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首页> 外文期刊>Journal of Polymer Research >In situ polymerization preparation of chiral molecular imprinting polymers monolithic column for amlodipine and its recognition properties study
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In situ polymerization preparation of chiral molecular imprinting polymers monolithic column for amlodipine and its recognition properties study

机译:氨氯地平手性分子印迹聚合物整体柱的原位聚合制备及其识别性能研究

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摘要

Amlodipine is a first-line therapeutic drug for hypertension and angina pectoris and its vasodilating effect only resides in the S-(-)-enantiomer. But mostly commercial chiral separating matrixes are not capable of enantioseparating of racemic amlodipine. The amlodipine's the chiral molecular imprinting polymers monolithic column (CMIPMC) was firstly and successfully synthesized by in situ molecular imprinting technique, utilizing S-(-)-amlodipine as the template molecule, methacrylic acid (MAA) as a monomer, and the resulting monolithic colunm could be directly integrated into the high performance liquid chromatography (HPLC) systems. The scanning electron microscope (SEM) was employed to identify the micromorphologic features of the obtained polymers. Further, the molecule-special recognition mechanism and special selective absorbent properties for the corresponding template were studied by chromatographic system and Scatchard analysis model, respectively. Meanwhile, the optimized chromatographic conditions for chiral separation of amlodipine enantimoers were established. The results showed the obtained CMIPMC had a high specific affinity and selectivity for the template molecule S-(-)-amlodipine, in which chiral separation of racemic amlodipine was achieved under optimized conditions. The mechanism investigation results showed that two kinds of binding sites prevail in the CMIPMC, besides the molecular shape complementation of template molecular and CMIPMC, hydrogen bond or ionic interaction seem to play an important role in the enantio-selective recognition of the CMIPMC. The research laid fundament for the study of expanding the amlodipine chiral separating medium.
机译:氨氯地平是用于高血压和心绞痛的一线治疗药物,其血管舒张作用仅存在于S-(-)-对映体中。但是大多数商业手性分离基质不能拆分外消旋氨氯地平。以S-(-)-氨氯地平为模板分子,以甲基丙烯酸(MAA)为单体,以原位分子印迹技术成功合成了氨氯地平手性分子印迹聚合物整体柱(CMIPMC)。 colunm可直接集成到高效液相色谱(HPLC)系统中。使用扫描电子显微镜(SEM)来鉴定获得的聚合物的微观形态特征。此外,分别通过色谱系统和Scatchard分析模型研究了相应模板的分子特殊识别机理和特殊选择性吸收性能。同时,建立了氨氯地平对映体手性分离的最佳色谱条件。结果表明,所获得的CMIPMC对模板分子S-(-)-氨氯地平具有较高的特异性亲和力和选择性,其中在优化条件下实现了外消旋氨氯地平的手性分离。机理研究结果表明,CMIPMC中主要存在两种结合位点,除了模板分子和CMIPMC的分子形状互补外,氢键或离子相互作用似乎在CMIPMC的对映选择性识别中起重要作用。该研究为扩大氨氯地平手性分离介质的研究奠定了基础。

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