环糊精为基础的吸附剂可持续样品制备聚焦于食品分析

IF 6.2
Edvaldo Vasconcelos Soares Maciel , Natalia Gabrielly Pereira dos Santos , Deyber Arley Vargas Medina , Fernando Mauro Lanças
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引用次数: 0

摘要

食品分析对于确保人类健康和安全至关重要,因为它涉及到杀虫剂、重金属、真菌毒素、过敏原和微生物污染物等污染物的检测。这些分析物的有效提取和预浓缩对于实现准确分析和符合监管标准至关重要。然而,食物基质是复杂的,包括固体、半固体和液体成分、脂肪、蛋白质、碳水化合物、维生素、矿物质以及其他有机和无机化合物。因此,分离目标分析物是一项具有挑战性的任务。开发有效的样品制备技术对于克服这种缺点至关重要。探索新的和改进的吸附剂材料是开发选择性和更环保的样品制备方法的先进策略之一。环糊精(CDs)在这一主题中发挥着重要作用。CDs可以通过其外部亲水结构和中心疏水腔与各种化合物相互作用。CDs的外部羟基的功能化允许在溶解度、空腔开口和与其他吸附材料的结合方面进行改变。这篇综述讨论了CDs作为一种强大的吸附材料在食品和营养品分析中的现状。它涵盖了基于CD的吸附剂制备的原理。它探索将它们与其他材料相结合,为固相萃取技术创造定制的吸附剂,包括分散的、基于填充装置的和基于涂层装置的方法。此外,我们还提供了对食品监测和营养分析相关应用的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cyclodextrins-based sorbents for sustainable sample preparation focusing on food analysis

Food analysis is critical for ensuring human health and safety, as it involves the detection of contaminants such as pesticides, heavy metals, mycotoxins, allergens, and microbial contaminants. Effective extraction and pre-concentration of these analytes are crucial to achieve accurate analysis and comply with regulatory standards. However, food matrices are complex, including solid, semi-solid, and liquid components, fats, proteins, carbohydrates, vitamins, minerals, and other organic and inorganic compounds. Therefore, isolation of target analytes is a challenging task. Developing efficient sample preparation techniques is essential to overcome such a downside. Exploring new and improved sorbent materials is one of the advanced strategies for developing selective and greener sample preparation approaches. Cyclodextrins (CDs) play a significant role in this topic. CDs can interact with various compounds with their external hydrophilic structure and central hydrophobic cavity. The functionalization of CDs' external hydroxyl groups allows for modifications in solubility, cavity opening, and bonding with other sorbent materials. This review discusses the current status of CDs as a robust sorbent material in food- and nutraceutical analysis. It covers the principles of CD-based sorbent preparation. It explores combining them with other materials, creating customized sorbents for solid-phase extraction techniques, including dispersive, packed devices-based, and coated devices-based methods. Moreover, we offer insights into relevant applications focusing on food surveillance and nutraceutical analysis.

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