Hong Liping, Pan Mingfei, Xie Xiaoqian, Liu Kaixin, Yang Jingying, Wang Shan, Wang Shuo
State Key Laboratory of Food Nutrition and Safety, Tianjin University of Science and Technology, Tianjin 300457, China.
Key Laboratory of Food Nutrition and Safety, Ministry of Education of China, Tianjin University of Science and Technology, Tianjin 300457, China.
Foods. 2021 Oct 27;10(11):2598. doi: 10.3390/foods10112598.
Food allergies have seriously affected the life quality of some people and even endangered their lives. At present, there is still no effective cure for food allergies. Avoiding the intake of allergenic food is still the most effective way to prevent allergic diseases. Therefore, it is necessary to develop rapid, accurate, sensitive, and reliable analysis methods to detect food allergens from different sources. Aptamers are oligonucleotide sequences that can bind to a variety of targets with high specificity and selectivity, and they are often combined with different transduction technologies, thereby constructing various types of aptamer sensors. In recent years, with the development of technology and the application of new materials, the sensitivity, portability, and cost of fluorescence sensing technology have been greatly improved. Therefore, aptamer-based fluorescence sensing technology has been widely developed and applied in the specific recognition of food allergens. In this paper, the classification of major allergens and their characteristics in animal and plant foods were comprehensively reviewed, and the preparation principles and practical applications of aptamer-based fluorescence biosensors are summarized. In addition, we hope that this article can provide some strategies for the rapid and sensitive detection of allergens in food matrices.
食物过敏严重影响了一些人的生活质量,甚至危及生命。目前,食物过敏仍没有有效的治愈方法。避免摄入致敏食物仍然是预防过敏性疾病最有效的方法。因此,有必要开发快速、准确、灵敏和可靠的分析方法,以检测不同来源的食物过敏原。适配体是能够以高特异性和选择性结合多种靶标的寡核苷酸序列,它们常与不同的传感技术相结合,从而构建出各种类型的适配体传感器。近年来,随着技术的发展和新材料的应用,荧光传感技术的灵敏度、便携性和成本都有了很大提高。因此,基于适配体的荧光传感技术在食物过敏原的特异性识别方面得到了广泛的发展和应用。本文全面综述了动植物性食物中主要过敏原的分类及其特点,并总结了基于适配体的荧光生物传感器的制备原理及实际应用。此外,我们希望本文能为快速灵敏检测食品基质中的过敏原提供一些策略。