National Collaborative Innovation Center for Nuclear Waste and Environmental Safety, School of National Defence Science & Technology, Southwest University of Science and Technology, Mianyang 621010, P. R. China.
Beijing Key Laboratory of Diagnostic and Traceability Technologies for Food Poisoning, Beijing Center for Disease Prevention and Control, Beijing 100013, P. R. China.
Anal Chem. 2021 Apr 27;93(16):6544-6550. doi: 10.1021/acs.analchem.1c00723. Epub 2021 Apr 15.
As a new psychoactive substance, abuse of fentanyl (FTN) is currently spreading around the world, resulting in an urgent need of on-site and rapid analytical methods for detection of FTN. Here, we present a synergistic recognition strategy for rapid, cost-effective, selective, sensitive, and visual colorimetric detection of FTN by taking advantage of Rose Bengal (RB) as the specific probe. This assay is based on the halogen- and hydrogen-bonding interactions between them, generating a charge transfer and accompanying a red shift in the RB absorption band as well as color change from red to purple. The utility of the present visual colorimetric assay is demonstrated in aqueous solution, diluted urine, and domestic sewage samples. A detection limit of 0.7 mg·L in aqueous solution is achieved, and the naked-eye detection of FTN is also realized in different real matrices within 6 min. Moreover, this method is insusceptible to interference from various substances (other opioids, cutting agents of street drugs, FTN precursors, amino acids, and small-molecular amines). Additionally, we successfully fabricate a smartphone-based portable device to determine FTN, which is appropriate for field tests. The present work not only provides the first visual assay for FTN but also reveals the molecular structure-property relationship, which will guide the design and development of various probes for recognizing FTN.
作为一种新的精神活性物质,芬太尼(FTN)的滥用正在全球范围内蔓延,因此迫切需要现场和快速的分析方法来检测 FTN。在这里,我们利用玫瑰红(RB)作为特定探针,提出了一种协同识别策略,用于快速、经济高效、选择性、灵敏和可视化比色检测 FTN。该测定法基于它们之间的卤键和氢键相互作用,产生电荷转移,并伴随 RB 吸收带的红移以及颜色从红色变为紫色的变化。该可视化比色测定法在水溶液、稀释尿液和生活污水样品中的实用性得到了证明。在水溶液中达到了 0.7mg·L 的检测限,并且在 6 分钟内可以在不同的实际基质中实现 FTN 的肉眼检测。此外,该方法不受各种物质(其他阿片类药物、街头毒品的切割剂、FTN 前体、氨基酸和小分子胺)的干扰。此外,我们成功地制作了一种基于智能手机的便携式设备来测定 FTN,适用于现场测试。本工作不仅为 FTN 提供了首个可视化测定法,而且揭示了分子结构-性质关系,这将指导识别 FTN 的各种探针的设计和开发。