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基于分子印迹光聚合与智能手机光学传感的食品中双酚 A 选择性检测

Molecularly imprinted photopolymers combined with smartphone-based optical sensing for selective detection of bisphenol A in foods.

机构信息

Laboratory of Process Engineering and Environment, Faculty of Sciences and Techniques, Hassan II University of Casablanca, 20650, Mohammedia, Morocco.

出版信息

Anal Bioanal Chem. 2024 Apr;416(10):2479-2492. doi: 10.1007/s00216-024-05212-0. Epub 2024 Mar 11.

Abstract

Bisphenol A (BPA), known for its endocrine-disrupting properties and potential to leach into food products, has led to significant food safety concerns. Therefore, the development of sensitive and selective BPA rapid detection methods is crucial. In this study, molecularly imprinted solid-phase extraction coupled to a colorimetric method was adopted for the smartphone-based determination of BPA. The molecularly imprinted polymer (MIP) was prepared via photopolymerization and used as a selective adsorbent material for SPE columns. The solid-phase extraction (SPE) columns with multiple cycles significantly reduced the extraction time to only 30 min. The developed method demonstrates useful sensitivity for BPA (LOD = 30 ppb). Furthermore, BPA migration from plastic packaging was evaluated under different storage conditions, revealing that microwave treatment for 5 min led to BPA release from polycarbonate packaging in juice and basic solutions. The MIP selective extraction/clean-up and smartphone-based optical sensor were successfully applied to BPA standard solutions and complex food samples (e.g., juice and tap water), resulting in reproducible and selective BPA determination (RSD ≤ 6%, n = 3). This rapid and cost-effective method of producing MIPs for BPA offers a promising solution for fast and low-cost sensing for on-site fresh food analysis.

摘要

双酚 A(BPA)因其具有内分泌干扰特性和可能浸出到食品产品中而引起了重大的食品安全问题。因此,开发灵敏和选择性的 BPA 快速检测方法至关重要。在这项研究中,采用分子印迹固相萃取结合比色法,基于智能手机对 BPA 进行了测定。通过光聚合制备了分子印迹聚合物(MIP),并将其用作固相萃取(SPE)柱的选择性吸附材料。具有多循环的固相萃取(SPE)柱显著将萃取时间缩短至仅 30 分钟。所开发的方法对 BPA 具有有用的灵敏度(LOD=30 ppb)。此外,在不同的储存条件下评估了塑料包装中 BPA 的迁移情况,结果表明,微波处理 5 分钟会导致果汁和碱性溶液中聚碳酸酯包装中 BPA 的释放。MIP 选择性萃取/净化和基于智能手机的光学传感器成功应用于 BPA 标准溶液和复杂食品样品(例如,果汁和自来水),实现了重复性和选择性的 BPA 测定(RSD≤6%,n=3)。这种用于 BPA 的 MIP 快速且具有成本效益的生产方法为现场新鲜食品分析提供了快速且低成本的传感解决方案。

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