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鸡卵黄免疫球蛋白(IgY)在食品样品中化学和生物危害物检测方面的免疫分析进展。

Advances in Chicken IgY-Based Immunoassays for the Detection of Chemical and Biological Hazards in Food Samples.

机构信息

College of Veterinary Medicine, China Agricultural University, Beijing Key Laboratory of Detection Technology for Animal-Derived Food Safety, and Beijing Laboratory for Food Quality and Safety, Beijing 100193, People's Republic of China.

出版信息

J Agric Food Chem. 2022 Feb 2;70(4):976-991. doi: 10.1021/acs.jafc.1c06750. Epub 2022 Jan 6.

Abstract

As antibodies are the main biological binder for hazards in food samples, their performance directly determines the sensitivity, specificity, and reproducibility of the developed immunoassay. The overwhelmingly used mammalian-derived antibodies usually suffer from complicated preparation, high cost, frequent bleeding of animals, and sometimes low titer and affinity. Chicken yolk antibody (IgY) has recently attracted considerable attention in the bioanalytical field owing to its advantages in productivity, animal welfare, comparable affinity, and high specificity. However, a broad understanding of the application of IgY-based immunoassay for the detection of chemical and biological hazards in food samples remains limited. Here, we briefly summarized the diversity, structure, and production of IgY including polyclonal and monoclonal formats. Then, a comprehensive overview of the principles, designs, and applications of IgY-based immunoassays for these hazards was reviewed and discussed, including food-borne pathogens, food allergens, veterinary drugs, pesticides, toxins, endocrine disrupting chemicals, etc. Thus, the trend of IgY-based immunoassays is expected, and more IgY types, higher sensitivity, and diversification of recognition-to-signal manners are necessary in the future.

摘要

由于抗体是食品样品中有害物质的主要生物结合物,其性能直接决定了开发的免疫分析的灵敏度、特异性和重现性。目前广泛使用的哺乳动物来源的抗体通常存在制备复杂、成本高、频繁采血以及有时效价和亲和力低等问题。鸡卵黄抗体(IgY)由于其在生产效率、动物福利、可比亲和力和高特异性方面的优势,最近在生物分析领域引起了相当大的关注。然而,对于基于 IgY 的免疫分析在食品样品中化学和生物危害检测中的应用的广泛理解仍然有限。在这里,我们简要总结了 IgY 的多样性、结构和生产,包括多克隆和单克隆形式。然后,综述并讨论了基于 IgY 的免疫分析用于这些危害物的原理、设计和应用,包括食源性病原体、食物过敏原、兽药、农药、毒素、内分泌干扰化学物质等。因此,预计基于 IgY 的免疫分析将呈现出一定的发展趋势,未来需要更多的 IgY 类型、更高的灵敏度以及识别-信号方式的多样化。

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