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Protecting Group-Free Synthesis of Glycopolymer-Type Amphiphilic Macromonomers and Their Use for the Preparation of Carbohydrate-Decorated Polymer Particles

机译:糖聚合物型两亲大分子单体的无保护基合成及其在糖修饰聚合物颗粒制备中的应用

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摘要

Polymer particles modified with carbohydrates on their surfaces are of significant interest, because their specific recognition abilities to biomolecules are valuable for developing promising materials in biomedical fields. Carbohydrate-decorated core-shell polymer particles are expected to be efficiently prepared by dispersion polymerization using a glycopolymer-based amphiphilic macromonomer as both a polymeric steric stabilizer and a monomer. To create glycopolymer-type macromonomers, we propose a new strategy combining living cationic polymerization of an alkynyl-functionalized vinyl ether (VE), and the click reaction for the preparation of glycopolymers having a polymerizable terminal group, and investigate their dispersion copolymerization with styrene for generating carbohydrate-decorated polymer particles. This study deals with (i) the synthesis of block copolymer-type amphiphilic macromonomers bearing a methacryloyl group at the α-terminus, and pendant alkynyl groups by living cationic polymerization of alkynyl-substituted VE (VEEP), (ii) the derivatization of maltose-carrying macromonomers by click chemistry of the pendant alkynyl groups of the precursor macromonomers with maltosyl azide without any protecting/deprotecting processes, and (iii) the preparation of maltose-decorated (Mal-decorated) polymer particles through the dispersion copolymerization of glycopolymer-type macromonomers with styrene in polar media. Moreover, this study concerns the specific interactions of the resultant polymer particles with the lectin concanavalin A (Con A).
机译:在表面上用碳水化合物改性的聚合物颗粒引起了人们的极大兴趣,因为它们对生物分子的特异性识别能力对于开发生物医学领域中很有前途的材料非常有价值。期望通过使用基于糖聚合物的两亲大分子单体作为聚合物空间稳定剂和单体两者的分散聚合来有效地制备装饰有碳水化合物的核-壳聚合物颗粒。为了创建糖聚合物型大分子单体,我们提出了一种新的策略,该策略结合了炔基官能化乙烯基醚(VE)的活性阳离子聚合和单击反应来制备具有可聚合端基的糖聚合物,并研究了它们与苯乙烯的分散共聚反应。产生装饰有碳水化合物的聚合物颗粒。这项研究涉及(i)通过炔基取代的VE(VEEP)的活性阳离子聚合合成在α-末端带有甲基丙烯酰基和侧链炔基的嵌段共聚物型两亲大分子单体,(ii)麦芽糖的衍生化-前体大分子单体的侧链炔基与麦芽糖基叠氮化物的点击化学进行点击化学合成的大分子单体,没有任何保护/脱保护过程;(iii)通过糖聚合物型分散共聚制备麦芽糖修饰的(Mal修饰的)聚合物颗粒大分子单体与极性介质中的苯乙烯。此外,该研究涉及所得聚合物颗粒与凝集素伴刀豆球蛋白A(Con A)的特定相互作用。

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