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Construction and Evaluation of a Self-Calibrating Multiresponse and Multifunctional Graphene Biosensor

机译:自我校准多态和多功能石墨烯生物传感器的构建与评价

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Recently, many studies have been focused on the development of graphene-based biosensors. However, they rely on one type of signal and need to be calibrated by other techniques. In this study, a nonenzymatic graphene-based biosensor has been designed and constructed. Its ability to detect glucose and Escherichia coli by three different types of signals has been investigated. For its preparation, dopamine-functionalized polyethylene glycol and 2,5-thio-phenediylbisboronic acid were conjugated onto the surface of graphene sheets by nitrene [2 + 1] cycloaddition and condensation reactions, respectively. Multivalent interactions between boronic acid segments and biosystems consequently increased the quantifiable fluorescence emission and UV absorption of dopamine segments. Additionally, changing the electrochemical behavior of the functionalized graphene sheets was possible and resulted in a measurable output signal. Conjugation of mannose onto the surface of the biosensor improved its magnitude of signals and specificity for sensing E. coli in a complex medium. The efficiency and accuracy of each signal was monitored by others, which resulted in a real-time self-calibrating biosensor. Taking advantage of the versatility of the three different indicators, including florescence, UV, and electrochemistry, the functionalized graphene sheets have been used as self-regulating biosensors to detect a variety of biosystems with a high accuracy and specificity in a short time.
机译:最近,许多研究都集中在基于石墨烯的生物传感器的发展。然而,它们依赖于一种类型的信号并且需要通过其他技术校准。在该研究中,设计和构造了一种基于非酶的石墨烯的生物传感器。研究了通过三种不同类型信号检测葡萄糖和大肠杆菌的能力。为其制备,通过硝基[2 + 1]环加成和缩合反应分别将多巴胺官能化的聚乙二醇和2,5-硫代 - 苯二甲硅烷酸和2,5-硫代 - 苯二甲硅酸缀合到石墨烯片表面上。因此,硼酸段和生物系统之间的多价相互作用增加了多巴胺段的可量化荧光发射和紫外线吸收。另外,改变官能化石墨烯片的电化学行为是可能的并且导致可测量的输出信号。甘露糖在生物传感器表面上的缀合改善了其在复杂介质中感测到大肠杆菌的信号和特异性的大小。其他信号的效率和准确性由其他信号监测,导致实时自校准生物传感器。利用三种不同指标的多功能性,包括荧光性,紫外线和电化学,官能化的石墨烯片已被用作自调节生物传感器,以在短时间内检测具有高精度和特异性的生物系统。

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