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上转换粒子@FeO@分子印迹聚合物,具有可控的壳厚,可用作高性能荧光探针,用于检测喹诺酮类药物。

Upconversion particle@FeO@molecularly imprinted polymer with controllable shell thickness as high-performance fluorescent probe for sensing quinolones.

机构信息

College of Food Science & Project Engineering, Bohai University, Jinzhou 121013, China.

College of Food Science & Project Engineering, Bohai University, Jinzhou 121013, China.

出版信息

Talanta. 2018 May 1;181:95-103. doi: 10.1016/j.talanta.2018.01.006. Epub 2018 Jan 3.

Abstract

Localized photo-polymerization was ingeniously applied to prepare a multifunctional molecularly imprinted polymer (MIP) fluorescent probe using the "layer-by-layer" assembly of MIP and FeO nanoparticles on NaYF: Yb, Er upconversion particles (MUCPs@MIP). Enrofloxacin was used as the template and chosen as the target molecular during the investigation of the adsorption property. This ternary probe has magnetic and broad-spectrum molecular recognition capability, fast response, and upconversion fluorescence. The results of the fluorescence quenching analysis showed good linear ranges of 1.03nmol/L to 0.28μmol/L for enrofloxacin, 1.69nmol/L to 0.22μmol/L for fleroxacin, 6.92nmol/L to 0.28μmol/L for levofloxacin, 7.54nmol/L to 0.30μmol/L for ciprofloxacin, and 3.90nmol/L to 0.25μmol/L for enoxacin. This probe was further used to determine five quinolones in fish tissues and the recoveries ranging from 90.33% to 108.43% were obtained with relative standard deviation below 5.53%. This work offers a new and general strategy to synthesize a MUCPs@MIP upconversion fluorescence probe with magnetic and selective molecular recognition capability for rapid and accurate sensing of multiple chemical residues in the environment and agri-food products.

摘要

采用局部光聚合的方法,巧妙地制备了一种多功能分子印迹聚合物(MIP)荧光探针,该探针通过 MIP 和 FeO 纳米粒子在 NaYF:Yb, Er 上转换粒子(MUCPs@MIP)上的“层层组装”实现。恩诺沙星被用作模板,并在吸附性能研究中被选为目标分子。这种三元探针具有磁性和广谱分子识别能力、快速响应和上转换荧光。荧光猝灭分析结果表明,恩诺沙星的线性范围为 1.03nmol/L 至 0.28μmol/L,氟罗沙星的线性范围为 1.69nmol/L 至 0.22μmol/L,左氧氟沙星的线性范围为 6.92nmol/L 至 0.28μmol/L,环丙沙星的线性范围为 7.54nmol/L 至 0.30μmol/L,依诺沙星的线性范围为 3.90nmol/L 至 0.25μmol/L。该探针进一步用于测定鱼肉组织中的五种喹诺酮类药物,回收率在 90.33%至 108.43%之间,相对标准偏差低于 5.53%。这项工作为合成具有磁性和选择性分子识别能力的 MUCPs@MIP 上转换荧光探针提供了一种新的通用策略,可用于快速准确地检测环境和农业食品产品中的多种化学残留。

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