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Covalent imprinted polymer for selective and rapid enrichment of ractopamine by a noncovalent approach

机译:通过非共价方法选择性快速富集莱克多巴胺的共价印迹聚合物

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摘要

A novel molecularly imprinted polymer (MIP) for the separation and concentration of ractopamine (RAC) was prepared by a covalent imprinting approach and the template was removed successfully by hydrolysis, so that four carboxylic acid groups were left in the cavities and could specifically rebind RAC through noncovalent interaction: hydrogen bonding. The conditions for synthesis of the MIP were optimized during the polymerization process, and a molar ratio of template–functional monomer complexes to cross-linker of 1:3 was confirmed. The adsorption capacity of the MIP was 4.1-fold that of the nonimprinted polymer, and the adsorption reaction reached equilibrium after 25 min at 50 mg L-1 concentration. The results of the competitive adsorption test showed that the MIPs had specific recognition ability for the analyte RAC. In addition, the important factors affecting the efficiency of the method which was developed using the MIPs as a solid-phase sorbent for separation and determination of RAC combined with high-performance liquid chromatography with fluorescence detection were optimized. Under the optimum experimental conditions, the linear range of the calibration curve in the method was 0.05-5 μg L-1 (R 2 = 0.98) and the limit of detection (signal-to-noise ratio of 3) was 0.01 μg L-1. The proposed method was applied to determination of RAC in spiked feedstuffs and urine samples, with recoveries ranging from 74.17 to 114.46% and relative standard deviation (n = 3) below 4.55 in all cases.
机译:通过共价印迹法制备了一种用于分离和浓缩莱克多巴胺(RAC)的新型分子印迹聚合物(MIP),并成功地通过水解除去了模板,从而在空腔中留下了四个羧酸基团,可以特异性地重新结合RAC通过非共价相互作用:氢键。在聚合过程中优化了MIP的合成条件,并确定了模板功能单体配合物与交联剂的摩尔比为1:3。 MIP的吸附容量是非印迹聚合物的4.1倍,在50 mg L -1 浓度下25 min后吸附反应达到平衡。竞争性吸附试验的结果表明,MIP对分析物RAC具有特定的识别能力。此外,还优化了影响该方法效率的重要因素,该方法是使用MIPs作为固相吸附剂开发的,用于分离和测定RAC,结合高效液相色谱和荧光检测。在最佳实验条件下,该方法校准曲线的线性范围为0.05-5μgL -1 (R 2 = 0.98),检出限为( 3)的信噪比为0.01μgL -1 。该方法用于加标饲料和尿液样品中RAC的测定,回收率在74.17至114.46%之间,所有情况下的相对标准偏差(n = 3)均低于4.55。

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