Regulation Mechanism of ssDNA Aptamer in Nanozymes and Application of Nanozyme-Based Aptasensors in Food Safety.

IF 4.7 2区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Foods Pub Date : 2022-02-14 DOI:10.3390/foods11040544
Lijun Wang, Hong Zhou, Haixia Hu, Qin Wang, Xianggui Chen
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Abstract

Food safety issues are a worldwide concern. Pathogens, toxins, pesticides, veterinary drugs, heavy metals, and illegal additives are frequently reported to contaminate food and pose a serious threat to human health. Conventional detection methods have difficulties fulfilling the requirements for food development in a modern society. Therefore, novel rapid detection methods are urgently needed for on-site and rapid screening of massive food samples. Due to the extraordinary properties of nanozymes and aptamers, biosensors composed of both of them provide considerable advantages in analytical performances, including sensitivity, specificity, repeatability, and accuracy. They are considered a promising complementary detection method on top of conventional ones for the rapid and accurate detection of food contaminants. In recent years, we have witnessed a flourishing of analytical strategies based on aptamers and nanozymes for the detection of food contaminants, especially novel detection models based on the regulation by single-stranded DNA (ssDNA) of nanozyme activity. However, the applications of nanozyme-based aptasensors in food safety are seldom reviewed. Thus, this paper aims to provide a comprehensive review on nanozyme-based aptasensors in food safety, which are arranged according to the different interaction modes of ssDNA and nanozymes: aptasensors based on nanozyme activity either inhibited or enhanced by ssDNA, nanozymes as signal tags, and other methods. Before introducing the nanozyme-based aptasensors, the regulation by ssDNA of nanozyme activity via diverse factors is discussed systematically for precisely tailoring nanozyme activity in biosensors. Furthermore, current challenges are emphasized, and future perspectives are discussed.

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纳米酶中 ssDNA Aptamer 的调控机制及基于纳米酶的 Aptasensors 在食品安全中的应用。
食品安全问题是全世界关注的问题。病原体、毒素、杀虫剂、兽药、重金属和非法添加剂污染食品的报道屡见不鲜,对人类健康构成严重威胁。传统的检测方法难以满足现代社会食品发展的要求。因此,迫切需要新型快速检测方法对大量食品样本进行现场快速筛查。由于纳米酶和适配体的非凡特性,由它们组成的生物传感器在分析性能方面具有相当大的优势,包括灵敏度、特异性、可重复性和准确性。在快速准确地检测食品污染物方面,它们被认为是传统检测方法之外的一种很有前途的补充检测方法。近年来,基于适配体和纳米酶的食品污染物检测分析策略蓬勃发展,尤其是基于单链 DNA(ssDNA)调节纳米酶活性的新型检测模式。然而,基于纳米酶的灵敏传感器在食品安全方面的应用却鲜有综述。因此,本文旨在对食品安全中基于纳米酶的灵敏度传感器进行全面综述,并根据 ssDNA 与纳米酶的不同作用模式进行了排列:基于纳米酶活性被 ssDNA 抑制或增强的灵敏度传感器、纳米酶作为信号标签的灵敏度传感器以及其他方法。在介绍基于纳米酶的灵敏传感器之前,系统地讨论了 ssDNA 通过各种因素对纳米酶活性的调节,以便在生物传感器中精确定制纳米酶的活性。此外,还强调了当前面临的挑战,并讨论了未来的前景。
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来源期刊
Foods
Foods Immunology and Microbiology-Microbiology
CiteScore
7.40
自引率
15.40%
发文量
3516
审稿时长
15.83 days
期刊介绍: Foods (ISSN 2304-8158) is an international, peer-reviewed scientific open access journal which provides an advanced forum for studies related to all aspects of food research. It publishes reviews, regular research papers and short communications. Our aim is to encourage scientists, researchers, and other food professionals to publish their experimental and theoretical results in as much detail as possible or share their knowledge with as much readers unlimitedly as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. There are, in addition, unique features of this journal: Ÿ manuscripts regarding research proposals and research ideas will be particularly welcomed Ÿ electronic files or software regarding the full details of the calculation and experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material Ÿ we also accept manuscripts communicating to a broader audience with regard to research projects financed with public funds
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