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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Layer by layer assembly of sulfonic poly(ether sulfone) as heparin-mimicking coatings: scalable fabrication of super-hemocompatible and antibacterial membranes
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Layer by layer assembly of sulfonic poly(ether sulfone) as heparin-mimicking coatings: scalable fabrication of super-hemocompatible and antibacterial membranes

机译:磺化聚醚砜作为肝素模拟涂层的逐层组装:可扩展制备超血液相容性和抗菌膜

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摘要

In this study, to approach the scalable fabrication of super-hemocompatible and antibacterial membranes, surface engineered 3D heparin-mimicking coatings were designed by layer by layer (LBL) assembly of water-soluble heparin-mimicking polymer (WHP) and quaternized chitosan (QC). The low cost and scalable WHP was synthesized by a combination of polycondensation and post-carboxylation method, and the antibacterial QC was prepared by a two-step quaternization reaction. Then, the as-prepared negatively charged WHP and positively charged QC were used to conduct the LBL assembly on the widely used poly(ether sulfone) (PES) membrane surface to prepare heparin-mimicking modified membrane. The results indicated that the assembled heparin-mimicking coating nanofilms exhibited 3D porous morphology. The systematic blood compatibility and antithrombotic evaluation revealed that the functionalized membrane owned prolonged clotting times and greatly suppressed platelet adhesion and activation; further contacting activation detection (TAT and PF-4) and complement activation (C3a and C5a) experiments indicated that the heparin-mimicking membranes had lower blood activation compared to the pristine membrane. The cell observations demonstrated that the surface assembled heparin-mimicking nanofilms showed superior performances in endothelial cells adhesion and growth than the pure PES membrane. The results of the antibacterial study indicated that the QC contained coating exhibited significant inhibition ability for both Escherichia coli and Staphlococcus aureus. In general, the LBL assembled heparin-mimicking coatings conferred the functionalized PES membranes with integrated blood compatibility, cytocompatibility and antibacterial property for multi-applications, which may forward the fabrication and application of heparin-mimicking biomedical devices.
机译:在这项研究中,为了实现可扩展制造的超血液相容性和抗菌膜,表面工程设计的3D肝素模拟涂层是通过水溶性仿肝素聚合物(WHP)和季铵化壳聚糖(QC)的逐层组装(LBL)设计的)。通过缩聚反应和后羧化反应的方法合成了低成本,可扩展的WHP,并通过两步季铵化反应制备了抗菌QC。然后,使用已制备的带负电的WHP和带正电的QC在广泛使用的聚醚砜(PES)膜表面上进行LBL组装,以制备模仿肝素的改性膜。结果表明组装的模仿肝素的涂层纳米膜表现出3D多孔形态。系统的血液相容性和抗血栓形成评估表明,功能化膜可延长凝血时间,并大大抑制血小板粘附和活化。进一步的接触活化检测(TAT和PF-4)和补体活化(C3a和C5a)实验表明,与原始膜相比,模仿肝素的膜的血液活化度更低。细胞观察表明,表面组装的模仿肝素的纳米膜在内皮细胞粘附和生长方面表现出比纯PES膜优越的性能。抗菌研究的结果表明,含有QC的涂层对大肠杆菌和金黄色葡萄球菌均表现出显着的抑制能力。通常,LBL组装的模仿肝素的涂层赋予功能化的PES膜以综合的血液相容性,细胞相容性和抗菌特性,可用于多种应用,这可能会推动仿肝素生物医学设备的制造和应用。

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