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New Strategy for Ultrasensitive Aptasensor Fabrication: D-A-D Constitution as a Charge Transfer Platform and Recognition Element

机译:超敏感Aptasensor制造的新策略:D-A-D构造作为电荷转移平台和识别元件

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摘要

Over the past decade, various sensing systems based on aptamers have attracted a great deal of studies directed at designing highly selective biosensors. In this paper, we described a new-style electrochemical aptamer sensor (aptasensor) via a donor-acceptor link substrate, which was characterized by electrochemical methods and other helpful characterization instruments. Molecules with D-A-D configuration always undergo an intrinsic signal amplification due to the elongation of the pi-electron conjugation. Triphenylamine, a peripheral electron donor, has excellent hole-transport property and is able to assemble on the surface of glassy carbon electrode by pi-pi stacking interaction. To further improve the performance of the adenosine triphosphate (ATP) sensor, we chose diphenylfumaronitrile-containing electron-withdrawing group as the central core to promote charge transfer, which can also efficiently combine with aptamers by multihydrogen bond function. Surprisingly, the sensing platform showed a wide liner range from 0.1 pM to 100 nM, with a detection limit of 0.018 pM. We examined the ATP in human serum sample, indicating that the novel aptasensor based on D-A-D conjugated polymer holds great possibility for practical detection of ATP. Moreover, it is foreseeable that the conjugated polymers of the D-A structure will have promising application in the preparation of biosensors.
机译:在过去十年中,基于适体的各种传感系统都吸引了针对设计高选择性生物传感器的大量研究。在本文中,我们描述了一种通过供体 - 受体链路基板的新型电化学适体传感器(Aptasensor),其特征在于电化学方法和其他有用的表征仪器。具有D-A-D配置的分子始终由于PI-电子共轭的伸长而经历了内在信号放大。三苯胺,外围电子供体具有优异的空穴传输性能,并且能够通过PI-PI堆叠相互作用在玻璃碳电极的表面上组装。为了进一步改善腺苷三磷酸(ATP)传感器的性能,我们选择含二苯基五腈的吸电子基团作为中央核心以促进电荷转移,这也可以通过多氢键函数有效地与适体结合。令人惊讶的是,传感平台显示宽衬里范围为0.1pm至100nm,检测限为0.018 pm。我们检查了人血清样品中的ATP,表明基于D-A-D缀合聚合物的新型Aptasensor具有实际检测ATP的可能性。此外,可预见到D-A结构的共轭聚合物将在制备生物传感器方面具有希望的应用。

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