首页> 外文期刊>Journal of biomaterials applications >Layered hydroxide/polydopamine/hyaluronic acid functionalized magnesium alloys for enhanced anticorrosion, biocompatibility and antithrombogenicity in vascular stents
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Layered hydroxide/polydopamine/hyaluronic acid functionalized magnesium alloys for enhanced anticorrosion, biocompatibility and antithrombogenicity in vascular stents

机译:分层氢氧化物/聚二胺/透明质酸官能化镁合金,用于增强血管支架的防腐,生物相容性和抗诱导性

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摘要

Magnesium alloys are promising cardiovascular stent materials due to the favourable physical properties and complete biodegradability in vivo. However, the rapid degradation, poor cytocompatibility and tendency of thrombogenesis hinder practical clinical applications. In order to solve these problems, a facile and highly efficient strategy of alkali treatment combined with subsequent layer-by-layer assembly was used to fabricate a multifunctional coating. A bottom layer hydroxyl (-OH) with negative charge after alkali treatment first formed a solid bond with magnesium matrix to provide a rough outer surface for the further immobilization of functional biomolecules. Afterwards, polydopamine and hyaluronic acid were successively immobilized on alkali-treated magnesium surface via strong electrostatic adsorption and covalent bonding between carboxyl group of hyaluronic acid and amine or hydroxyl of polydopamine to form magnesium/OH/polydopamine/hyaluronic acid. Hydroxyl significantly improves the corrosion resistance while polydopamine and hyaluronic acid layers act as a further barrier to provide better anticorrosion. A balance between biocompatibility and antithrombogenicity has been achieved by adjusting the content of hyaluronic acid on polydopamine surface. The multifunctional magnesium/OH/polydopamine/hyaluronic acid coating with lower hyaluronic acid concentrations expose more active sites of polydopamine molecules to promote endothelial cell proliferation while retaining the intrinsic antithrombogenic function of hyaluronic acid to offer a potential application for vascular stents.
机译:由于良好的物理性质和体内完全的生物降解性,镁合金是有前途的心血管支架材料。然而,快速降解,血栓形成性差的细胞膜相容性和血栓发生趋势妨碍了实际临床应用。为了解决这些问题,使用与随后的逐层组件结合的碱处理的容易和高效的策略来制造多官能涂层。碱处理后具有负电荷的底层羟基(-OH)首先形成与镁基质的固体键,以提供粗糙的外表面,用于进一步固定功能生物分子。然后,通过透明质酸和聚二胺的羧基与聚二胺的胺或羟基的羧基之间的羧基与羧基之间的羧基和羟基羟肟之间的共价键合,在碱处理的镁表面上连续地固定多碳吡啶和透明质酸。羟基显着提高了耐腐蚀性,而多Dopamine和透明质酸层作为提供更好的防腐的另一个屏障。通过调节透明质酸含量在多斑嗪表面上的含量来实现生物相容性和抗诱导性之间的平衡。具有较低透明质酸浓度的多官能镁/ OH /聚二氨基氨基/透明质酸涂层暴露了更多活性位点的多稗胺分子,以促进内皮细胞增殖,同时保留透明质酸的内在抗血栓形成功能,为血管支架提供潜在的应用。

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