Schoukroun-Barnes Lauren R, Macazo Florika C, Gutierrez Brenda, Lottermoser Justine, Liu Juan, White Ryan J
Department of Chemistry and Biochemistry, University of Maryland, Baltimore County, Baltimore, Maryland 21250; email:
Annu Rev Anal Chem (Palo Alto Calif). 2016 Jun 12;9(1):163-81. doi: 10.1146/annurev-anchem-071015-041446. Epub 2016 Apr 6.
The development of structure-switching, electrochemical, aptamer-based sensors over the past ∼10 years has led to a variety of reagentless sensors capable of analytical detection in a range of sample matrices. The crux of this methodology is the coupling of target-induced conformation changes of a redox-labeled aptamer with electrochemical detection of the resulting altered charge transfer rate between the redox molecule and electrode surface. Using aptamer recognition expands the highly sensitive detection ability of electrochemistry to a range of previously inaccessible analytes. In this review, we focus on the methods of sensor fabrication and how sensor signaling is affected by fabrication parameters. We then discuss recent studies addressing the fundamentals of sensor signaling as well as quantitative characterization of the analytical performance of electrochemical aptamer-based sensors. Although the limits of detection of reported electrochemical aptamer-based sensors do not often reach that of gold-standard methods such as enzyme-linked immunosorbent assays, the operational convenience of the sensor platform enables exciting analytical applications that we address. Using illustrative examples, we highlight recent advances in the field that impact important areas of analytical chemistry. Finally, we discuss the challenges and prospects for this class of sensors.
在过去约10年里,基于适体的结构转换电化学传感器得到了发展,产生了多种能够在一系列样品基质中进行无试剂分析检测的传感器。该方法的关键在于将氧化还原标记适体的靶标诱导构象变化与对氧化还原分子和电极表面之间电荷转移速率改变的电化学检测相结合。利用适体识别将电化学的高灵敏度检测能力扩展到了一系列以前无法检测的分析物。在本综述中,我们重点关注传感器的制备方法以及制备参数如何影响传感器信号。然后,我们讨论了近期关于传感器信号基本原理以及基于电化学适体传感器分析性能定量表征的研究。尽管报道的基于电化学适体传感器的检测限通常未达到酶联免疫吸附测定等金标准方法的检测限,但该传感器平台的操作便利性使其能够实现令人兴奋的分析应用,我们将对此进行探讨。通过示例,我们突出了该领域影响分析化学重要领域的最新进展。最后,我们讨论了这类传感器面临的挑战和前景。