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Direct metabolite detection with an n-type accumulation mode organic electrochemical transistor

机译:使用n型累积模式有机电化学晶体管进行直接代谢物检测

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The inherent specificity and electrochemical reversibility of enzymes poise them as the biorecognition element of choice for a wide range of metabolites. To use enzymes efficiently in biosensors, the redox centers of the protein should have good electrical communication with the transducing electrode, which requires either the use of mediators or tedious biofunctionalization approaches. We report an all-polymer micrometer-scale transistor platform for the detection of lactate, a significant metabolite in cellular metabolic pathways associated with critical health care conditions. The device embodies a new concept in metabolite sensing where we take advantage of the ion-to-electron transducing qualities of an electron-transporting (n-type) organic semiconductor and the inherent amplification properties of an ion-to-electron converting device, the organic electrochemical transistor. The n-type polymer incorporates hydrophilic side chains to enhance ion transport/injection, as well as to facilitate enzyme conjugation. The material is capable of accepting electrons of the enzymatic reaction and acts as a series of redox centers capable of switching between the neutral and reduced state. The result is a fast, selective, and sensitive metabolite sensor. The advantage of this device compared to traditional amperometric sensors is the amplification of the input signal endowed by the electrochemical transistor circuit and the design simplicity obviating the need for a reference electrode. The combination of redox enzymes and electron-transporting polymers will open up an avenue not only for the field of biosensors but also for the development of enzyme-based electrocatalytic energy generation/storage devices.
机译:酶的固有特异性和电化学可逆性使它们成为广泛代谢物选择的生物识别元件。为了在生物传感器中有效使用酶,蛋白质的氧化还原中心应与换能电极保持良好的电连通,这需要使用介体或繁琐的生物功能化方法。我们报告了用于检测乳酸的全聚合物微米级晶体管平台,乳酸是与关键卫生保健条件相关的细胞代谢途径中的重要代谢产物。该设备体现了代谢物传感的新概念,其中我们利用了电子传输(n型)有机半导体的离子对电子的转换质量以及离子对电子转换设备的固有放大特性,有机电化学晶体管。 n型聚合物结合了亲水性侧链,可增强离子的转运/注入,并促进酶的结合。该材料能够接受酶促反应的电子,并充当一系列能够在中性和还原态之间切换的氧化还原中心。结果是快速,选择性和灵敏的代谢物传感器。与传统的安培传感器相比,该设备的优点是放大了电化学晶体管电路提供的输入信号,并且设计简单,无需参考电极。氧化还原酶和电子传输聚合物的结合将不仅为生物传感器领域,而且为基于酶的电催化能量产生/存储设备的开发开辟一条途径。

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