School of Food and Biological Engineering, Jiangsu University, Zhenjiang, P. R. China.
College of Food and Biological Engineering, Jimei University, Xiamen, P. R. China.
Compr Rev Food Sci Food Saf. 2023 Sep;22(5):3732-3764. doi: 10.1111/1541-4337.13218. Epub 2023 Aug 7.
The misuse of chemicals in agricultural systems and food production leads to an increase in contaminants in food, which ultimately has adverse effects on human health. This situation has prompted a demand for sophisticated detection technologies with rapid and sensitive features, as concerns over food safety and quality have grown around the globe. The rare earth ion-doped upconversion nanoparticle (UCNP)-based sensor has emerged as an innovative and promising approach for detecting and analyzing food contaminants due to its superior photophysical properties, including low autofluorescence background, deep penetration of light, low toxicity, and minimal photodamage to the biological samples. The aim of this review was to discuss an outline of the applications of UCNPs to detect contaminants in food matrices, with particular attention on the determination of heavy metals, pesticides, pathogenic bacteria, mycotoxins, and antibiotics. The review briefly discusses the mechanism of upconversion (UC) luminescence, the synthesis, modification, functionality of UCNPs, as well as the detection principles for the design of UC biosensors. Furthermore, because current UCNP research on food safety detection is still at an early stage, this review identifies several bottlenecks that must be overcome in UCNPs and discusses the future prospects for its application in the field of food analysis.
农业系统和食品生产中化学物质的滥用导致食品中的污染物增加,最终对人类健康产生不良影响。由于对食品安全和质量的担忧在全球范围内不断增加,因此需要具有快速和灵敏特点的复杂检测技术。基于稀土离子掺杂上转换纳米粒子(UCNP)的传感器因其优越的光物理性质,包括低自发荧光背景、光的深穿透、低毒性和对生物样品的最小光损伤,已成为检测和分析食品污染物的一种创新且有前途的方法。本综述旨在讨论 UCNP 在检测食品基质中污染物的应用概述,特别关注重金属、农药、病原菌、真菌毒素和抗生素的测定。本文简要讨论了上转换(UC)发光的机制、UCNP 的合成、修饰、功能,以及 UC 生物传感器设计的检测原理。此外,由于当前食品安全检测领域的 UCNP 研究仍处于早期阶段,因此本综述确定了 UCNP 必须克服的几个瓶颈,并讨论了其在食品分析领域应用的未来前景。