State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beisanhuan East Road 15, Beijing 100029, China.
Institute for Advanced Study, Shenzhen University, Shenzhen 518060, China.
Biosensors (Basel). 2022 Jun 27;12(7):460. doi: 10.3390/bios12070460.
Two-dimensional carbon nanomaterials have been commonly employed in the field of biosensors to improve their sensitivity/limits of detection and shorten the analysis time. These nanomaterials act as efficient transducers because of their unique characteristics, such as high surface area and optical, electrical, and magnetic properties, which in turn have been exploited to create simple, quick, and low-cost biosensing platforms. In this review, graphene and two-dimensional carbon material-based fluorescent biosensors are covered between 2010 and 2021, for the detection of different human viruses. This review specifically focuses on the new developments in graphene and two-dimensional carbon nanomaterials for fluorescent biosensing based on the Förster resonance energy transfer (FRET) mechanism. The high-efficiency quenching capability of graphene via the FRET mechanism enhances the fluorescent-based biosensors. The review provides a comprehensive reference for the different types of carbon nanomaterials employed for the detection of viruses such as Rotavirus, Ebola virus, Influenza virus HN, HIV, Hepatitis C virus (HCV), and Hepatitis B virus (HBV). This review covers the various multiplexing detection technologies as a new direction in the development of biosensing platforms for virus detection. At the end of the review, the different challenges in the use of fluorescent biosensors, as well as some insights into how to overcome them, are highlighted.
二维碳纳米材料在生物传感器领域得到了广泛应用,以提高其灵敏度/检测限并缩短分析时间。这些纳米材料因其独特的特性,如高比表面积和光学、电学和磁学特性,被用作高效的传感器,进而被用于开发简单、快速和低成本的生物传感平台。本综述涵盖了 2010 年至 2021 年间基于石墨烯和二维碳材料的荧光生物传感器,用于检测不同的人类病毒。本综述特别关注基于Förster 共振能量转移(FRET)机制的石墨烯和二维碳纳米材料在荧光生物传感方面的新进展。通过 FRET 机制,石墨烯具有高效的猝灭能力,增强了荧光生物传感器的性能。该综述为不同类型的碳纳米材料在轮状病毒、埃博拉病毒、流感病毒 HN、HIV、丙型肝炎病毒(HCV)和乙型肝炎病毒(HBV)等病毒检测中的应用提供了全面的参考。本综述涵盖了各种多重检测技术,作为病毒检测生物传感平台发展的一个新方向。最后,本文强调了荧光生物传感器在使用中面临的不同挑战,以及如何克服这些挑战的一些见解。