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首页> 外文期刊>Macromolecular Research >Preparation of molecularly imprinted polymers using photocross-linkable polyphosphazene and selective rebinding of amino acids
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Preparation of molecularly imprinted polymers using photocross-linkable polyphosphazene and selective rebinding of amino acids

机译:使用可光交联的聚磷腈和氨基酸的选择性重新结合制备分子印迹聚合物

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摘要

A photocrosslinkable polyphosphazene was used for molecular imprinting. We synthesized polyphosphazene (3) having urea groups for complexation withN-carbobenzyloxyglycin (Z-Gly-OH, template) and chalcone groups for cross-linking reaction. As substituents, 4-hydroxychalcone (1) andN-(4-hydroxyphenyl)-N’-ethylurea (2) were prepared. Choloro groups of poly(dichlorophosphazene) were replaced by the sequential treatment with sodium salts of compounds 1 and 2, and trifluoroethanol. The template molecule was complexed with the urea groups on the polymer chains via hydrogen bonding. A thin polymer film was prepared by casting a solution of the complex of polymer 3 and the template in dimethylformamide on a quartz cell and irradiated with 365 nm UV light to yield a cross-linked film with a thickness of about 16 ?m. The template molecules in the film were removed by Soxhlet extraction with methanol/acetic acid. The control polymer film was prepared in the same manner for the preparation of the imprinted polymer film, except that the template and triethylamine were omitted. In the rebinding test, the imprinted film exhibited much higher recognition ability for the template than the control polymer. We also investigated the specific recognition ability of the imprinted polymer for the template and its structural analogues. The rebinding tests were conducted using Z-Glu-OH, Z-Asp(OtBu)-OH, and Z-Glu-OMe. The imprinted film showed higher specific recognition ability for the template and the lowest response for Z-Asp(OtBu)-OH.
机译:使用可光交联的聚磷腈进行分子印迹。我们合成了具有脲基团的聚磷腈(3),该脲基团可与N-羰基苄氧基甘氨酸(Z-Gly-OH,模板)络合,而查尔酮基团可进行交联反应。作为取代基,制备了4-羟基查耳酮(1)和N-(4-羟基苯基)-N’-乙基脲(2)。用化合物1和2的钠盐和三氟乙醇的顺序处理来代替聚二氯磷腈的氯基。模板分子通过氢键与聚合物链上的脲基络合。通过将聚合物3和模板的配合物在二甲基甲酰胺中的溶液浇铸在石英池上,并用365 nm紫外光照射,制成厚度约为16μm的交联膜,从而制成聚合物薄膜。膜中的模板分子通过用甲醇/乙酸进行索氏提取而除去。除了省略模板和三乙胺以外,以与制备印迹聚合物膜相同的方式制备对照聚合物膜。在重新粘合测试中,压印薄膜对模板的识别能力比对照聚合物高得多。我们还研究了印迹聚合物对模板及其结构类似物的特异性识别能力。使用Z-Glu-OH,Z-Asp(OtBu)-OH和Z-Glu-OMe进行重新结合测试。印迹膜对模板具有较高的特异性识别能力,对Z-Asp(Ot Bu)-OH的响应最低。

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