Huo Bingyang, Hu Yuling, Gao Zhixian, Li Gongke
School of Chemistry, Sun Yat-sen University, Guangzhou, 510275, China.
Tianjin Key Laboratory of Risk Assessment and Control Technology for Environment and Food Safety, Tianjin Institute of Environmental and Operational Medicine, Tianjin, 300050, China.
Talanta. 2021 Jan 15;222:121565. doi: 10.1016/j.talanta.2020.121565. Epub 2020 Aug 26.
It has seen increasing development of reliable, robust, and flexible biosensors for rapid food-safety analysis in the past few decades. Recently, functional nucleic acid-based biosensors have attracted attention because of their programmability, bottom-up characteristics, and structural switches. However, few systematic reviews devoted to categorizing the potential of DNA nanostructures and devices were found for detecting food contaminants. Hence, the applications of functional nucleic acid-based biosensors were reviewed for analyzing food contaminants, including foodborne pathogen bacteria, biotoxins, heavy metals, and et al. In addition to categorizing the various biosensors, multiple signal readout strategies, such as optical, electrochemical, and mass-based signals were also examined. Finally, the future changes and potential opportunities, as well as practical applications of functional nucleic acid-based biosensors were discussed.
在过去几十年里,用于快速食品安全分析的可靠、稳健且灵活的生物传感器得到了越来越多的发展。最近,基于功能核酸的生物传感器因其可编程性、自下而上的特性和结构转换而受到关注。然而,很少有系统的综述致力于对用于检测食品污染物的DNA纳米结构和装置的潜力进行分类。因此,本文综述了基于功能核酸的生物传感器在分析食品污染物方面的应用,包括食源性病原体细菌、生物毒素、重金属等。除了对各种生物传感器进行分类外,还研究了多种信号读出策略,如光学、电化学和基于质量的信号。最后,讨论了基于功能核酸的生物传感器的未来变化和潜在机会以及实际应用。