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Biosensors based on acrylic microgels - A comparative study of immobilized glucose oxidase and tyrosinase

机译:基于丙烯酸微凝胶的生物传感器-固定化葡萄糖氧化酶和酪氨酸酶的比较研究

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摘要

Acrylic microgels are proposed as enzyme immobilizing support in amperometric biosensors. Two enzymes, glucose oxidase and tyrosinase, were entrapped in this matrix and their behaviour is compared. The optimum cross-linking of the polymeric matrix required to retain the enzyme, and to allow the diffusion of the substrate is different for each enzyme, 3.2% for glucose oxidase and 4.5% for tyrosinase.The effect of pH and temperature on the biosensor responses has been studied by experimental design methodology and predictions have been compared with independently performed experimental measurements. A quadratic effect of the variables studied (pH and 7) on the biosensor response and the small or null interaction between them was confirmed. The pH results obtained with both methods are coincident revealing an reversible effect on the enzyme. However, the temperature optimum value obtained by experimental design was 10 degrees C lower as a result of an activity decay due to irreversible thermal denaturation of both enzymes. (c) 2004 Elsevier B.V All rights reserved.
机译:丙烯酸微凝胶被提出作为安培生物传感器中的酶固定载体。将两种酶(葡萄糖氧化酶和酪氨酸酶)截留在该基质中,并比较它们的行为。保留酶并允许底物扩散所需的聚合物基质的最佳交联因每种酶而异,葡萄糖氧化酶为3.2%,酪氨酸酶为4.5%.pH和温度对生物传感器响应的影响已通过实验设计方法进行了研究,并将预测结果与独立执行的实验测量结果进行了比较。证实了所研究变量(pH和7)对生物传感器响应的二次效应以及它们之间的小相互作用或零相互作用。两种方法获得的pH结果一致,显示出对酶的可逆作用。然而,由于两种酶的不可逆热变性导致的活性降低,通过实验设计获得的温度最佳值降低了10摄氏度。 (c)2004 Elsevier B.V保留所有权利。

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