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硅胶表面接枝诺氟沙星印迹聚合物膜用于选择性固相萃取鱼肉样品中氟喹诺酮类药物。

Grafting of norfloxacin imprinted polymeric membranes on silica surface for the selective solid-phase extraction of fluoroquinolones in fish samples.

机构信息

College of Chemistry and Environmental Science, Hebei University, Key Laboratory of Analytical Science and Technology of Hebei Province, Baoding 071002, China.

出版信息

Talanta. 2012 Jan 30;89:270-5. doi: 10.1016/j.talanta.2011.12.026. Epub 2011 Dec 17.

Abstract

A high-density imprinted polymeric membrane was immobilized on a porous silica-gel support by polymerization of methacrylic acid with vinyl-silanized silica gel for the selective solid-phase extraction (SPE) of norfloxacin (NOR) in fish samples. The imprinted membranes showed high adsorption capacity (423.2 μmol g(-1)), significant selectivity (k=14.64, k'=9.61) and good site accessibility (2h) for NOR. The conditions of SPE were investigated, and water (pH=6), methanol:water (1:1, v/v) and methanol-acetic acid-trifluoroacetic acid (90:9:1, v/v) were selected as the sample solvent, the washing solution and the eluting solution, respectively. Under the optimal SPE condition, three fluoroquinolone residues in fish were separated and detected by an off-line MIP-SPE-HPLC with better clean up and enrichment. The recoveries of norfloxacin, ofloxacin and ciprofloxacin were 89.3-94.8%, 69.3-102.8% and 85-90.5%, respectively, with relative standard deviations lower than 6.5%. The limits of detection (LOD) of the proposed method (S/N=3) were in a range of 2.65-3.65 μg kg(-1), and the limits of quantification (LOQ, S/N=10) were in a range of 8.82-12.16 μg kg(-1).

摘要

一种高密度印迹聚合物膜通过在多孔硅胶载体上聚合甲基丙烯酸与乙烯基硅烷化硅胶来固定,用于选择性固相萃取(SPE)鱼肉样品中的诺氟沙星(NOR)。印迹膜具有高吸附容量(423.2 μmol g(-1))、显著的选择性(k=14.64,k'=9.61)和良好的位点可及性(2h)。SPE 条件进行了考察,分别选择水(pH=6)、甲醇:水(1:1,v/v)和甲醇-乙酸-三氟乙酸(90:9:1,v/v)作为样品溶剂、洗涤溶液和洗脱溶液。在最佳 SPE 条件下,通过离线 MIP-SPE-HPLC 分离和检测了鱼肉中的三种氟喹诺酮残留,具有更好的净化和富集效果。诺氟沙星、氧氟沙星和环丙沙星的回收率分别为 89.3-94.8%、69.3-102.8%和 85-90.5%,相对标准偏差低于 6.5%。该方法(S/N=3)的检测限(LOD)在 2.65-3.65 μg kg(-1)范围内,定量限(LOQ,S/N=10)在 8.82-12.16 μg kg(-1)范围内。

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