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首页> 外文期刊>ACS applied materials & interfaces >Anti-inflammatory and Antibacterial Effects of Covalently Attached Biomembrane-Mimic Polymer Grafts on Gore-Tex Implants
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Anti-inflammatory and Antibacterial Effects of Covalently Attached Biomembrane-Mimic Polymer Grafts on Gore-Tex Implants

机译:在血压植入物上共价连接的生物膜 - 模拟聚合物移植物的抗炎和抗菌作用

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摘要

Expanded polytetrafluoroethylene (ePTFE), also known as Gore-Tex, is widely used as an implantable biomaterial in biomedical applications because of its favorable mechanical properties and biochemical inertness. However, infection and inflammation are two major complications with ePTFE implantations, because pathogenic bacteria can inhabit the microsized pores, without clearance by host immune cells, and the limited biocompatibility can induce foreign body reactions. To minimize these complications, we covalently grafted a biomembrane-mimic polymer, poly(2-methacryloyloxylethyl phosphorylcholine) (PMPC), by partial defluorination followed by UV-induced polymerization with cross-linkers on the ePTFE surface. PMPC grafting greatly reduced serum protein adsorption as well as fibroblast adhesion on the ePTFE surface. Moreover, the PMPC-grafted ePTFE surface exhibited a dramatic inhibition of the adhesion and growth of Staphylococcus aureus, a typical pathogenic bacterium in ePTFE implants, in the porous network. On the basis of an analysis of immune cells and inflammation-related factors, i.e., transforming growth factor-beta (TGF-beta) and myeloperoxidase (MPO), we confirmed that inflammation was efficiently alleviated in tissues around PMPC-grafted ePTFE plates implanted in the backs of rats. Covalent PMPC may be an effective strategy for promoting anti-inflammatory and antibacterial functions in ePTFE implants and to reduce side effects in biomedical applications of ePTFE.
机译:由于其有利的机械性能和生物化学惰性,膨胀的聚四氟乙烯(EPTFE)也被广泛用作生物医学应用中的可植入生物材料。然而,感染和炎症是ePTFE植入的两个主要并发症,因为致病细菌可以栖息于微态孔,而没有通过宿主免疫细胞的间隙,并且有限的生物相容性可以诱导异物反应。为了使这些并发症最小化,我们共价接枝一种通过部分偏荧光,然后通过eVE诱导的聚合与EPTFE表面上的紫外线诱导的聚合来接枝生物膜 - 模拟聚合物聚合物PMPC嫁接大大降低了血清蛋白吸附以及EPTFE表面上的成纤维细胞粘附。此外,PMPC接枝的EPTFE表面表现出对多孔网络中EPTFE植入物中典型的致病细菌的粘附性和生长的显着抑制。在分析免疫细胞和炎症相关因素的基础上,即转化生长因子 - β(TGF-β)和髓氧化酶(MPO),我们证实炎症在植入的PMPC接枝EPTFE板周围的组织中有效地缓解老鼠的背部。共价PMPC可以是促进EPTFE植入物中抗炎和抗菌功能的有效策略,并减少EPTFE生物医学应用中的副作用。

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