College of Chemistry, Henan Joint International Research Laboratory of Green Construction of Functional Molecules and Their Bioanalytical Applications, Zhengzhou Key Laboratory of Functional Nanomaterial and Medical Theranostic, Food Laboratory of Zhongyuan, Zhengzhou University, Zhengzhou 450001, China.
Key Laboratory of Food Safety Quick Testing and Smart Supervision Technology for State Market Regulation, Henan Province Food Inspection Research Institute, Zhengzhou 450001, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Oct 15;319:124566. doi: 10.1016/j.saa.2024.124566. Epub 2024 May 31.
Nitrite (NO) widely exists in our daily diet, and its excessive consumption can lead to detrimental effects on the human central nervous system and an elevated risk of cancer. The fluorescence probe method for the determination of nitrite has developed rapidly due to its simplicity, rapidity and sensitivity. Despite establishing various nitrite sensing platforms to ensure the safety of foods and drinking water, the simultaneous achievement of rapid, specific, affordable, visualizing, and on-site nitrite detection remains challenging. Here, we designed a novel fluorescent probe by using Rhodamine 800 as the fluorescent skeleton and 5-aminoindole as the specific reaction group to solve this problem. The probe shows a maximal fluorescence emission at 602 nm, thereby avoiding background emission interference when applied to food samples. Moreover, this unique probe exhibited excellent sensing capabilities for detecting nitrite. These included: a rapid response time within 3 min, a noticeable color change that the naked eye can observe, a low detection limit of 13.8 nM, and a remarkable selectivity and specificity to nitrite. Besides that, the probe can detect nitrite quantitatively in barreled drinking water, ham sausage, and pickles samples, with good recoveries ranging from 89.0 % to 105.8 %. More importantly, based on the probe fixation and signal processing technology, a portable and smart sensing platform was fabricated and made convenient and rapid analysis the content of NO in real samples possible. The results obtained in this work provide a new strategy for the design of high-performance nitrite probes and feasible technology for portable, rapid and visual detection of nitrite, and this probe holds the potential as a practical tool for alleviating concern regarding nitrite levels.
亚硝酸盐(NO)广泛存在于我们的日常饮食中,过量摄入会对人体中枢神经系统造成有害影响,并增加癌症风险。由于其简单、快速和灵敏,用于测定亚硝酸盐的荧光探针方法得到了迅速发展。尽管已经建立了各种亚硝酸盐传感平台来确保食品和饮用水的安全,但同时实现快速、特异、经济、可视化和现场亚硝酸盐检测仍然具有挑战性。在这里,我们设计了一种新型荧光探针,以罗丹明 800 为荧光骨架,以 5-氨基吲哚为特异性反应基团来解决这个问题。探针在 602nm 处显示出最大的荧光发射,从而避免了在应用于食品样品时的背景发射干扰。此外,这种独特的探针对亚硝酸盐的检测表现出了优异的传感能力。这些包括:在 3 分钟内快速响应,肉眼可观察到明显的颜色变化,检测限低至 13.8nM,以及对亚硝酸盐的显著选择性和特异性。此外,该探针可以定量检测桶装饮用水、火腿肠和泡菜样品中的亚硝酸盐,回收率在 89.0%至 105.8%之间。更重要的是,基于探针固定化和信号处理技术,制作了一种便携式智能传感平台,方便、快速地分析了实际样品中 NO 的含量。这项工作提供了一种设计高性能亚硝酸盐探针的新策略,以及一种用于便携式、快速和可视化检测亚硝酸盐的可行技术,该探针有望成为缓解人们对亚硝酸盐水平担忧的实用工具。