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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Temperature and magnetism bi-responsive molecularly imprinted polymers: Preparation, adsorption mechanism and properties as drug delivery system for sustained release of 5-fluorouracil
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Temperature and magnetism bi-responsive molecularly imprinted polymers: Preparation, adsorption mechanism and properties as drug delivery system for sustained release of 5-fluorouracil

机译:温度和磁场双响应分子印迹聚合物:制备,吸附机理和性能作为5-氟尿嘧啶持续释放的药物递送系统

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摘要

Temperature and magnetism bi-responsive molecularly imprinted polymers (TMMIPs) based on Fe3O4-encapsulating carbon nanospheres were prepared by free radical polymerization, and applied to selective adsorption and controlled release of 5-fluorouracil (5-FU) from an aqueous solution. Characterization results show that the as-synthesized TMMIPs have an average diameter of about 150 nm with a typical core-shell structure, and the thickness of the coating layer is approximately 50 nm. TMMIPs also displayed obvious magnetic properties and thermo-sensitivity. The adsorption results show that the prepared TMMIPs exhibit good adsorption capacity (up to 96.53 mg/g at 25 degrees C) and recognition towards 5-FU. The studies on 5-FU loading and release in vitro suggest that the release rate increases with increasing temperature. Meanwhile, adsorption mechanisms were explored by using a computational analysis to simulate the imprinted site towards 5-FU. The interaction energy between the imprinted site and 5-FU is -112.24 kJ/mol, originating from a hydrogen bond, Van der Waals forces and a hydrophobic interaction between functional groups located on 5-FU and a NIPAM monomer. The electrostatic potential charges and population analysis results suggest that the imprinted site of 5-FU can be introduced on the surface of TMMIPs, confirming their selective adsorption behavior for 5-FU. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过自由基聚合反应制备了基于Fe3O4包裹的碳纳米球的温度和磁性双响应分子印迹聚合物(TMMIPs),并将其应用于水溶液中5-氟尿嘧啶(5-FU)的选择性吸附和控制释放。表征结果表明,所合成的TMMIP具有典型的核-壳结构的平均直径为约150nm,并且涂层的厚度为约50nm。 TMMIP还显示出明显的磁性和热敏性。吸附结果表明,所制备的TMMIPs表现出良好的吸附能力(在25°C时高达96.53 mg / g),并且对5-FU有识别作用。对5-FU体外负载和释放的研究表明,释放速率随温度的升高而增加。同时,通过计算分析探索了对5-FU的印迹部位的吸附机理。印迹位点与5-FU之间的相互作用能为-112.24 kJ / mol,这是由于氢键,范德华力以及位于5-FU和NIPAM单体上的官能团之间的疏水相互作用引起的。静电势电荷和种群分析结果表明,可以将5-FU的印迹位点引入TMMIPs的表面,从而证实了它们对5-FU的选择性吸附行为。 (C)2015 Elsevier B.V.保留所有权利。

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