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ENZYME OR PROTEIN IMMOBILIZATION TECHNIQUES FOR APPLICATIONS IN BIOSENSOR DESIGN

机译:在生物传感器设计中应用的酶或蛋白质固定化技术

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New generations of biosensors are emerging that are based on novel and promising transducers such as miniature, reagentless-mediated electrodes, field-effect transistors, piezoelectric and optical devices, Reagentless-mediated biosensors can be constructed by co-immobilizing both enzymes and mediators onto a miniaturized electrode using electropolymerization, thus improving the sensitivity and speed of the response, Even more promising is the development of electrochemical sensors, in which electron transfer is made directly from a redox enzyme to an electrode surface via molecular wires. While this has only been reported, so far, for a specific enzyme entrapped in N-methylpyrrole under defined circumstances, the development of new oriented immobilization techniques, coupled with progress in protein engineering, may make direct electron transfer the rule rather than the exception.
机译:新型生物传感器正在出现,它们基于新颖而有前途的传感器,例如微型,无试剂介导的电极,场效应晶体管,压电和光​​学设备。使用电聚合的小型化电极,从而提高了灵敏度和响应速度,电化学传感器的发展更加有前途,在电化学传感器中,电子是通过分子线从氧化还原酶直接转移到电极表面的。到目前为止,虽然只报道过这种情况,但对于在特定情况下截留在N-甲基吡咯中的特定酶,新定向固定技术的发展以及蛋白质工程的进展,可能使直接电子转移成为规则,而不是例外。

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