Malekzad Hedieh, Jouyban Abolghasem, Hasanzadeh Mohammad, Shadjou Nasrin, de la Guardia Miguel
Pharmaceutical Analysis Research Center and Faculty of Pharmacy, Tabriz University of Medical Sciences, Tabriz, Iran.
Kimia Idea Pardaz Azarbayjan (KIPA) Science Based Company, Tabriz University of Medical Sciences, Tabriz 51664, Iran.
Trends Analyt Chem. 2017 Sep;94:77-94. doi: 10.1016/j.trac.2017.07.001. Epub 2017 Jul 10.
Aptamers, are being increasingly employed as favorable receptors for constructing highly sensitive biosensors, for their remarkable affinities towards certain targets including a wide scope of biological or chemical substances, and their superiority over other biologic receptors. The selectivity and affinity of the aptamers have been integrated with the wise design of the assay, applying suitable modifications, such as nanomaterials on the electrode surface, employing oligonucleotide-specific amplification strategies or, their combinations. After successful performance of the electrochemical aptasensors for biomedical applications, the food sector with its direct implication for human health, which demands rapid and sensitive and economic analytical solutions for determination of health threatening contaminants in all stages of production process, is the next field of research for developing efficient electrochemical aptasensors. The aim of this review is to categorize and introduce food hazards and summarize the recent electrochemical aptasensors that have been developed to address these contaminants.
适体作为构建高灵敏度生物传感器的优良受体正越来越多地被使用,因为它们对包括广泛生物或化学物质在内的某些靶标具有显著亲和力,且优于其他生物受体。适体的选择性和亲和力已与检测方法的巧妙设计相结合,采用了合适的修饰方法,如在电极表面使用纳米材料、采用寡核苷酸特异性扩增策略或它们的组合。在电化学适体传感器在生物医学应用中取得成功后,对人类健康有直接影响的食品行业,其在生产过程的各个阶段都需要快速、灵敏且经济的分析解决方案来测定对健康有威胁的污染物,这是开发高效电化学适体传感器的下一个研究领域。本综述的目的是对食品危害进行分类和介绍,并总结最近开发的用于检测这些污染物的电化学适体传感器。