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Graphene-based aptasensors: from molecule-interface interactions to sensor design and biomedical diagnostics

机译:基于石墨烯的APTASENSORS:从分子接口相互作用与传感器设计和生物医学诊断

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摘要

Graphene-based nanomaterials have been widely utilized to fabricate various biosensors for environmental monitoring, food safety, and biomedical diagnostics. The combination of aptamers with graphene for creating biofunctional nanocomposites improved the sensitivity and selectivity of fabricated biosensors due to the unique molecular recognition and biocompatibility of aptamers. In this review, we highlight recent advances in the design, fabrication, and biomedical sensing application of graphene-based aptasensors within the last five years (2013-current). The typical studies on the biomedical fluorescence, colorimetric, electrochemical, electrochemiluminescence, photoelectrochemical, electronic, and force-based sensing of DNA, proteins, enzymes, small molecules, ions, and others are demonstrated and discussed in detail. More attention is paid to a few key points such as the conjugation of aptamers with graphene materials, the fabrication strategies of sensor architectures, and the importance of aptamers on improving the sensing performances. It is expected that this work will provide preliminary and useful guidance for readers to understand the fabrication of graphene-based biosensors and the corresponding sensing mechanisms in one way, and in another way will be helpful to develop novel high performance aptasensors for biological analysis and detection.
机译:基于石墨烯的纳米材料已被广泛用于制造各种生物传感器,用于环境监测,食品安全和生物医学诊断。具有石墨烯的适体组合用于产生生物功能纳米复合材料改善了由于适体的独特分子识别和生物相容性而改善了制造的生物传感器的敏感性和选择性。在这篇综述中,我们在过去五年(2013-电流)中突出了基于石墨烯的Aptasensors的设计,制造和生物医学感测应用的最新进展。对DNA,蛋白,酶,小分子,离子和其他离子和其他基于生物医学荧光,比色,电化学,电化学,光电化学,电子和力的感测的典型研究得到了详细讨论的。需要更多关注少数关键点,例如具有石墨烯材料的适体,传感器架构的制造策略,以及适体改善传感性能的重要性。预计这项工作将为读者提供初步和有用的指导,以了解基于石墨烯的生物传感器和相应的传感机制的制造,并以另一种方式对生物分析和检测进行新的高性能Aptasentors有所帮助。

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