Research progress of dual-mode sensing technology strategy based on SERS and its application in the detection of harmful substances in foods

IF 15.1 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Trends in Food Science & Technology Pub Date : 2024-04-10 DOI:10.1016/j.tifs.2024.104487
Linyuan Liu , Yu Wang , Zhaohui Xue , Bo Peng , Xiaohong Kou , Zhixian Gao
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Abstract

Background

Surface Enhanced Raman Scattering (SERS) technology is a fast and highly sensitive optical detection technique for trace detection in food testing and has been developing rapidly. Meanwhile, the application of dual-mode detection technology in food safety is also maturing, where the combination of two sensing modes not only compensates for the shortcomings of a single sensing mode, but also significantly reduces the possibility of false positives and has a lower detection limit. Therefore, it is important to combine SERS with other detection techniques for rapid, accurate and portable detection in food safety.

Scope and methods

This paper describes the progress in the construction of SERS-based dual-mode biosensing technology in recent years and discusses the prospect of its application in the field of food safety. Firstly, it introduces the classification and working principle of SERS-based dual-mode sensing; then it systematically summarizes the latest progress of the application of SERS-based dual-mode sensing detection technology, such as the detection of pathogenic bacteria, biotoxins, drug residues, etc. Also, some of the material choices for constructing SERS dual-mode sensors are summarized. In addition, future opportunities and challenges are presented.

Key findings and conclusions

Emerging SERS-based dual-mode detection technologies show great potential for monitoring harmful substances in food. A part of SERS dual-mode sensor is very promising for rapid detection of food contaminants in the field. At the same time, some emerging materials can be used for SERS substrates. In addition, some technologies can provide a better platform for partial SERS dual-mode sensors to achieve food detection.

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基于 SERS 的双模传感技术策略的研究进展及其在食品中有害物质检测中的应用
背景表面增强拉曼散射(SERS)技术是一种快速、高灵敏度的光学检测技术,可用于食品检测中的痕量检测,发展十分迅速。同时,双模式检测技术在食品安全领域的应用也日趋成熟,两种传感模式的结合不仅弥补了单一传感模式的不足,还大大降低了误报的可能性,并具有更低的检测限。因此,将 SERS 与其他检测技术相结合,对食品安全领域的快速、准确和便携检测具有重要意义。范围和方法 本文介绍了近年来基于 SERS 的双模式生物传感技术的构建进展,并探讨了其在食品安全领域的应用前景。首先介绍了基于 SERS 的双模传感的分类和工作原理;然后系统总结了基于 SERS 的双模传感检测技术的最新应用进展,如致病菌、生物毒素、药物残留等的检测。此外,还总结了构建 SERS 双模传感器的一些材料选择。主要发现和结论基于 SERS 的新兴双模检测技术在监测食品中的有害物质方面显示出巨大的潜力。部分 SERS 双模传感器在现场快速检测食品污染物方面大有可为。同时,一些新兴材料可用于 SERS 基底。此外,一些技术可以为部分 SERS 双模传感器实现食品检测提供更好的平台。
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来源期刊
Trends in Food Science & Technology
Trends in Food Science & Technology 工程技术-食品科技
CiteScore
32.50
自引率
2.60%
发文量
322
审稿时长
37 days
期刊介绍: Trends in Food Science & Technology is a prestigious international journal that specializes in peer-reviewed articles covering the latest advancements in technology, food science, and human nutrition. It serves as a bridge between specialized primary journals and general trade magazines, providing readable and scientifically rigorous reviews and commentaries on current research developments and their potential applications in the food industry. Unlike traditional journals, Trends in Food Science & Technology does not publish original research papers. Instead, it focuses on critical and comprehensive reviews to offer valuable insights for professionals in the field. By bringing together cutting-edge research and industry applications, this journal plays a vital role in disseminating knowledge and facilitating advancements in the food science and technology sector.
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