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Chiral separation of amlodipine and its enantiomer on a molecularly imprinted polymer-based stationary phase

机译:氨氯地平及其对映体对分子印迹聚合物的平稳阶段的手性分离

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A new chiral stationary phase for amlodipine (3-ethyl 5-methyl-2 -[(-2-(aminoethoxymethyl)-4-(2-chlorophenyl)-1,4-dihydro-6-methyl-3,5-pyridinedicarboxylate) based on a molecularly imprinted polymer has been prepared by radiation polymerization method and used for chromatographic separation of the chiral enantiomers. The effects on the separation of mobile phase and flow rate were investigated, and the optimum conditions for HPLC were shown to be: mobile phase, chloroform; flow rate, 0.3 ml min~(-1); at room temperature. The results has shown that the amlodipine-imprinted polymer was capable of recognizing the enantiomeric difference between the template and its R-enantiomer, whereas the non-imprinted and thermal polymerization polymer have no chiral recognition ability for the enantiomers.
机译:氨氯莨菪碱的新手性固定相(3-乙基5-甲基-2 - [( - 2-(氨基乙氧基甲基)-4-(2-氯苯基)-1,4-二氢-6-甲基-3,5-吡啶二羧酸盐)基于分子印迹聚合物通过辐射聚合方法制备并用于对手性对映体的色谱分离。研究了对流动相和流速分离的影响,并且HPLC的最佳条件显示为:流动相,氯仿;流量,0.3 ml min〜(-1);在室温下。结果表明,氨氯地平印迹聚合物能够识别模板和其R-映体之间的对映异构差异,而非印记热聚合聚合物对对映体没有手性识别能力。

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