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Engineered carbon-nanomaterial-based electrochemical sensors for biomolecules

机译:基于碳纳米材料的工程化生物分子电化学传感器

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摘要

The study of electrochemical behavior of bioactive molecules has become one of the most rapidly developing scientific fields. Biotechnology and biomedical engineering fields have a vested interest in constructing more precise and accurate voltammetric/amperometric biosensors. One rapidly growing area of biosensor design involves incorporation of carbon-based nanomaterials in working electrodes, such as one-dimensional carbon nanotubes, two-dimensional graphene, and graphene oxide. In this review article, we give a brief overview describing the voltammetric techniques and how these techniques are applied in biosensing, as well as the details surrounding important biosensing concepts of sensitivity and limits of detection. Building on these important concepts, we show how the sensitivity and limit of detection can be tuned by including carbon-based nanomaterials in the fabrication of biosensors. The sensing of biomolecules including glucose, dopamine, proteins, enzymes, uric acid, DNA, RNA, and H2O2 traditionally employs enzymes in detection; however, these enzymes denature easily, and as such, enzymeless methods are highly desired. Here we draw an important distinction between enzymeless and enzyme-containing carbon-nanomaterial-based biosensors. The review ends with an outlook of future concepts that can be employed in biosensor fabrication, as well as limitations of already proposed materials and how such sensing can be enhanced. As such, this review can act as a roadmap to guide researchers toward concepts that can be employed in the design of next generation biosensors, while also highlighting the current advancements in the field.
机译:对生物活性分子的电化学行为的研究已成为发展最快的科学领域之一。生物技术和生物医学工程领域对构建更精确,更精确的伏安/安培生物传感器有着既得的兴趣。生物传感器设计的一个快速增长的领域涉及在工作电极中掺入碳基纳米材料,例如一维碳纳米管,二维石墨烯和氧化石墨烯。在这篇综述文章中,我们简要概述了伏安技术及其在生物传感中的应用方式,以及有关灵敏度和检测限的重要生物传感概念的详细信息。在这些重要概念的基础上,我们展示了如何通过在生物传感器的制造中包括碳基纳米材料来调整检测的灵敏度和极限。传统上,对包括葡萄糖,多巴胺,蛋白质,酶,尿酸,DNA,RNA和H2O2在内的生物分子的检测都采用酶进行检测。然而,这些酶容易变性,因此,非常需要无酶方法。在这里,我们在无酶和含酶的碳纳米材料生物传感器之间进行了重要区分。审查以对可用于生物传感器制造中的未来概念的展望结束,并对已经提出的材料进行限制,以及如何增强这种感测。因此,本次审查可以作为路线图,指导研究人员了解可用于下一代生物传感器设计的概念,同时还重点介绍该领域的最新进展。

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