School of Chemical Engineering , University of Science and Technology Liaoning , Anshan , Liaoning 114051 , People's Republic of China.
Queensland Alliance for Agricultural and Food Innovation (QAAFI) , The University of Queensland , Brisbane 4072 , Australia.
J Agric Food Chem. 2019 Apr 17;67(15):4375-4383. doi: 10.1021/acs.jafc.8b07110. Epub 2019 Mar 25.
The development of new methods for rapid and effective detection of bisulfite (HSO) in food samples and imaging of HSO intake in animals is of significant importance due to the key roles of HSO in food quality assurance and community health. In this work, a new responsive fluorescence probe, EQC, is reported for the quantitative detection of HSO in food samples and visualization of HSO intake in animals. Upon addition of HSO, the UV-vis absorption and red emission of EQC were significantly decreased within 120 s. The changes in absorption and emission spectra of EQC were rationalized by theoretical computations. The proposed reaction mechanism of EQC with HSO was confirmed by high-resolution mass spectrometry (HRMS) and spectroscopic titration measurements. EQC has the advantages of high sensitivity, selectivity (a detection limit of 18.1 nM), and fast response toward HSO, which enable rapid and effective HSO detection in buffer solution. The practical applications of EQC were demonstrated by the detection of HSO in food samples and the imaging of HSO intake in live animals.
由于亚硫酸氢根(HSO)在食品质量保证和公共健康方面的关键作用,开发用于快速有效检测食品样品中亚硫酸氢根(HSO)并对动物体内 HSO 摄入进行成像的新方法具有重要意义。在这项工作中,报道了一种新的响应型荧光探针 EQC,用于定量检测食品样品中的 HSO 并可视化动物体内 HSO 的摄入。加入 HSO 后,EQC 的紫外-可见吸收和红色发射在 120 秒内显著降低。通过理论计算对 EQC 的吸收和发射光谱的变化进行了合理化解释。通过高分辨率质谱(HRMS)和光谱滴定测量证实了 EQC 与 HSO 的反应机理。EQC 具有高灵敏度、选择性(检测限为 18.1 nM)和对 HSO 的快速响应的优点,使其能够在缓冲溶液中快速有效地检测 HSO。通过检测食品样品中的 HSO 和对活体内 HSO 摄入进行成像,证明了 EQC 的实际应用。