Trinh Thi Ngoc Diep, Nguyen Hanh An, Thi Nguyen Pham Anh, Nam Nguyen Nhat, Tran Nguyen Khoi Song, Trinh Kieu The Loan
School of Engineering & Technology, Tra Vinh University, Tra Vinh City 87000, Vietnam.
Institute of Food and Biotechnology, Can Tho University, Can Tho City 94000, Vietnam.
Micromachines (Basel). 2024 Dec 18;15(12):1509. doi: 10.3390/mi15121509.
The increased demand for consuming seafood has made seafood production undergo a rapid period of growth. However, seafood has a high risk of contamination from harmful microorganisms and marine toxins which can cause health problems for humans consuming it. Concerning this issue, monitoring seafood safety has become a center of attention for researchers, and developing effective methods for detecting contamination in seafood has become a critical research field. In this context, biosensors have served as a promising approach to monitor seafood contamination. Compared to conventional methods, biosensors have some key benefits such as high sensitivity, selectivity, portability, and user-friendly operation. Along with significant advances in biosensors, processes of seafood monitoring can be simplified and performed outside the laboratory. In this review article, we describe the mechanisms of two main types of biosensors regarding electrochemical and optical biosensors. The current reports within the last five years on the application of these biosensors for seafood monitoring are also summarized.
对海鲜消费需求的增加使海鲜生产经历了快速增长期。然而,海鲜受到有害微生物和海洋毒素污染的风险很高,这会给食用它的人类带来健康问题。关于这个问题,监测海鲜安全已成为研究人员关注的焦点,开发检测海鲜污染的有效方法已成为一个关键研究领域。在这种背景下,生物传感器已成为监测海鲜污染的一种有前途的方法。与传统方法相比,生物传感器具有一些关键优势,如高灵敏度、选择性、便携性和用户友好的操作。随着生物传感器的重大进展,海鲜监测过程可以简化并在实验室外进行。在这篇综述文章中,我们描述了两种主要类型的生物传感器(即电化学生物传感器和光学生物传感器)的机制。还总结了过去五年内关于这些生物传感器在海鲜监测中的应用的现有报告。