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基于多器官衰竭的真菌毒素纳米传感器通过电化学和光学方法进行食品质量和安全评估。

MOF-Based Mycotoxin Nanosensors for Food Quality and Safety Assessment through Electrochemical and Optical Methods.

机构信息

Department of Analytical Chemistry, Faculty of Chemistry, University of Tabriz, Tabriz 51666-16471, Iran.

Department of Inorganic Chemistry, Faculty of Chemistry, University of Tabriz, Tabriz 51666-16471, Iran.

出版信息

Molecules. 2022 Nov 3;27(21):7511. doi: 10.3390/molecules27217511.

Abstract

Mycotoxins in food are hazardous for animal and human health, resulting in food waste and exacerbating the critical global food security situation. In addition, they affect commerce, particularly the incomes of rural farmers. The grave consequences of these contaminants require a comprehensive strategy for their elimination to preserve consumer safety and regulatory compliance. Therefore, developing a policy framework and control strategy for these contaminants is essential to improve food safety. In this context, sensing approaches based on metal-organic frameworks (MOF) offer a unique tool for the quick and effective detection of pathogenic microorganisms, heavy metals, prohibited food additives, persistent organic pollutants (POPs), toxins, veterinary medications, and pesticide residues. This review focuses on the rapid screening of MOF-based sensors to examine food safety by describing the main features and characteristics of MOF-based nanocomposites. In addition, the main prospects of MOF-based sensors are highlighted in this paper. MOF-based sensing approaches can be advantageous for assessing food safety owing to their mobility, affordability, dependability, sensitivity, and stability. We believe this report will assist readers in comprehending the impacts of food jeopardy exposure, the implications on health, and the usage of metal-organic frameworks for detecting and sensing nourishment risks.

摘要

食品中的真菌毒素对动物和人类健康构成危害,导致食物浪费,并使严峻的全球粮食安全形势恶化。此外,它们还影响商业,特别是农村农民的收入。这些污染物的严重后果需要采取全面的消除策略,以保障消费者安全和法规合规。因此,制定这些污染物的政策框架和控制策略对于提高食品安全至关重要。在这种情况下,基于金属-有机框架(MOF)的传感方法为快速有效检测病原微生物、重金属、禁用食品添加剂、持久性有机污染物(POPs)、毒素、兽药和农药残留提供了独特的工具。本综述重点介绍了基于 MOF 的传感器的快速筛选,通过描述基于 MOF 的纳米复合材料的主要特点和特性来检查食品安全。此外,本文还强调了基于 MOF 的传感器的主要前景。基于 MOF 的传感方法由于其移动性、可负担性、可靠性、灵敏度和稳定性,可能有利于评估食品安全。我们相信,本报告将帮助读者理解暴露于食品危害的影响、对健康的影响,以及金属-有机框架在检测和感知营养风险方面的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc44/9654459/7f991dfc7920/molecules-27-07511-g001.jpg

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