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首页> 外文期刊>Biomaterials >Carboxyl-ebselen-based layer-by-layer films as potential antithrombotic and antimicrobial coatings.
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Carboxyl-ebselen-based layer-by-layer films as potential antithrombotic and antimicrobial coatings.

机译:基于羧基依布硒啉的逐层薄膜,可作为潜在的抗血栓和抗菌涂层。

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摘要

A carboxyl-ebselen-based layer-by-layer (LbL) film was fabricated by alternatively assembling carboxyl-ebselen immobilized polyethylenimine (e-PEI) and alginate (Alg) onto substrates followed by salt annealing and cross-linking. The annealed films exhibiting significantly improved stability are capable of generating nitric oxide (NO) from endogeneous S-nitrosothiols (RSNOs) in the presence of a reducing agent. The NO generation behaviors of different organoselenium species in solution phase are compared and the annealing mechanism to create stable LbL films is studied in detail. An LbL film coated polyurethane catheter is capable of generating physiological levels of NO from RSNOs even after blood soaking for 24 h, indicating potential antithrombotic applications of the coating. Further, the LbL film is also demonstrated to be capable of reducing living bacterial surface attachment and killing a broad spectrum of bacteria, likely through generation of superoxide (O(2)(.-)) from oxygen. This type of film is expected to have potential application as an antithrombotic and antimicrobial coating for different biomedical device surfaces.
机译:通过将羧基-ebselen固定的聚乙烯亚胺(e-PEI)和藻酸盐(Alg)交替组装到基板上,然后进行盐退火和交联,可以制备基于羧基-ebselen的逐层(LbL)膜。表现出显着改善的稳定性的退火膜能够在还原剂存在下从内源性S-亚硝基硫醇(RSNO)生成一氧化氮(NO)。比较了不同有机硒在溶液相中的NO生成行为,并详细研究了形成稳定LbL薄膜的退火机理。涂有LbL膜的聚氨酯导管即使在血液浸泡24小时后也能够从RSNO生成生理水平的NO,这表明该涂层具有潜在的抗血栓形成作用。此外,LbL膜还被证明能够减少活细菌表面附着并杀死广谱细菌,这很可能是通过氧气产生的超氧化物(O(2)(.-))。预期这种类型的膜具有潜在的应用潜力,可用于不同生物医学设备表面的抗血栓和抗菌涂层。

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