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Label-Free DNA Sensing Platform with Low-Voltage Electrolyte-Gated Transistors

机译:具有低压电解质门控晶体管的无标签DNA传感平台

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We report a method to measure DNA hybridization potentiometrically in a manner conducive to portable or hand-held biosensors. An electrolyte-gated transistor (EGT) based on poly(3-hexylthiophene) (P3HT) and an ion-gel serves as a transducer for surface hybridization of DNA. The key aspect of the design is the use of a floating-gate electrode functionalized with ssDNA whose potential is determined by both capacitive coupling with a primary, addressable gate electrode and the presence of adsorbed molecules. When DNA is hybridized at the floating gate, it offsets the primary gate voltage felt by the P3HT semiconductor; the offset is directly measurable and quantitatively related to the number density of dsDNA molecules. The presented sensing strategy can be readily adapted to other biomolecules of interest and integrated into a microfluidic system for field applications of biosensors.
机译:我们报告了一种方法,以一种有利于便携式或手持式生物传感器的方式来测量DNA杂交的方法。基于聚(3-己基噻吩)(P3HT)和离子凝胶的电解质门控晶体管(EGT)用作DNA表面杂交的传感器。设计的关键方面是使用由ssDNA功能化的浮栅电极,其电位取决于与主要可寻址栅电极的电容耦合以及吸附分子的存在。当DNA在浮栅上杂交时,它抵消了P3HT半导体感受到的主栅电压。偏移量可直接测量,并与dsDNA分子的数量密度定量相关。提出的传感策略可以很容易地适应其他感兴趣的生物分子,并集成到微流体系统中,用于生物传感器的现场应用。

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