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首页> 外文期刊>Biomacromolecules >Synthesis and Biological Evaluation of Fucoidan-Mimetic Glycopolymers through Cyanoxyl-Mediated Free-Radical Polymerization
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Synthesis and Biological Evaluation of Fucoidan-Mimetic Glycopolymers through Cyanoxyl-Mediated Free-Radical Polymerization

机译:氰基酚介导的自由基聚合法合成拟葡聚糖类糖醇聚合物及其生物学评价

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The sulfated marine polysaccharide fucoidan has been reported to have health benefits ranging from antivirus and anticancer properties to modulation of high blood pressure. Hence, they could enhance the biological function of materials for biomedical applications, However, the incorporation of fucoidan into biomaterials has been difficult, possibly due to its complex structure and lack of suitable functional groups for covalent anchoring to biomaterials. We have developed an approach for a rapid synthesis of fucoidan-mimetic glycopolymer chains through cyanoxyl-mediated free-radical polymerization, a method suitable for chain-end functionalizing and subsequent linkage to biomaterials. The resulting sulfated and nonsulfated methacrylamido α-L-fucoside glycopolymers' fucoidan-mimetic properties were studied in HSV-1 infection and platelet activation assays. The sulfated glycopolymer showed similar properties to natural fucoidan in inducing platelet activation and inhibiting HSV-1 binding and entry to cells, thus indicating successful syntheses of fucoidan-mimetic glycopolymers.
机译:据报道,硫酸化海洋多糖岩藻依聚糖具有健康益处,从抗病毒和抗癌特性到调节高血压。因此,它们可以增强用于生物医学应用的材料的生物学功能。但是,岩藻依聚糖难以掺入生物材料中,这可能是由于其复杂的结构以及缺乏用于共价锚定至生物材料的合适官能团所致。我们已经开发了一种通过氰氧基介导的自由基聚合快速合成岩藻依聚糖模拟糖聚合物链的方法,该方法适用于链端功能化以及随后与生物材料的连接。在HSV-1感染和血小板活化测定中研究了所得的硫酸化和非硫酸化的甲基丙烯酰胺基α-L-岩藻糖苷糖聚合物的岩藻依聚糖模拟性质。硫酸化的糖聚合物在诱导血小板活化和抑制HSV-1结合和进入细胞方面显示出与天然岩藻依聚糖相似的特性,因此表明岩藻依聚糖模拟糖聚合物的成功合成。

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