Department of Chemistry and Chemical Biology, Rutgers, The State University of New Jersey, Piscataway, NJ 08854, USA.
Department of Biomedical-Chemical Engineering, The Catholic University of Korea, Bucheon-si 14662, Gyeonggi-do, Republic of Korea.
Biosensors (Basel). 2023 Jan 30;13(2):208. doi: 10.3390/bios13020208.
The accurate and rapid diagnosis of viral diseases has garnered increasing attention in the field of biosensors. The development of highly sensitive, selective, and accessible biosensors is crucial for early disease detection and preventing mortality. However, developing biosensors optimized for viral disease diagnosis has several limitations, including the accurate detection of mutations. For decades, nanotechnology has been applied in numerous biological fields such as biosensors, bioelectronics, and regenerative medicine. Nanotechnology offers a promising strategy to address the current limitations of conventional viral nucleic acid-based biosensors. The implementation of nanotechnologies, such as functional nanomaterials, nanoplatform-fabrication techniques, and surface nanoengineering, to biosensors has not only improved the performance of biosensors but has also expanded the range of sensing targets. Therefore, a deep understanding of the combination of nanotechnologies and biosensors is required to prepare for sanitary emergencies such as the recent COVID-19 pandemic. In this review, we provide interdisciplinary information on nanotechnology-assisted biosensors. First, representative nanotechnologies for biosensors are discussed, after which this review summarizes various nanotechnology-assisted viral nucleic acid biosensors. Therefore, we expect that this review will provide a valuable basis for the development of novel viral nucleic acid biosensors.
在生物传感器领域,病毒疾病的准确快速诊断受到了越来越多的关注。开发高灵敏度、选择性和易于使用的生物传感器对于早期疾病检测和降低死亡率至关重要。然而,开发针对病毒疾病诊断的生物传感器存在一些局限性,包括对突变的准确检测。几十年来,纳米技术已经应用于生物传感器、生物电子学和再生医学等多个生物领域。纳米技术为解决传统基于病毒核酸的生物传感器的当前局限性提供了一种有前途的策略。将纳米技术(如功能纳米材料、纳米平台制造技术和表面纳米工程)应用于生物传感器不仅提高了生物传感器的性能,还扩大了传感目标的范围。因此,为了应对最近的 COVID-19 大流行等卫生紧急情况,需要深入了解纳米技术和生物传感器的结合。在这篇综述中,我们提供了关于纳米技术辅助生物传感器的跨学科信息。首先,讨论了用于生物传感器的代表性纳米技术,然后总结了各种纳米技术辅助的病毒核酸生物传感器。因此,我们希望这篇综述将为新型病毒核酸生物传感器的开发提供有价值的基础。