College of Chemistry, Nankai University, Tianjin 300071, China.
J Chromatogr A. 2010 Nov 12;1217(46):7198-207. doi: 10.1016/j.chroma.2010.09.035. Epub 2010 Sep 19.
A novel restricted access-molecularly imprinted material (RA-MIP) with selectivity for sulfonamides was synthesized using initiator-transfer agent-terminator (iniferter) method, a "living"/controlled radical polymerization technique. The material was prepared by grafting two layers with different functions on the silica support. To perform a "grafting from" polymerization, iniferter was immobilized on the surface of silica. The internal sulfamethazine imprinted polymer and the external poly(glycidyl methacrylate) [poly(GMA)] were then grafted successively. The hydrophilic structures were formed on the external layer of the material by the hydrolysis of the linear poly(GMA) for protein removal. The result has shown that this restricted access-MIP grafted silica (RA-MIP-SG) not only has the selectivity for the template and its analog, but also has the ability of exclusion for bovine serum albumin (BSA). It indicated that the material possesses both properties of molecularly imprinted polymer (MIP) and restricted access material (RAM). Using RA-MIP-SG as pre-column, a column-switching HPLC method was established for the determination of sulfonamides in bovine milk. Direct sample injection was performed in the analysis, which provides a convenient analytical procedure. Good linearity in the range of 2-400 ng mL(-1) (R>0.998) has been obtained for seven sulfonamides in the study. The recoveries of all the analytes at three concentration levels are between 93% and 107% with the RSD<8.0%. The limits of quantification and limits of detection are less than or equal to 2.7 ng mL(-1) and 0.8 ng mL(-1) respectively. It demonstrated this RA-MIP-SG can be applied in sample extraction and clean-up for the determination of sulfonamides in bovine milk by direct injection and column-switching HPLC with good efficiency and reliability.
一种新型的磺胺类选择性受限通道分子印迹材料(RA-MIP),采用引发转移终止剂(iniferter)法合成,这是一种“活性”/可控自由基聚合技术。该材料是通过在二氧化硅载体上接枝两层不同功能的层来制备的。为了进行“从接枝聚合”,将引发转移终止剂(iniferter)固定在二氧化硅表面上。然后,相继接枝内部磺胺甲噁唑印迹聚合物和外部聚(甲基丙烯酸缩水甘油酯)[poly(GMA)]。通过线性聚(甲基丙烯酸缩水甘油酯)[poly(GMA)]的水解,在材料的外层形成亲水结构,用于去除蛋白质。结果表明,这种受限通道-MIP 接枝二氧化硅(RA-MIP-SG)不仅对模板及其类似物具有选择性,而且对牛血清白蛋白(BSA)具有排除能力。这表明该材料同时具有分子印迹聚合物(MIP)和受限通道材料(RAM)的特性。使用 RA-MIP-SG 作为预柱,建立了一种用于测定牛奶中磺胺类药物的柱切换 HPLC 方法。在分析中直接进行样品注射,提供了一种方便的分析程序。在所研究的七种磺胺类药物中,在 2-400ng mL(-1)(R>0.998)范围内获得了良好的线性关系。在三个浓度水平下,所有分析物的回收率在 93%到 107%之间,RSD<8.0%。定量限和检测限均小于或等于 2.7ng mL(-1)和 0.8ng mL(-1)。这表明,这种 RA-MIP-SG 可以应用于牛奶中磺胺类药物的直接注射和柱切换 HPLC 样品提取和净化,具有良好的效率和可靠性。