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Recognition of 5-fluorouracil by thermosensitive magnetic surface molecularly imprinted microspheres designed using a computational approach

机译:通过使用计算方法设计的热敏磁性表面分子印迹微球的识别5-氟尿嘧啶

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摘要

Thermosensitive magnetic surface molecularly imprinted polymer microspheres based on thermosensitive monomer n-isopropylacrylamide (NIPAM) are applied for the recognition of 5-fluorouracil (5-FU). A computational analysis is used to predict the interaction sites between 5-FU and NIPAM, the stoichiometry of the synthesis procedure, and the affinity of imprinted cavities toward 5-FU. Due to hydrogen bond interactions, a stable complex configuration of 5-FU and NIPAM shows a binding energy of -46.50 kJ/mol confirming the suitability of imprinting 5-FU into thermosensitive polymer network. After optimization, the appropriate stoichiometry of 5-FU to NIPAM is set to 1:4 during the preparation process. The simulated imprinted cavities show affinity toward 5-FU, with a binding energy of -112.24 kJ/mol. A preliminary experimental evaluation for the drug recognition of thermosensitive magnetic surface molecularly imprinted polymer microspheres is made, obtaining an adsorption capacity of 21.72 mg/g at 25 degrees C. Pseudo-second-order kinetics well describes the adsorption process. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45468.
机译:热敏磁性表面分子印迹基于热敏单体N-异丙基丙烯酰胺(NIPAM)聚合物微球体适用于识别5-氟尿嘧啶(5-FU)的。计算分析用于预测5-FU和NIPAM,合成过程的化学计量,和印迹腔的朝向5-FU的亲和力之间的相互作用位点。由于氢键相互作用,5-FU的稳定的复合物结构和NIPAM节目-46.50结合能千焦/摩尔确认压印5-FU到热敏聚合物网络的适用性。在制备过程4:优化后,5-FU对NIPAM的适当化学计量被设置为1。模拟的印迹腔表现出对5-FU的亲和力,与-112.24千焦/摩尔的结合能。用于药物识别热敏磁性表面分子印迹聚合物微球的初步实验评价制成,在25℃下的伪二阶动力学获得的21.72毫克/ g的吸附容量以及描述了吸附过程。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017年,134,45468。

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