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PLASMA-ENHANCED SURFACE MODIFICATION OF BIOPOLYMERS

机译:等离子体增强生物聚合物的表面改性

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Recent advances in polymer surface science have been largely due to the well-recognized need to control the surface properties of polymer materials and the development of sophisticated surface-specific characterization techniques. While the majority of the research and development efforts have been mostly focused on bulk properties, demands for low surface energy polymers exhibiting low adhesion (friction) and good biocompatibility have generated significant interest on physical and chemical properties of polymer surfaces. For instance, ultra-high molecular weight polyethylene (UHMWPE) and low-density polyethylene (LDPE) are the principal materials used to replace damaged cartilage in total joint arthroplasty and to fabricate catheters for balloon angioplasty, respectively. Therefore, surface treatments to improve adhesion and biocompatibility of these polymer surfaces are of paramount importance in the medical field. Radio frequency (rf) plasma-enhanced surface modification (PESM) provides an effective means for altering the biochemical properties of polymer surfaces without affecting the bulk behavior. The main process steps of PESM are discussed here and its effectiveness is demonstrated by representative friction coefficient, contact angle, and biocompatibility results for LDPE and UHMWPE surfaces treated with various plasma chemistries.
机译:聚合物表面科学的最新进展很大程度上归因于人们对控制聚合物材料的表面性能的公认需求,以及复杂的表面特定的表征技术的发展。尽管大多数研究和开发工作主要集中在体积特性上,但对表现出低粘合力(摩擦力)和良好生物相容性的低表面能聚合物的需求引起了人们对聚合物表面物理和化学特性的极大兴趣。例如,超高分子量聚乙烯(UHMWPE)和低密度聚乙烯(LDPE)是分别用于置换全关节置换术中受损软骨和制造用于球囊血管成形术的导管的主要材料。因此,在医学领域中,改善这些聚合物表面的粘附性和生物相容性的表面处理至关重要。射频(rf)等离子体增强的表面改性(PESM)提供了一种有效的方法,可在不影响整体性能的情况下改变聚合物表面的生化特性。本文讨论了PESM的主要工艺步骤,并通过代表性的摩擦系数,接触角和用各种等离子体化学处理的LDPE和UHMWPE表面的生物相容性结果证明了其有效性。

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