首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >A novel molecularly imprinted method with computational simulation for the affinity isolation and knockout of baicalein from Scutellaria baicalensis
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A novel molecularly imprinted method with computational simulation for the affinity isolation and knockout of baicalein from Scutellaria baicalensis

机译:一种具有计算机模拟的分子印迹新方法,用于黄and中黄ical素的亲和力分离和敲除

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摘要

A novel molecularly imprinted polymer (MIP) was synthesized by precipitation polymerization with baicalein (BAI) as the template and used as solid-phase extraction (SPE) adsorbent, aiming at the affinity isolation and selective knockout of BAI from Scutellaria baicalensis Georgi (SB). We used computational simulation to predict the optimal functional monomer, polymerization solvent and molar ratio of template to functional monomer. Characterization and performance tests revealed that MIP exhibited uniform spherical morphology, rapid binding kinetics, and higher adsorption capacity for BAI compared with nonimprinted polymer (NIP). The application of MIP in SPE coupled with high-performance liquid chromatography to extract BAI from SB showed excellent recovery (94.3%) and purity (97.0%). Not only the single BAI compound, but also the BAI-removed SB extract was obtained by one-step process. This new method is useful for isolation and knockout of key bioactive compounds from herbal medicines. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:以黄ical素(BAI)为模板,通过沉淀聚合合成了一种新型分子印迹聚合物(MIP),并用作固相萃取(SPE)吸附剂,目的是从黄Ge中的BAI进行亲和分离和选择性敲除。我们使用计算模拟来预测最佳功能单体,聚合溶剂以及模板与功能单体的摩尔比。表征和性能测试表明,与非印迹聚合物(NIP)相比,MIP具有均匀的球形形态,快速的结合动力学和对BAI的更高吸附能力。 MIP在SPE中的应用加上高效液相色谱法从SB中提取BAI表现出优异的回收率(94.3%)和纯度(97.0%)。通过一步法不仅获得了单一的BAI化合物,而且还获得了去除BAI的SB提取物。这种新方法可用于从草药中分离和敲除关键的生物活性化合物。版权所有(c)2015 John Wiley&Sons,Ltd.

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