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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >A surface molecularly imprinted electrospun polyethersulfone (PES) fiber mat for selective removal of bilirubin
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A surface molecularly imprinted electrospun polyethersulfone (PES) fiber mat for selective removal of bilirubin

机译:表面分子印迹电纺聚醚砜(PES)纤维垫,用于选择性去除胆红素

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摘要

Electrospinning has been widely recognized as a facile and scalable method for fabricating fibrous materials, which could be used as adsorption materials because of their high surface area. Surface molecular imprinting based on adsorption materials has shown excellent adsorption performance, including large binding capacity, a fast adsorption rate and selective adsorption. In this study, electro-spinning and surface molecular imprinting were used together to prepare a surface molecularly imprinted electrospun polyethersulfone (PES) fiber mat (PES@MIP). The mat was prepared by self-polymerization of dopamine (as a functional monomer) on the electrospun PES fiber mat surface in weak alkaline aqueous solution in the presence of a template, bilirubin. The results indicated that a polydopamine coating was formed on the PES fiber mat surface successfully, and the template bilirubin could be removed. The adsorption performance of PES@MIP was investigated in detail, showing a higher adsorption capacity (184.24 mg g(-1)), faster adsorption kinetics and a short adsorption equilibrium time of 2 h, as well as a good selectivity toward bilirubin with an imprinting factor (IF) of 1.4. In addition, the selectivity coefficient (alpha) of PES@MIP toward cholesterol and testosterone could be calculated to be 1.11 and 1.43. Also, both adsorption kinetic and isotherm models were used to analyze the adsorption process. Besides, the dynamic adsorption indicated that PES@MIP adsorbed much more bilirubin, and had a shorter equilibrium time of about 40 minutes for bilirubin removal. In addition, PES@MIP had a much lower hemolysis ratio and exhibited a little anticoagulant property compared to the original PES fiber mat. Therefore, this work provided a new strategy to build practical PES@MIP for bilirubin adsorption.
机译:静电纺丝已被广泛认识为纤维材料的容易和可扩展的方法,该方法可以用作由于其高表面积而用作吸附材料。基于吸附材料的表面分子印迹显示出优异的吸附性能,包括较大的粘合能力,快速吸附速率和选择性吸附。在该研究中,将电纺和表面分子印迹一起使用,以制备表面分子印迹电纺聚醚砜(PES)纤维垫(PES @ MIP)。通过在模板,胆红素存在下,通过在弱碱性水溶液中的电瓶PES纤维垫表面上的多巴胺(作为官能单体)自聚聚酰胺(作为官能单体)的自聚聚。结果表明成功地在PES纤维垫表面上形成了聚二胺涂层,并且可以除去模板胆红素。详细研究了PES @ MIP的吸附性能,显示出较高的吸附容量(184.24mg(-1)),更快的吸附动力学和2小时的短吸附平衡时间,以及对胆红素的良好选择性印记因子(IF)为1.4。另外,可以计算PES @ mip的选择性系数(α)朝向胆固醇和睾酮和1.43。此外,吸附动力学和等温模型用于分析吸附过程。此外,动态吸附表明,PES @ MIP吸附了更多的胆红素,并且胆红素去除的较短平衡时间为约40分钟。此外,与原始PES纤维垫相比,PES @ MIP具有更低的溶血率,并表现出一点抗凝血性能。因此,这项工作提供了一种新的策略来构建实用的PES @ MIP进行胆红素吸附。

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