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保障公众健康:使用基于纳米颗粒的传感器进行食品掺假的先进检测

Safeguarding Public Health: Advanced Detection of Food Adulteration Using Nanoparticle-Based Sensors.

作者信息

Thiruvengadam Muthu, Kim Jung-Tae, Kim Won-Ryeol, Kim Ji-Ye, Jung Bum-Su, Choi Hee-Jin, Chi Hee-Youn, Govindasamy Rajakumar, Kim Seung-Hyun

机构信息

Department of Crop Science, College of Sanghuh Life Science, Konkuk University, Seoul, Republic of Korea.

Planning and Coordination Division, National Institute of Crop Science, Rural Development Administration (RDA), Jellabuk-do, Republic of Korea.

出版信息

Crit Rev Anal Chem. 2024 Sep 13:1-21. doi: 10.1080/10408347.2024.2399202.

Abstract

Food adulteration, whether intentional or accidental, poses a significant public health risk. Traditional detection methods often lack the precision required to detect subtle adulterants that can be harmful. Although chromatographic and spectrometric techniques are effective, their high cost and complexity have limited their widespread use. To explore and validate the application of nanoparticle-based sensors for enhancing the detection of food adulteration, focusing on their specificity, sensitivity, and practical utility in the development of resilient food safety systems. This study integrates forensic principles with advanced nanomaterials to create a robust detection framework. Techniques include the development of nanoparticle-based assays designed to improve the detection specificity and sensitivity. In addition, sensor-based technologies, including electronic noses and tongues, have been assessed for their capacity to mimic and enhance human sensory detection, offering objective and reliable results. The use of nanomaterials, including functionalized nanoparticles, has significantly improved the detection of trace amounts of adulterants. Nanoparticle-based sensors demonstrate superior performance in terms of speed, sensitivity, and selectivity compared with traditional methods. Moreover, the integration of these sensors into food safety protocols shows promise for real-time and onsite detection of adulteration. Nanoparticle-based sensors represent a cutting-edge approach for detecting food adulteration, and offer enhanced sensitivity, specificity, and scalability. By integrating forensic principles and nanotechnology, this framework advances the development of more resilient food-safety systems. Future research should focus on optimizing these technologies for widespread application and adapting them to address emerging adulteration threats.

摘要

食品掺假,无论是故意的还是偶然的,都构成重大的公共卫生风险。传统的检测方法往往缺乏检测可能有害的细微掺假物所需的精度。尽管色谱和光谱技术很有效,但它们的高成本和复杂性限制了其广泛应用。为了探索和验证基于纳米颗粒的传感器在增强食品掺假检测方面的应用,重点关注其在构建有弹性的食品安全系统中的特异性、灵敏度和实际效用。本研究将法医原理与先进的纳米材料相结合,创建了一个强大的检测框架。技术包括开发旨在提高检测特异性和灵敏度的基于纳米颗粒的检测方法。此外,还评估了包括电子鼻和电子舌在内的基于传感器的技术模拟和增强人类感官检测的能力,以提供客观可靠的结果。使用包括功能化纳米颗粒在内的纳米材料,显著提高了对痕量掺假物的检测能力。与传统方法相比,基于纳米颗粒的传感器在速度、灵敏度和选择性方面表现出卓越的性能。此外,将这些传感器整合到食品安全协议中,有望实现对掺假的实时现场检测。基于纳米颗粒的传感器是检测食品掺假的前沿方法,具有更高的灵敏度、特异性和可扩展性。通过整合法医原理和纳米技术,该框架推动了更具弹性的食品安全系统的发展。未来的研究应侧重于优化这些技术以实现广泛应用,并使其适应应对新出现的掺假威胁。

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