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Designing and preparation of novel alkaloid-imprinted membrane with grafting type and its molecular recognition characteristic and permselectivity

机译:新型接枝型生物碱印迹膜的设计与制备及其分子识别特性和选择性

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摘要

A novel polysulfone-based molecularly imprinted membrane (MIM) with graft type (designated as GMIM) was successfully prepared by a combination of film-forming method of immersion-precipitation phase transformation with molecule surface-imprinting technique. The porous asymmetry membrane of chloromethylated polysulfone (CMPSF) was first prepared by a phase inversion method, and then the CMPSF membrane was amination-modified with ethanediamine as reagent, resulting aminated polysulfone membrane AMPSF, on whose surface primary amino groups were contained. Then the graft-polymerization of methacrylic acid (MAA) was realized by initiating of the surface-initiating system of -NH_2/S_2O_8~-, obtaining the grafted membrane PSF-g-PMAA After PSF-g-PMAA membrane adsorbed matrine, the crosslinking reaction of the grafted PMAA was allowed to be carried out with ethylene glycol diglycidyl ether (EGDE) as crosslinker, resulting in the matrine imprinted membrane with graft type, GMIM. The binding characteristics of the imprinted membrane GMIM, the permeability and separation property for matrine were investigated in depth. The experimental results show that the imprinted membrane consists of a thin imprinted layer, a thin skin layer containing channels at nanoscale and a support layer with macroporous structure. The imprinted membrane GMIM has specific recognition selectivity and excellent binding affinity for matrine, and its selectivity coefficient for matrine relative to cytisine is 4.85. More importantly, the imprinted membrane can produce good "gate effect" because of its own structure characteristic, so that it has fine permselectivity for the template, matrine molecule. The separation coefficient of the imprinted membrane GMIM for matrine relative to cytisine as a contrast reaches up to 5.9, displaying the excellent performance of a selectively permeable membrane.
机译:通过沉-沉淀相转化的成膜方法与分子表面压印技术相结合,成功地制备了一种新型的接枝型聚砜基分子印迹膜(MIM)。首先通过相转化法制备氯甲基化聚砜(CMPSF)的多孔不对称膜,然后用乙二胺作为试剂对CMPSF膜进行氨化改性,得到胺化的聚砜膜AMPSF,其表面含有伯氨基。然后通过引发-NH_2 / S_2O_8〜-的表面引发体系实现甲基丙烯酸(MAA)的接枝聚合,得到接枝膜PSF-g-PMAA。PSF-g-PMAA膜吸附苦参碱后,交联。允许用乙二醇二缩水甘油醚(EGDE)作为交联剂进行接枝PMAA的反应,得到带有GMIM接枝型苦参碱的印迹膜。深入研究了印迹膜GMIM的结合特性,苦参碱的渗透性和分离性能。实验结果表明,压印膜由薄的压印层,包含纳米级通道的薄皮层和具有大孔结构的支撑层组成。印迹膜GMIM具有特定的识别选择性和对苦参碱的极佳结合亲和力,其对苦参碱相对于胱氨酸的选择性系数为4.85。更重要的是,印迹膜由于其自身的结构特性而可以产生良好的“门效应”,因此对模板苦参碱分子具有良好的渗透选择性。对比而言,苦参碱印迹膜GMIM相对于胱氨酸的分离系数高达5.9,显示了选择性渗透膜的出色性能。

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