School of Food Science and Nutrition, University of Leeds, Leeds, LS2 9JT, United Kingdom.
Anal Chim Acta. 2021 May 22;1160:338395. doi: 10.1016/j.aca.2021.338395. Epub 2021 Mar 24.
Mycotoxin contamination is a current issue affecting several crops and processed products worldwide. Among the diverse mycotoxin group, fumonisin B1 (FB1) has become a relevant compound because of its adverse effects in the food chain. Conventional analytical methods previously proposed to quantify FB1 comprise LC-MS, HPLC-FLD and ELISA, while novel approaches integrate different sensing platforms and fluorescently labelled agents in combination with antibodies. Nevertheless, such methods could be expensive, time-consuming and require experience. Aptamers (ssDNA) are promising alternatives to overcome some of the drawbacks of conventional analytical methods, their high affinity through specific aptamer-target binding has been exploited in various designs attaining favorable limits of detection (LOD). So far, two aptamers specific to FB1 have been reported, and their modified and shortened sequences have been explored for a successful target quantification. In this critical review spanning the last eight years, we have conducted a systematic comparison based on principal component analysis of the aptamer-based techniques for FB1, compared with chromatographic, immunological and other analytical methods. We have also conducted an in-silico prediction of the folded structure of both aptamers under their reported conditions. The potential of aptasensors for the future development of highly sensitive FB1 testing methods is emphasized.
真菌毒素污染是当前影响全球多种作物和加工产品的一个问题。在多样化的真菌毒素群体中,展青霉素 B1(FB1)因其在食物链中的不良影响而成为一种相关化合物。以前提出的用于定量 FB1 的常规分析方法包括 LC-MS、HPLC-FLD 和 ELISA,而新方法则整合了不同的传感平台和荧光标记试剂,并结合了抗体。然而,这些方法可能昂贵、耗时且需要经验。适体(ssDNA)是克服常规分析方法一些缺点的有前途的替代品,其通过与靶标特异性结合的高亲和力已在各种设计中得到利用,达到了有利的检测限(LOD)。到目前为止,已经报道了两种针对 FB1 的适体,并且已经探索了它们的修饰和缩短序列,以成功进行目标定量。在过去八年的时间里,我们进行了一次系统的综述,基于主成分分析对基于适体的 FB1 技术与色谱、免疫和其他分析方法进行了比较。我们还根据报告的条件对这两种适体的折叠结构进行了计算机预测。强调了适体传感器在未来开发高灵敏度 FB1 测试方法方面的潜力。