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首页> 外文期刊>Polymer engineering and science >Development of a new two-enzyme biosensor based on poly(pyrrole-co-3,4-ethylenedioxythiophene) for lactose determination in milk
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Development of a new two-enzyme biosensor based on poly(pyrrole-co-3,4-ethylenedioxythiophene) for lactose determination in milk

机译:基于聚(吡咯-Co-3,4-亚乙基噻吩)的新型双酶生物传感器进行乳糖测定的新型双酶生物传感器

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A new lactose biosensor was developed by preparing a suitable copolymer of polypyrrole and poly(3,4-ethylenedioxythiophene) synthesized using the electropolymerization method. Pyrrole and 3,4-ethylenedioxythiophene monomers were deposited in the presence of sodium dodecylbenzene sulphonic acid on a platinum disc electrode, which was used as the working electrode. The sensor is based on the serial reactions of -galactosidase and galactose oxidase immobilized on a copolymer-modified platinum disc electrode. Successful synthesis of the enzyme-immobilized copolymer was confirmed by FT-IR spectrometry, SEM, and electrochemical analysis. The response of the enzyme electrode to lactose was determined by cyclic voltammetry at+0.40 V. The response time of the biosensor was found to be from 8 to 10 s, and the upper limit of the linear working portion was found to be at a lactose concentration of 2.30 mM with a detection limit of 1.4 x 10(-5) M. The apparent Michaelis-Menten constant was found to be 0.65 mM of lactose. The effects of interferents were also investigated. Lactose concentrations determined by the biosensor were in good agreement with those measured by the reference methods. Our results show that the developed biosensor has a significant potential to the determination of lactose concentration in milk. POLYM. ENG. SCI., 58:839-848, 2018. (c) 2017 Society of Plastics Engineers
机译:通过制备使用电聚合方法合成的聚吡咯和聚(3,4-亚乙基氧噻吩)的合适共聚物来开发新的乳糖生物传感器。在铂盘电极上沉积吡咯和3,4-亚乙二醇硫代噻吩单体在二甲基苯磺酸的存在下沉积,其用作工作电极。该传感器基于固定在共聚物改性的铂盘电极上的-Galactosidase和半乳糖氧化酶的连续反应。通过FT-IR光谱,SEM和电化学分析证实了酶固定化共聚物的成功合成。通过+ 0.40V的循环伏安法测定酶电极与乳糖的响应。发现生物传感器的响应时间为8至10 s,并且发现线性工作部分的上限在乳糖处浓度为2.30毫米,检出限为1.4×10(-5)米。发现表观迈克莱斯 - 静脉常数为0.65mm的乳糖。还研究了干扰素的影响。由生物传感器确定的乳糖浓度与参考方法测量的那些吻合良好。我们的研究结果表明,发育的生物传感器对乳汁中的乳糖浓度的测定具有重要潜力。聚合物。 eng。 SCI。,58:839-848,2018。(c)2017年塑料工程师协会

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