Key Laboratory for Analytical Science of Food Safety and Biology of MOE, Fujian Provincial Key Lab of Analysis and Detection for Food Safety, College of Chemistry , Fuzhou University , Fuzhou , Fujian 350116 , China.
China National Center for Food Safety Risk Assessment , Beijing 100022 , China.
ACS Sens. 2018 Oct 26;3(10):2145-2151. doi: 10.1021/acssensors.8b00705. Epub 2018 Oct 3.
Azodicarbonamide (ADA) in flour products can be converted into carcinogenic biurea and semicarbazide hydrochloride after baking. Thus, it is mandatory to determine ADA in flour. We herein developed a colorimetric method for the rapid and visual detection of ADA in flour based on glutathione (GSH)-induced gold nanoparticles (AuNPs) aggregation and specific reaction between ADA and GSH. The GSH can react to AuNPs via Au-SH covalent bond to form a network structure, which leads to AuNPs aggregation to produce color change, whereas ADA can specifically react with GSH to lead to the coupling of two GSH molecules, which makes GSH lose a -SH group and thus decreases the aggregation degree of AuNPs induced by GSH. This provided a platform for field-portable colorimetric detection of ADA. The colorimetric sensor can be used to detect as little as 0.33 μM (38.3 ppb) of ADA by naked eye observation and 0.23 μM (26.7 ppb) of ADA by spectrophotometry within 2 h. The method was successfully used to detect ADA in flour with a recovery of 91-104% and a relative standard deviation (RSD) < 6%. The visual detection limit of sensor is lower than the ADA limitation in flour (45 mg/kg), which makes the sensor a potential approach for the instrument-free visual and on-site detection of ADA in flour.
面粉制品中的偶氮甲酰胺(ADA)在烘焙后会转化为致癌的双氰胺和氨基脲盐酸盐。因此,有必要对面粉中的 ADA 进行测定。本研究基于谷胱甘肽(GSH)诱导金纳米粒子(AuNPs)聚集以及 ADA 与 GSH 之间的特异性反应,开发了一种快速可视化检测面粉中 ADA 的比色法。GSH 可通过 Au-SH 共价键与 AuNPs 反应,形成网络结构,导致 AuNPs 聚集产生颜色变化,而 ADA 可特异性地与 GSH 反应,导致两个 GSH 分子偶联,使 GSH 失去一个 -SH 基团,从而降低 GSH 诱导的 AuNPs 聚集程度。这为现场便携比色法检测 ADA 提供了一个平台。通过肉眼观察,比色传感器可检测到低至 0.33 μM(38.3 ppb)的 ADA,通过分光光度法可检测到低至 0.23 μM(26.7 ppb)的 ADA,检测时间均在 2 h 内。该方法成功用于检测面粉中的 ADA,回收率为 91-104%,相对标准偏差(RSD)<6%。传感器的目视检测限低于面粉中 ADA 的限量(45 mg/kg),这使得该传感器成为一种无需仪器、用于可视化和现场检测面粉中 ADA 的潜在方法。