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Biofunctionalized Zinc Oxide Field Effect Transistors for Selective Sensing of Riboflavin with Current Modulation

机译:生物功能化氧化锌场效应晶体管用于通过电流调制选择性地检测核黄素

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摘要

Zinc oxide field effect transistors (ZnO-FET), covalently functionalized with single stranded DNA aptamers, provide a highly selective platform for label-free small molecule sensing. The nanostructured surface morphology of ZnO provides high sensitivity and room temperature deposition allows for a wide array of substrate types. Herein we demonstrate the selective detection of riboflavin down to the pM level in aqueous solution using the negative electrical current response of the ZnO-FET by covalently attaching a riboflavin binding aptamer to the surface. The response of the biofunctionalized ZnO-FET was tuned by attaching a redox tag (ferrocene) to the 3′ terminus of the aptamer, resulting in positive current modulation upon exposure to riboflavin down to pM levels.
机译:与单链DNA适体共价功能化的氧化锌场效应晶体管(ZnO-FET)为无标记的小分子传感提供了高度选择性的平台。 ZnO的纳米结构表面形态可提供高灵敏度,而室温沉积可实现多种基材类型。在本文中,我们证明了通过将核黄素结合适体共价附于表面,利用ZnO-FET的负电流响应选择性检测水溶液中低至pM水平的核黄素。通过将氧化还原标签(二茂铁)附着到适体的3'末端来调节生物功能化ZnO-FET的响应,从而在暴露于低至pM水平的核黄素时产生正电流调制。

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