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Synthesis of a novel restricted access chiral stationary phase based on atom transfer radical polymerization and click chemistry for the analysis of chiral drugs in biological matrices

机译:基于原子转移自由基聚合和点击化学的新型受限访问手性固定相的合成,用于分析生物基质中的手性药物

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摘要

A novel chiral restricted access material was synthesized via a combination of atom transfer radical polymerization (ATRP) and click chemistry. Poly(2-methyl-3-butyn-2-ol methacrylate) (pMBMA) was grafted onto porous silica gel by a surface-initiated ATRP in order to synthesize an inner layer for β-cyclodextrin (β-CD) immobilization. The azide-modified β-CD was bound to pMBMA by click chemistry. The results demonstrate that click chemistry provides an effective route for the immobilization of β-CD for chiral discrimination. A second ATRP reaction was then used to graft external poly(glycidyl methacrylate) (pGMA) layer onto the silica gel. The external hydrophilic layer was subsequently created by hydrolysis of the epoxy groups of the pGMA. This bi-layer grafted material exhibited both enantioseparation and protein exclusion. It can be used for the efficient separation of chiral compounds in biological samples with direct injection into an HPLC system.
机译:通过原子转移自由基聚合(ATRP)和点击化学的结合,合成了一种新型的手性受限访问材料。通过表面引发的ATRP将聚(2-甲基-3-丁炔-2-醇甲基丙烯酸酯)(pMBMA)接枝到多孔硅胶上,以合成用于固定β-环糊精(β-CD)的内层。通过点击化学将叠氮化物修饰的β-CD与pMBMA结合。结果表明,点击化学为固定β-CD的手性识别提供了一条有效途径。然后使用第二个ATRP反应将外部聚甲基丙烯酸缩水甘油酯(pGMA)层接枝到硅胶上。随后通过水解pGMA的环氧基产生外部亲水层。这种双层接枝的材料表现出对映体分离和蛋白质排斥。直接注入HPLC系统可用于有效分离生物样品中的手性化合物。

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