Meskher Hicham, Mustansar Hussain Chaudhery, Thakur Amrit Kumar, Sathyamurthy Ravishankar, Lynch Iseult, Singh Punit, Han Tan Kim, Saidur Rahman
Department of Process Engineering, Kasdi-Merbah University Ouargla 30000 Algeria
Department of Chemistry and Environmental Science, New Jersey Institute of Technology Newark 07102 NJ USA.
Nanoscale Adv. 2022 Nov 9;5(4):992-1010. doi: 10.1039/d2na00236a. eCollection 2023 Feb 14.
The current COVID-19 pandemic, with its numerous variants including Omicron which is 50-70% more transmissible than the previously dominant Delta variant, demands a fast, robust, cheap, and easily deployed identification strategy to reduce the chain of transmission, for which biosensors have been shown as a feasible solution at the laboratory scale. The use of nanomaterials has significantly enhanced the performance of biosensors, and the addition of CNTs has increased detection capabilities to an unrivaled level. Among the various CNT-based detection systems, CNT-based field-effect transistors possess ultra-sensitivity and low-noise detection capacity, allowing for immediate analyte determination even in the presence of limited analyte concentrations, which would be typical of early infection stages. Recently, CNT field-effect transistor-type biosensors have been successfully used in the fast diagnosis of COVID-19, which has increased research and commercial interest in exploiting current developments of CNT field-effect transistors. Recent progress in the design and deployment of CNT-based biosensors for viral monitoring are covered in this paper, as are the remaining obstacles and prospects. This work also highlights the enormous potential for synergistic effects of CNTs used in combination with other nanomaterials for viral detection.
当前的新冠疫情,其包含众多变体,如传播性比此前占主导的德尔塔变体高50%至70%的奥密克戎变体,这需要一种快速、可靠、廉价且易于部署的识别策略来减少传播链,在实验室规模上,生物传感器已被证明是一种可行的解决方案。纳米材料的使用显著提高了生物传感器的性能,而碳纳米管的加入将检测能力提升到了无与伦比的水平。在各种基于碳纳米管的检测系统中,基于碳纳米管的场效应晶体管具有超灵敏度和低噪声检测能力,即使在分析物浓度有限的情况下(这在早期感染阶段很典型)也能立即进行分析物测定。最近,基于碳纳米管场效应晶体管的生物传感器已成功用于新冠病毒的快速诊断,这增加了对利用当前碳纳米管场效应晶体管发展的研究和商业兴趣。本文涵盖了基于碳纳米管的生物传感器在病毒监测设计和部署方面的最新进展,以及尚存的障碍和前景。这项工作还强调了碳纳米管与其他纳米材料结合用于病毒检测时协同效应的巨大潜力。