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Fabrication of ultrasensitive graphene nanobiosensors

机译:超灵敏石墨烯纳米生物传感器的制备

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The development of miniaturised systems for detection of disease biomarkers, at clinically relevant concentrations in biological samples, is key in the early diagnosis and monitoring of diseases. This paper presents the development of novel antibody functionalized epitaxial graphene devices for bio-sensing applications. Epitaxial graphene has been grown on silicon carbide (SiC) substrates under high vacuum and high temperature conditions (1200 – 1700°C). A generic electrochemical surface functionalisation chemistry, which can be used to attach a variety of “bio-receptors” to graphitic surfaces, has been developed. The attached bio-receptors are capable of specific and selective interaction with disease biomarkers. When a target biomarker molecule interacts with the “bio-receptor” functionalised surface, the charge density at that surface is affected. This change can be detected as an electrical signal from the biosensor, enabling highly sensitive detection of biomarker analytes.
机译:在生物样品中以临床相关浓度检测疾病的生物标志物的小型化系统的开发是疾病早期诊断和监测的关键。本文介绍了用于生物传感应用的新型抗体功能化外延石墨烯器件的开发。外延石墨烯已经在高真空和高温条件(1200 – 1700°C)下生长在碳化硅(SiC)衬底上。已经开发了一种通用的电化学表面功能化化学方法,可用于将各种“生物受体”连接到石墨表面。附着的生物受体能够与疾病生物标志物发生特异性和选择性的相互作用。当目标生物标志物分子与“生物受体”功能化的表面相互作用时,该表面上的电荷密度会受到影响。可以将这种变化检测为来自生物传感器的电信号,从而可以对生物标志物分析物进行高度灵敏的检测。

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