Progress in nanomaterials-based fluorescent assays of microcystins in seafood and aquaculture supply chains

IF 15.1 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY Trends in Food Science & Technology Pub Date : 2024-04-16 DOI:10.1016/j.tifs.2024.104490
Fengjiao He , Chao Nie , Sha Liu , Guojian Wu , Yizhong Shen , Nannan Qiu , Yongning Wu , Xin Liu
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Abstract

Background

Microcystins (MCs) is toxic substances that may affect the safety and quality of seafood and aquatic products through water contamination, thus posing a potential threat to both human health and the ecosystem. When MCs exists in water, it can lead to contamination of aquatic plants and animals, which can affect other organisms in the food chain. Therefore, monitoring and controlling the level of MCs in water can ensure that seafood and aquatic products do not contain harmful substances, thereby safeguarding the health and safety of consumers. It also ensures that the quality of aquatic products meets hygiene standards and improves the market competitiveness of the products.

Scope and approach

This article reviews the application of different fluorescence nanomaterials in the assays of MCs. In addition, the mechanism of fluorescence determination in MCs is introduced, including photoinduced electron transfer (PET), fluorescence resonance energy transfer (FRET), and inner-filter effect (IFE). Finally, we discussed the level of development and limitations of existing fluorescent nanotechnologies and suggested future possibilities in the detection of MCs.

Key finds and conclusions

Fluorescence methods based on different nanomaterials can rapidly and accurately determine MCs in aqueous solution-related matrices, but the complexity of the environments relevant to the seafood and aquaculture chain limits the practical performance. The future development of multifunctional nanomaterials is needed to achieve a more stable and efficient portable method for the detection of MCs.

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基于纳米材料的海产品和水产养殖供应链中微囊藻毒素荧光检测技术的进展
背景微囊藻毒素(MCs)是一种有毒物质,可能会通过水污染影响海产品和水产品的安全和质量,从而对人类健康和生态系统构成潜在威胁。当 MCs 存在于水中时,会导致水生动植物受到污染,从而影响食物链中的其他生物。因此,监测和控制水中的 MCs 含量可确保海鲜和水产品不含有害物质,从而保障消费者的健康和安全。本文综述了不同荧光纳米材料在 MCs 检测中的应用。此外,还介绍了 MCs 荧光测定的机理,包括光诱导电子转移(PET)、荧光共振能量转移(FRET)和内过滤器效应(IFE)。最后,我们讨论了现有荧光纳米技术的发展水平和局限性,并提出了未来检测 MCs 的可能性。主要发现和结论基于不同纳米材料的荧光方法可以快速准确地测定水溶液相关基质中的 MCs,但海产品和水产养殖链相关环境的复杂性限制了其实用性能。未来需要开发多功能纳米材料,以实现更稳定、更高效的便携式 MCs 检测方法。
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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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