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HEMOCOMPATIBILITY AND BIOCOMPATIBILITY OF ANTIBACTERIAL BIOMIMETIC HYBRID FILMS

机译:抗菌型生物混合膜的血液相容性和生物相容性

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摘要

In previous work, we developed novel antibacterial hybrid coatings based on dextran containing dispersed Ag NPs (~5nm, DEX-Ag) aimed to offer dual protection against two of the most common complications associated with implant surgery, infections and rejection of the implant. However, their blood-material interactions are unknown. In this study, we assess the hemocompatibility and biocompatibility of DEX-Ag using fresh blood and two cell lines of the immune system, monocytes (THP-1 cells) and macrophages (PMA-stimulated THP-1 cells). Glass, polyurethane (PU) and bare dextran (DEX) were used as reference surfaces. PU, DEX and DEX-Ag exhibited non-hemolytic properties. Relative to glass (100%), platelet attachment on PU, DEX and DEX-Ag was 15%, 10% and 34%, respectively. Further, we assessed cell morphology and viability, pro-inflammatory cytokines expression (TNF-α and IL-1β), pro-inflammatory eicosanoid expression (Prostaglandin E2, PGE2) and release of reactive oxygen species (ROS, superoxide and H2O2) following incubation of the cells with the surfaces. The morphology and cell viability of THP-1 cells were not affected by DEX-Ag whereas DEX-Ag minimized spreading of PMA-stimulated THP-1 cells and caused a reduction in cell viability (16% relative to other surfaces). Although DEX-Ag slightly enhanced release of ROS, the expression of pro-inflammatory cytokines remained minimal with similar levels of PGE2, as compared to the other surfaces studied. These results highlight low toxicity of DEX-Ag and hold promise for future applications in vivo.
机译:在以前的工作中,我们开发了基于葡聚糖的新型抗菌混合涂层,该涂层包含分散的Ag NP(〜5nm,DEX-Ag),旨在提供双重保护,以防止与植入物手术,感染和植入物排斥相关的两种最常见并发症。但是,它们的血液-物质相互作用是未知的。在这项研究中,我们使用新鲜血液和免疫系统的两种细胞系单核细胞(THP-1细胞)和巨噬细胞(PMA刺激的THP-1细胞)评估DEX-Ag的血液相容性和生物相容性。玻璃,聚氨酯(PU)和裸露的右旋糖酐(DEX)用作参考表面。 PU,DEX和DEX-Ag表现出非溶血性。相对于玻璃(100%),血小板在PU,DEX和DEX-Ag上的附着率分别为15%,10%和34%。此外,我们在孵育后评估了细胞的形态和活力,促炎性细胞因子表达(TNF-α和IL-1β),促炎性类花生酸表达(前列腺素E2,PGE2)以及活性氧(ROS,超氧化物和H2O2)的释放具有表面的单元格。 THP-1细胞的形态和细胞活力不受DEX-Ag的影响,而DEX-Ag使PMA刺激的THP-1细胞的扩散最小化,并导致细胞活力降低(相对于其他表面而言,降低16%)。尽管DEX-Ag稍微增强了ROS的释放,但与其他研究表面相比,在PGE2水平相似的情况下,促炎细胞因子的表达仍保持最小。这些结果突出了DEX-Ag的低毒性,并有望在体内将来应用。

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