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Development of an Ion Sensitive Field Effect Transistor Based Urea Biosensor with Solid State Reference Systems

机译:基于固态参考系统的离子敏感场效应晶体管尿素生物传感器的开发

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摘要

Ion sensitive field-effect transistor (ISFET) based urease biosensors with solid state reference systems for single-ended and two-ended differential readout electronics were investigated. The sensing membranes of the biosensors were fabricated with urease immobilized in a conducting polymer-based matrix. The responses of 12.9∼198.1 mV for the urea concentrations of 8∼240 mg/dL reveal that the activity of the enzyme was not significantly decreased. Biosensors combined with solid state reference systems were fabricated, and the evaluation results demonstrated the feasibility of miniaturization. For the differential system, the optimal transconductance match for biosensor and reference field-effect transistors (REFET) pair was determined through the modification of the membranes of the REFETs and enzyme field-effect transistors (EnFETs). The results show that the transconductance curve of polymer based REFET can match with that of the EnFET by adjusting the photoresist/Nafion™ ratio. The match of the transconductance curves for the differential pairs provides a wide dynamic operating measurement range. Accordingly, the miniaturized quasi-reference electrode (QRE)/REFET/EnFET combination with differential arrangement achieved similar urea response curves as those measured by a conventional large sized discrete sensor.
机译:研究了基于离子敏感场效应晶体管(ISFET)的具有固态参考系统的脲酶生物传感器,用于单端和两端差分读出电子器件。生物传感器的传感膜是用固定在导电聚合物基基质中的脲酶制成的。尿素浓度为8〜240 mg / dL时,12.9〜198.1 mV的响应表明酶的活性没有明显降低。制备了结合固态参考系统的生物传感器,评估结果证明了小型化的可行性。对于差分系统,通过修改REFET和酶场效应晶体管(EnFET)的膜来确定生物传感器和参考场效应晶体管(REFET)对的最佳跨导匹配。结果表明,通过调节光致抗蚀剂/ Nafion™比率,基于聚合物的REFET的跨导曲线可以与EnFET的跨导曲线匹配。差分对的跨导曲线的匹配提供了宽的动态工作测量范围。因此,具有差动布置的微型准参考电极(QRE)/ REFET / EnFET的组合获得了与常规大尺寸分立传感器测得的尿素响应曲线相似的尿素响应曲线。

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