De Rycke Esther, Stove Christophe, Dubruel Peter, De Saeger Sarah, Beloglazova Natalia
Centre of Excellence in Mycotoxicology and Public Health, Department of Bioanalysis, Ghent University, Ottergemsesteenweg 460, B-9000 Ghent, Belgium; Polymer Chemistry & Biomaterials Research Group, Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281, Building S4-Bis, B-9000 Ghent, Belgium.
Laboratory of Toxicology, Ghent University, Ottergemsesteenweg 460, B-9000 Ghent, Belgium.
Biosens Bioelectron. 2020 Dec 1;169:112579. doi: 10.1016/j.bios.2020.112579. Epub 2020 Sep 8.
Drug abuse is a global problem, requiring an interdisciplinary approach. Discovery, production, trafficking, and consumption of illicit drugs have been constantly growing, leading to heavy consequences for environment, human health, and society in general. Therefore, an urgent need for rapid, sensitive, portable and easy-to-operate detection methods for numerous drugs of interest in diverse matrices, from police samples, biological fluids and hair to sewage water has risen. Electrochemical sensors are promising alternatives to chromatography and spectrometry. Last decades, electrochemical sensing of illegal drugs has experienced a very significant growth, driven by improved transducers and signal amplifiers helping to improve the sensitivity and selectivity. The present review summarizes recent advances (last 10 years) in electrochemical detection of the most prevailing illicit drugs (such as cocaine, heroin, and (meth)amphetamine), their precursors and derivatives in different matrices. Various electrochemical sensors making use of different transducers with their (dis)advantages were discussed, and their sensitivity and applicability were critically compared. In those cases where natural or synthetic recognition elements were included in the sensing system to increase specificity, selected recognition elements, their immobilization, working conditions, and analytical performance were discussed. Finally, an outlook is presented with suggestions and recommendations for future developments.
药物滥用是一个全球性问题,需要采取跨学科方法。非法药物的发现、生产、贩运和消费一直在不断增加,给环境、人类健康以及整个社会带来了严重后果。因此,迫切需要针对各种基质(从警方样本、生物体液和毛发到污水)中的多种目标药物开发快速、灵敏、便携且易于操作的检测方法。电化学传感器是色谱法和光谱法的有前途的替代方法。在过去几十年中,受改进的换能器和信号放大器推动,非法药物的电化学传感取得了非常显著的发展,有助于提高灵敏度和选择性。本综述总结了最近(过去10年)在不同基质中对最常见非法药物(如可卡因、海洛因和(甲基)苯丙胺)及其前体和衍生物进行电化学检测的进展。讨论了使用不同换能器的各种电化学传感器及其优缺点,并对它们的灵敏度和适用性进行了严格比较。在传感系统中包含天然或合成识别元件以提高特异性的情况下,讨论了选定的识别元件、它们的固定化、工作条件和分析性能。最后,对未来发展提出了展望和建议。