Hinman Samuel S, Cheng Quan
Environmental Toxicology, University of California - Riverside, Riverside, CA 92521, USA.
Environmental Toxicology, University of California - Riverside, Riverside, CA 92521, USA; Department of Chemistry, University of California - Riverside, Riverside, CA 92521, USA.
J Electroanal Chem (Lausanne). 2016 Nov 15;781:136-146. doi: 10.1016/j.jelechem.2016.05.014. Epub 2016 May 27.
Electrochemical biosensing represents a collection of techniques that may be utilized for capture and detection of biomolecules in both simple and complex media. While the instrumentation and technological aspects play important roles in detection capabilities, the interfacial design aspects are of equal importance, and often, those inspired by nature produce the best results. This review highlights recent material designs, recognition schemes, and method developments as they relate to targeted electrochemical analysis for biological systems. This includes the design of electrodes functionalized with peptides, proteins, nucleic acids, and lipid membranes, along with nanoparticle mediated signal amplification mechanisms. The topic of hyphenated surface plasmon resonance assays is also discussed, as this technique may be performed concurrently with complementary and/or confirmatory measurements. Together, smart materials and experimental designs will continue to pave the way for complete biomolecular analyses of complex and technically challenging systems.
电化学生物传感是一系列可用于在简单和复杂介质中捕获和检测生物分子的技术。虽然仪器和技术方面在检测能力中起着重要作用,但界面设计方面同样重要,而且通常受自然启发的设计能产生最佳结果。本综述重点介绍了与生物系统靶向电化学分析相关的近期材料设计、识别方案和方法进展。这包括用肽、蛋白质、核酸和脂质膜功能化的电极设计,以及纳米颗粒介导的信号放大机制。还讨论了联用表面等离子体共振测定法这一主题,因为该技术可与互补和/或确证测量同时进行。智能材料和实验设计将共同继续为复杂且技术上具有挑战性的系统的完整生物分子分析铺平道路。