| Literature DB >> 32580128 |
Lingliang Long1, Yuanyuan Han2, Xiangqi Yuan2, Siyu Cao2, Weiguo Liu2, Qian Chen2, Kun Wang3, Zhixiang Han4.
Abstract
Cyanide is a highly toxic anion. Nonetheless, many food plants could produce endogenous cyanide, which causes great danger to human health. Thus, monitoring cyanide in food samples is critically significant. Herein, we rationally developed the first ratiometric near-infrared fluorescent probe for sensing cyanide in food samples. The probe displayed noticeable fluorescence in near-infrared region. Moreover, upon treatment with cyanide, the probe exhibited highly selective and sensitive ratiometric fluorescence response, with limit of detection determined to be 0.075 μM and limit of quantification determined to be 0.25 μM. The ratios of fluorescent intensities at 519 and 688 nm (I519/I688) was linear with added cyanide concentrations from 0 to 80 μM. The relative standard deviations for repeatability and reproducibility varied from 0.55 to 8.94 and from 1.17 to 9.46, respectively. Significantly, probe Hy has been successfully applied for monitoring cyanide in various food samples, such as almonds, sprouting potatoes, and bamboo shoots.Entities:
Keywords: Cyanide; Fluorescent probe; NIR fluorescence; Ratiometric fluorescence; Test strip
Year: 2020 PMID: 32580128 DOI: 10.1016/j.foodchem.2020.127359
Source DB: PubMed Journal: Food Chem ISSN: 0308-8146 Impact factor: 7.514