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Preparation of ellagic acid molecularly imprinted polymeric microspheres based on distillation-precipitation polymerization for the efficient purification of a crude extract

机译:基于蒸馏-沉淀聚合法制备鞣花酸分子印迹聚合物微球以有效纯化粗提物

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摘要

Molecularly imprinted polymeric microspheres with a high recognition ability toward the template molecule, ellagic acid, were synthesized based on distillation-precipitation polymerization. The as-obtained polymers were characterized by scanning electron microscopy, infrared spectroscopy, and thermogravimetric analysis. Static, dynamic, and selective binding tests were adopted to study the binding properties and the molecular recognition ability of the prepared polymers for ellagic acid. The results indicated that the maximum static adsorption capacity of the prepared polymers toward ellagic acid was 37.07 mg/g and the adsorption equilibrium time was about 100 min when the concentration of ellagic acid was 40 mg/mL. Molecularly imprinted polymeric microspheres were also highly selective toward ellagic acid compared with its analogue quercetin. It was found that the content of ellagic acid in the pomegranate peel extract was enhanced from 23 to 86% after such molecularly imprinted solid-phase extraction process. This work provides an efficient way for effective separation and enrichment of ellagic acid from complex matrix, which is especially valuable in industrial production.
机译:基于蒸馏-沉淀聚合反应合成了对模板分子鞣花酸具有高识别能力的分子印迹聚合物微球。通过扫描电子显微镜,红外光谱和热重分析来表征所获得的聚合物。通过静态,动态和选择性结合试验来研究所制备聚合物对鞣花酸的结合性能和分子识别能力。结果表明,当鞣花酸浓度为40 mg / mL时,所制备的聚合物对鞣花酸的最大静态吸附容量为37.07 mg / g,吸附平衡时间为100 min。与类似物槲皮素相比,分子印迹聚合物微球对鞣花酸的选择性也很高。发现通过这种分子印迹固相提取方法,石榴皮提取物中鞣花酸的含量从23%增加到86%。这项工作为从复杂基质中有效分离和富集鞣花酸提供了一种有效途径,这在工业生产中特别有价值。

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