命为40天,在80:20乙腈-Tris缓冲液(pH 7.4)混合物中为50天。在这些介质中,PG的检测限分别为9.0 X 10(-7)和1.1 X 10(-6)mol L-1。复合生物电极在流动注射模式下也表现良好。使用pH 6.5的磷酸盐缓冲溶液作为工作介质,在脱水肉汤条中测定PG。但是,由于进行了液-液萃取步骤,因此在由80:20乙腈-Tris缓冲液混合物形成的工作介质中的加标橄榄油中测定了PG。将结果与采用参考方法获得的结果进行比较表明,在显着性水平为0.05时,不存在显着差异。 (c)2004 Elsevier B.V.保留所有权利。

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