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Graphene-Based Sensing Platform for On-Chip Ochratoxin A Detection

机译:基于石墨烯的片上O曲霉毒素A检测平台

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摘要

In this work, we report an on-chip aptasensor for ochratoxin A (OTA) toxin detection that is based on a graphene field-effect transistor (GFET). Graphene-based devices are fabricated via large-scale technology, allowing for upscaling the sensor fabrication and lowering the device cost. The sensor assembly was performed through covalent bonding of graphene’s surface with an aptamer specifically sensitive towards OTA. The results demonstrate fast (within 5 min) response to OTA exposure with a linear range of detection between 4 ng/mL and 10 pg/mL, with a detection limit of 4 pg/mL. The regeneration time constant of the sensor was found to be rather small, only 5.6 s, meaning fast sensor regeneration for multiple usages. The high reproducibility of the sensing response was demonstrated via using several recycling procedures as well as various GFETs. The applicability of the aptasensor to real samples was demonstrated for spiked red wine samples with recovery of about 105% for a 100 pM OTA concentration; the selectivity of the sensor was also confirmed via addition of another toxin, zearalenone. The developed platform opens the way for multiplex sensing of different toxins using an on-chip array of graphene sensors.
机译:在这项工作中,我们报告了一种基于石墨烯场效应晶体管(GFET)的用于检测ra曲霉毒素A(OTA)毒素的片上适体传感器。基于石墨烯的器件是通过大规模技术制造的,从而可以扩大传感器的制造规模并降低器件成本。传感器组装是通过将石墨烯表面与对OTA特别敏感的适体共价键合完成的。结果表明,对OTA暴露具有快速响应(5分钟内),线性检测范围为4 ng / mL至10 pg / mL,检测极限为4 pg / mL。发现传感器的再生时间常数非常小,仅为5.6 s,这意味着多种用途的传感器再生速度很快。通过使用几种回收程序以及各种GFET,证明了传感响应的高度可重复性。事实证明,适体传感器对加标的红酒样品具有适用性,在100 pM OTA浓度下回收率约为105%。还通过添加另一种毒素玉米赤霉烯酮来确认传感器的选择性。开发的平台为使用石墨烯传感器的芯片阵列对多种毒素进行多重感测开辟了道路。

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