Fluorescence Polarization Assays for Organic Compounds in Food Safety.

Liliya I Mukhametova, Sergei A Eremin
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Abstract

Elevated concentrations of toxic organic compounds observed in food products pose serious dangers to human health. Both natural and artificial pollutants can cause food contamination. The stages of food production, packaging, transportation, and storage can also largely cause the appearance of undesirable substances in food products. The health consequences of ingesting food containing toxic contaminants range from mild gastroenteritis to deaths resulting from dysfunctional internal organs and neurological syndromes. The World Health Organization (WHO) sets recommendations for the content of such chemicals in food, including a minimum allowable concentration considered safe for human consumption. However, the control of food products from chemical pollutants is necessary. Moreover, fast, sensitive, and inexpensive methods are needed to detect them at the point of need. Currently, immune analysis methods are most widely used to determine pollutants in food. The development of fluorescence polarization immunoassay (FPIA) methods in a competitive format is a powerful and modern tool for detecting organic molecules in various matrices, thereby making FPIA methods useful for food safety applications. Due to the availability of portable devices for measuring the fluorescence polarization signal, FPIA methods can be used at the point of need. The variety of fluorescent labels and recognizing elements (receptors, monoclonal and polyclonal antibodies, and nanobodies) permits fluorescence polarization (FP) assays to detect significantly lower limits of organic substances. The FP assay is a homogeneous, fast, and quantitative method. The development of various formats of FP assays makes them promising in determining food pollutants. This review summarizes publications on FP analyses for detecting organic contaminants (pesticides, hormones, toxins, antibiotics, and other pharmaceuticals) in food products during 2018-2023. Further, it demonstrates the prospects for using this method to determine pollutants at the point of need and for detecting high molecular weight substances, fungi, and bacterial infections during food safety inspections.

食品安全中有机化合物的荧光极化测定。
在食品中观察到的有毒有机化合物浓度升高对人类健康构成严重威胁。天然和人工污染物都可能造成食品污染。食品生产、包装、运输和储存阶段也会在很大程度上导致食品中出现不良物质。摄入含有有毒污染物的食品对健康造成的后果轻则引发肠胃炎,重则导致内脏器官功能失调和神经综合征而死亡。世界卫生组织(WHO)对食品中此类化学物质的含量提出了建议,包括被认为对人类食用安全的最低允许浓度。然而,控制食品中的化学污染物是必要的。此外,还需要快速、灵敏和廉价的方法来在需要时检测这些污染物。目前,最广泛使用的是免疫分析方法来检测食品中的污染物。以竞争形式开发的荧光偏振免疫分析(FPIA)方法是检测各种基质中有机分子的强大而现代化的工具,从而使 FPIA 方法在食品安全应用中大显身手。由于有测量荧光偏振信号的便携式设备,FPIA 方法可在需要时使用。荧光标签和识别元件(受体、单克隆和多克隆抗体以及纳米抗体)的种类繁多,使得荧光偏振(FP)检测法可以大大降低有机物质的检测限。FP 检测法是一种均匀、快速和定量的方法。各种形式的 FP 检测方法的发展使其在检测食品污染物方面大有可为。本综述总结了 2018-2023 年间有关 FP 分析检测食品中有机污染物(农药、激素、毒素、抗生素和其他药物)的出版物。此外,它还展示了使用这种方法在需要时确定污染物以及在食品安全检查期间检测高分子量物质、真菌和细菌感染的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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