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Harnessing Selectivity and Sensitivity in Electronic Biosensing: A Novel Lab-on-Chip Multigate Organic Transistor

机译:利用电子生物传感中的选择性和灵敏度:一种新型的片上芯片多格有机晶体管

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摘要

Electrolyte gated organic transistors can operate as powerful ultrasensitive biosensors, and efforts are currently devoted to devising strategies for reducing the contribution of hardly avoidable, nonspecific interactions to their response, to ultimately harness selectivity in the detection process. We report a novel lab-on-a-chip device integrating a multigate electrolyte gated organic field-effect transistor (EGOFET) with a 6.5 mu L microfluidics set up capable to provide an assessment of both the response reproducibility, by enabling measurement in triplicate, and of the device selectivity through the presence of an internal reference electrode. As proof-of-concept, we demonstrate the efficient operation of our pentacene based EGOFET sensing platform through the quantification of tumor necrosis factor alpha with a detection limit as low as 3 pM. Sensing of inflammatory cytokines, which also include TNF alpha, is of the outmost importance for monitoring a large number of diseases. The multiplexable organic electronic lab-on-chip provides a statistically solid, reliable, and selective response on microliters sample volumes on the minutes time scale, thus matching the relevant key-performance indicators required in point-of-care diagnostics.
机译:电解质门控有机晶体管可以作为强大的超声静脉化生物传感器操作,并且目前致力于设计用于减少难以避免的非特异性相互作用与其反应的贡献的策略,最终利用检测过程中的选择性。我们报告了一种新颖的实验室内芯片装置,将多格电解质门控有机场效应晶体管(EGOfet)与6.5μl的微流体集成,该装置能够通过使响应再现性进行三份来提供响应再现性的评估,并且通过存在内部参比电极的器件选择性。作为概念验证,我们通过定量肿瘤坏死因子α的肿瘤坏死因子α的优化操作,以低至3μm的检测极限。感测炎性细胞因子,其还包括TNFα,对于监测大量疾病的最重要意义。多路复用有机电子实验室的芯片在几分钟的时间尺度上为微升性,可靠,可靠性,可靠性和选择性响应,从而匹配护理点诊断中所需的相关关键性能指标。

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  • 来源
    《Analytical chemistry》 |2020年第13期|共8页
  • 作者单位

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    CNR Ist Sintesi Organ &

    Fotoreatt I-40129 Bologna Italy;

    CNR Ist Microelettron &

    Microsistemi I-00133 Rome Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Strasbourg CNRS UMR 70068 ISIS F-67000 Strasbourg France;

    Scriba Nanotecnol Srl I-40128 Bologna Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

    Univ Modena &

    Reggio Emilia Dipartimento Sci Vita I-41125 Modena Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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