Functionalized metal-organic frameworks with biomolecules for sensing and detection applications of food contaminants.

IF 7.3 1区 农林科学 Q1 FOOD SCIENCE & TECHNOLOGY
Huanhuan Li, Arul Murugesan, Muhammad Shoaib, Wei Sheng, Quansheng Chen
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引用次数: 0

Abstract

The increasing demand for toxin-free food, driven by the rise in fast food consumption and changing dietary habits, necessitates advanced and efficient detection methods to address the potential risks associated with contaminated food. Nanomaterial-based detection methods have shown significant promise, particularly using metal-organic frameworks (MOFs) combined with biomolecules. This review article provides an overview of recent advancements in using functionalized metal-organic frameworks (FMOFs) with biomolecules to detect various food contaminants, including heavy metals, antibiotics, pesticides, bacteria, mycotoxins and other chemical contaminants. We discuss the fundamental principles of detecting food contaminants, evaluate existing analytical techniques, and explore the development of biomacromolecule-functionalized MOF-based sensors encompassing colorimetric, optical, electrochemical, and portable variants. The review also examines sensing mechanisms, uses FMOFs as signal probes and carriers for capture probes, and assesses sensitivity. Additionally, we explore the opportunities and challenges in producing FMOFs with biomacromolecules for food contaminant assessment. Future directions include improving sensor sensitivity and specificity, developing more cost-effective production methods, and integrating these technologies into real-world food safety monitoring systems. This work aims to pave the way for innovative and reliable solutions to ensure the safety of our food supply.

具有生物分子的功能化金属有机框架在食品污染物传感和检测方面的应用。
由于快餐消费的增加和饮食习惯的改变,人们对无毒食品的需求日益增长,因此需要先进高效的检测方法来应对与受污染食品相关的潜在风险。基于纳米材料的检测方法前景广阔,特别是使用金属有机框架(MOFs)与生物分子相结合的方法。本综述文章概述了利用功能化金属有机框架(FMOFs)与生物大分子检测各种食品污染物(包括重金属、抗生素、农药、细菌、霉菌毒素和其他化学污染物)的最新进展。我们讨论了检测食品污染物的基本原理,评估了现有的分析技术,并探讨了基于生物大分子功能化 MOF 传感器的开发,包括比色、光学、电化学和便携式变体。本综述还研究了传感机制,将 FMOF 用作信号探针和捕获探针的载体,并评估了灵敏度。此外,我们还探讨了利用生物大分子生产用于食品污染物评估的 FMOF 的机遇和挑战。未来的发展方向包括提高传感器的灵敏度和特异性,开发更具成本效益的生产方法,以及将这些技术集成到现实世界的食品安全监控系统中。这项工作旨在为创新和可靠的解决方案铺平道路,以确保我们的食品供应安全。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
22.60
自引率
4.90%
发文量
600
审稿时长
7.5 months
期刊介绍: Critical Reviews in Food Science and Nutrition serves as an authoritative outlet for critical perspectives on contemporary technology, food science, and human nutrition. With a specific focus on issues of national significance, particularly for food scientists, nutritionists, and health professionals, the journal delves into nutrition, functional foods, food safety, and food science and technology. Research areas span diverse topics such as diet and disease, antioxidants, allergenicity, microbiological concerns, flavor chemistry, nutrient roles and bioavailability, pesticides, toxic chemicals and regulation, risk assessment, food safety, and emerging food products, ingredients, and technologies.
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