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An Optical Biosensor based on Immobilization of Laccase and MBTH in Stacked Films for the Detection of Catechol

机译:基于固定化漆酶和MBTH的堆叠薄膜的光学生物传感器用于检测邻苯二酚

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摘要

The fabrication of an optical biosensor by using stacked films where 3-methyl-2-benzothiazolinone hydrazone (MBTH) was immobilized in a hybrid nafion/sol-gel silicate film and laccase in a chitosan film for the detection of phenolic compounds was described. Quinone and/or phenoxy radical product from the enzymatic oxidation of phenolic compounds was allowed to couple with MBTH to form a colored azo-dye product for spectrophometric detection. The biosensor demonstrated a linear response to catechol concentration range of 0.5-8.0 mM with detection limit of 0.33 mM and response time of 10 min. The reproducibility of the fabricated biosensor was good with RSD value of 5.3 % (n = 8) and stable for at least 2 months. The use of the hybrid materials of nafion/sol-gel silicate to immobilize laccase has altered the selectivity of the enzyme to various phenolic compounds such as catechol, guaicol, o-cresol and m-cresol when compared to the non-immobilized enzyme. When immobilized in this hybrid film, the biosensor response only to catechol and not other phenolic compounds investigated. Immobilization in this hybrid material has enable the biosensor to be more selective to catechol compared with the non-immobilized enzyme. This shows that by a careful selection of different immobilization matrices, the selectivity of an enzyme can be modified to yield a biosensor with good selectivity towards certain targeted analytes.
机译:描述了通过使用其中将3-甲基-2-苯并噻唑啉酮((MBTH)固定在杂化的nafion /溶胶-凝胶硅酸盐薄膜和壳聚糖薄膜中的漆酶中以检测酚类化合物的堆叠薄膜来制造光学生物传感器。使酚类化合物酶促氧化的醌和/或苯氧基自由基产物与MBTH偶联,形成有色的偶氮染料产物,用于分光光度法检测。该生物传感器显示出对儿茶酚浓度范围为0.5-8.0 mM的线性响应,检测极限为0.33 mM,响应时间为10分钟。制成的生物传感器的重现性良好,RSD值为5.3%(n = 8),并稳定至少2个月。与未固定的酶相比,使用nafion /溶胶-凝胶硅酸盐的杂化材料固定漆酶已经改变了该酶对各种酚类化合物如邻苯二酚,愈创木酚,邻甲酚和间甲酚的选择性。当固定在该杂化膜中时,生物传感器仅对儿茶酚反应,对其他酚类化合物没有反应。与未固定的酶相比,固定在这种杂化材料中可使生物传感器对儿茶酚的选择性更高。这表明通过仔细选择不同的固定基质,可以修饰酶的选择性,以产生对某些目标分析物具有良好选择性的生物传感器。

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