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Enzyme assays using sensor arrays based on ion-selective carbon nanotube field-effect transistors

机译:使用基于离子选择性碳纳米管场效应晶体管的传感器阵列进行酶分析

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摘要

In the fields of clinical diagnostics and point-of-care diagnosis as well as food and environmental monitoring there is a high demand for reliable high-throughput, rapid and highly sensitive assays for a simultaneous detection of several analytes in complex and low-volume samples. Sensor platforms based on solution-processable electrolyte-gated carbon nanotube field-effect transistors (CNT-FETs) are a simple and cost-effective alternative for conventional assays. In this work we demonstrate a selective as well as direct detection of the products of an enzyme-substrate interaction, here the for metabolic processes important urea-urease system, with sensors based on spray-coated CNT-FETs. The selective and direct detection is achieved by immobilizing the enzyme urease via certain surface functionalization techniques on the sensor surface and further modifying the active interfaces with polymeric ion-selective membranes as well as pH-sensitive layers. Thereby, we can avoid the generally applied approach for a field-effect based detection of enzyme reactions via detecting changes in the pH value due to an on-going enzymatic reaction and directly detect selectively the products of the enzymatic conversion. Thus, we can realize a buffering-capacity independent monitoring of changes in the substrate concentration. (C) 2016 Elsevier B.V. All rights reserved.
机译:在临床诊断和即时诊断以及食品和环境监测领域,迫切需要可靠的高通量,快速和高度灵敏的分析方法,以便同时检测复杂和小批量样品中的几种分析物。基于溶液可处理的电解质门控碳纳米管场效应晶体管(CNT-FET)的传感器平台是常规测定的一种简单且经济高效的替代方案。在这项工作中,我们展示了选择性和直接检测酶与底物相互作用的产物的方法,在这里,对于代谢过程而言,重要的尿素脲酶系统具有基于喷涂碳纳米管的传感器。通过某些表面功能化技术将脲酶酶固定在传感器表面上,并进一步修饰带有聚合物离子选择膜和pH敏感层的活性界面,可以实现选择性和直接检测。因此,我们可以通过检测由于进行中的酶促反应引起的pH值变化,避免基于现场效应的酶促反应检测的通用方法,而直接选择酶促转化的产物。因此,我们可以实现对底物浓度变化的缓冲能力独立监控。 (C)2016 Elsevier B.V.保留所有权利。

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