Courtois Julien, Fischer Gerd, Sellergren Börje, Irgum Knut
Analytical Chemistry, Umeå University, 901 87 Umeå, Sweden.
J Chromatogr A. 2006 Mar 17;1109(1):92-9. doi: 10.1016/j.chroma.2005.12.014. Epub 2005 Dec 27.
Monolithic molecularly imprinted polymers (mMIPs) have been synthesized in a novel way using a trimethylolpropane trimethacrylate core material photo-polymerized in situ in a 100 microm I.D. UV-transparent capillary and further photo-grafted to create specific cavities in the grafted layer. This polymerization technique allows the imprints to be directly created on the surface of the material using a minimum amount of template. Three different anaesthetics of similar structures (bupivacaine, mepivacaine and S-ropivacaine) were used as model target molecules to synthesize sample enrichment media. Hence, various mMIPs have been prepared and evaluated on a micro-system against each analyte in order to test the retention properties and cross-selectivities of the materials. The retention factors were determined and compared with the non-imprinted reference column (mNIP), yielding high imprinting factors together with good selectivity factors between the three analytes. A study with a pure enantiomeric target was carried out to assess the degree of stereo-specific imprinting for injection of racemic mixtures. Finally, one column was imprinted with an equimolar mixture of all three anaesthetics to provide further comprehension of the retention mechanism and accredit the possibility of using the material as a sample enrichment entity. Scanning electron microscopy (SEM), nitrogen absorption/desorption (BET) and mercury intrusion porosimetry were used to characterize the monolith and the mMIPs properties. Nuclear magnetic resonance (NMR) has been used to assess the similarities between the mMIP and mNIP.
整体式分子印迹聚合物(mMIPs)已通过一种新颖的方法合成,该方法使用三羟甲基丙烷三甲基丙烯酸酯作为核心材料,在内径为100微米的紫外透明毛细管中原位光聚合,然后进一步光接枝以在接枝层中形成特定的空腔。这种聚合技术允许使用最少的模板在材料表面直接形成印记。三种结构相似的不同麻醉剂(布比卡因、甲哌卡因和S-罗哌卡因)被用作模型目标分子来合成样品富集介质。因此,制备了各种mMIPs,并在微系统上针对每种分析物进行评估,以测试材料的保留特性和交叉选择性。测定了保留因子,并与非印迹参考柱(mNIP)进行比较,得到了高印迹因子以及三种分析物之间良好的选择性因子。开展了一项针对纯对映体目标的研究,以评估外消旋混合物注射的立体特异性印迹程度。最后,用所有三种麻醉剂的等摩尔混合物对一根柱子进行印迹,以进一步理解保留机制,并认可将该材料用作样品富集实体的可能性。使用扫描电子显微镜(SEM)、氮吸附/解吸(BET)和压汞法来表征整体柱和mMIPs的性能。核磁共振(NMR)已用于评估mMIP和mNIP之间的相似性。