Department of Pharmaceutical Engineering, College of Chemistry and Chemical Engineering, Central South University, Changsha, 410083, Hunan Province, PR China.
Department of Pharmaceutics, Xiangya School of Pharmaceutical Sciences, Central South University, Changsha, 410013, Hunan Province, PR China.
Biosens Bioelectron. 2020 Dec 1;169:112604. doi: 10.1016/j.bios.2020.112604. Epub 2020 Sep 14.
Virus severely endangers human life and health, and the detection of viruses is essential for the prevention and treatment of associated diseases. Metal-organic framework (MOF), a novel hybrid porous material which is bridged by the metal clusters and organic linkers, has become a promising biosensor platform for virus detection due to its outstanding properties including high surface area, adjustable pore size, easy modification, etc. However, the MOF-based sensing platforms for virus detection are rarely summarized. This review systematically divided the detection platforms into nucleic acid and immunological (antigen and antibody) detection, and the underlying sensing mechanisms were interpreted. The nucleic acid sensing was discussed based on the properties of MOF (such as metal ion, functional group, geometry structure, size, porosity, stability, etc.), revealing the relationship between the sensing performance and properties of MOF. Moreover, antibodies sensing based on the fluorescence detection and antigens sensing based on molecular imprinting or electrochemical immunoassay were highlighted. Furthermore, the remaining challenges and future development of MOF for virus detection were further discussed and proposed. This review will provide valuable references for the construction of sophisticated sensing platform for the detection of viruses, especially the 2019 coronavirus.
病毒严重危害人类生命健康,对病毒的检测对于相关疾病的预防和治疗至关重要。金属-有机骨架(MOF)是一种由金属簇和有机配体桥接而成的新型杂化多孔材料,由于其具有高比表面积、可调孔径、易于修饰等优异性能,已成为一种很有前途的用于病毒检测的生物传感器平台。然而,基于 MOF 的病毒检测传感平台很少被总结。本综述系统地将检测平台分为核酸和免疫(抗原和抗体)检测,并解释了其潜在的传感机制。核酸传感是基于 MOF 的特性(如金属离子、官能团、几何结构、尺寸、孔隙率、稳定性等)进行讨论,揭示了传感性能与 MOF 特性之间的关系。此外,还重点介绍了基于荧光检测的抗体传感和基于分子印迹或电化学生物免疫测定的抗原传感。此外,还进一步讨论并提出了 MOF 在病毒检测方面面临的剩余挑战和未来发展方向。本综述将为构建用于病毒检测的复杂传感平台提供有价值的参考,特别是针对 2019 年冠状病毒。