ACS Sens. 2024 May 24;9(5):2254-2274. doi: 10.1021/acssensors.4c00043. Epub 2024 Apr 18.
Advanced healthcare requires novel technologies capable of real-time sensing to monitor acute and long-term health. The challenge relies on converting a real-time quantitative biological and chemical signal into a desired measurable output. Given the success in detecting glucose and the commercialization of glucometers, electrochemical biosensors continue to be a mainstay of academic and industrial research activities. Despite the wealth of literature on electrochemical biosensors, reports are often specific to a particular application (e.g., pathogens, cancer markers, glucose, etc.), and most fail to convey the underlying strategy and design, and if it is transferable to detection of a different analyte. Here we present a tutorial review for those entering this research area that summarizes the basic electrochemical techniques utilized as well as discusses the designs and optimization strategies employed to improve sensitivity and maximize signal output.
先进的医疗保健需要能够实时感应的新型技术来监测急性和长期健康。挑战在于将实时定量的生物和化学信号转换为所需的可测量输出。鉴于在检测葡萄糖方面的成功和血糖仪的商业化,电化学生物传感器仍然是学术和工业研究活动的主要支柱。尽管关于电化学生物传感器的文献很多,但报告往往特定于特定的应用(例如病原体、癌症标志物、葡萄糖等),并且大多数未能传达基本策略和设计,如果它可以转移到检测不同的分析物。在这里,我们为进入该研究领域的人员提供了一个教程性的综述,总结了所使用的基本电化学技术,并讨论了用于提高灵敏度和最大化信号输出的设计和优化策略。