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Mechanism of Molecular Recognition on Tetrapetide-imprinted Monolith by Capillary Electrochromatography

机译:毛细管电色谱法对四肽印迹整体柱的分子识别机理

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A tetrapeptide-imprinted capillary monolithic column was synthesized successfully in the presence of YPLG (Tyr-Pro-Leu-Gly) as template by in situ thermo-initiated polymerization. For exploring the recognition mechanism of molecularly imprinted polymer in a capillary electrochromatography (CEC) mode, YPLG and its structural analogue, YPGL (Tyr-Pro-Gly-Leu), differing in amino acid sequence, were used as model compounds. It is hard work to separate the two tetrapeptides by a simple CEC or a capillary electrophoresis mode due to their similar chemical structures and values of pi. However, the results showed that YPLG could be recognized specially by the imprinted monolith. The separation factor (a) and the resolution (Rs) between YPLG and YPGL were 1.73 and 3.72, respectively. The effects of organic modifier concentration, pH value of buffer, salt concentration of buffer and column temperature on the recognition of YPLG and YPGL were investigated. A non-linear Van't Hoff behavior of the template was observed on a YPLG-imprinted column, which suggested the presence of multiple types of retention mechanisms or multiple types of binding sites. The results showed that the molecular recognition on MIP monolith in the CEC mode mainly derived from hydrogen bonding between YPLG and MIP and three-dimensional structure of the imprinting cavities.
机译:通过YPLG(Tyr-Pro-Leu-Gly)为模板,通过原位热引发聚合成功合成了四肽印迹毛细管整体柱。为了探索在毛细管电色谱(CEC)模式下分子印迹聚合物的识别机理,使用YPLG及其结构类似物YPGL(Tyr-Pro-Gly-Leu)(氨基酸序列不同)作为模型化合物。由于其相似的化学结构和pi值,很难通过简单的CEC或毛细管电泳模式分离两个四肽。然而,结果表明,YPLG可以特别地被印迹的整体识别。 YPLG和YPGL之间的分离因子(a)和分辨率(Rs)分别为1.73和3.72。研究了有机改性剂浓度,缓冲液pH值,缓冲盐浓度和柱温对YPLG和YPGL识别的影响。在YPLG印迹柱上观察到模板的非线性Van't Hoff行为,这表明存在多种类型的保留机制或多种类型的结合位点。结果表明,在CEC模式下,对MIP整体的分子识别主要来自YPLG和MIP之间的氢键和压印腔的三维结构。

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