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Challenges in the Characterization of Plasma-Processed Three-Dimensional Polymeric Scaffolds for Biomedical Applications

机译:用于生物医学应用的等离子处理三维聚合物支架表征中的挑战

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摘要

Low-temperature plasmas offer a versatile method, for delivering tailored functionality to a range of materials. Despite the vast array of choices offered by plasma processing techniques, there remain a significant number of hurdles that must be overcome to allow this methodology to realize its full potential in the area of biocompatible materials. Challenges include issues associated with analytical characterization, material structure, plasma processing, and uniform composition following treatment. Specific examples and solutions are presented utilizing results from analyses of three-dimensional (3D) poly(ε-caprolactone) scaffolds treated with different plasma surface modification strategies that illustrate these challenges well. Notably, many of these strategies result in 3D scaffolds that are extremely hydrophilic and that enhance human Saos-2 osteoblast cell growth and proliferation, which are promising results for applications including tissue engineering and advanced biomedical devices.
机译:低温等离子体提供了一种通用方法,可为多种材料提供量身定制的功能。尽管等离子体处理技术提供了各种各样的选择,但仍存在许多必须克服的障碍,以使这种方法能够在生物相容性材料领域发挥其全部潜力。挑战包括与分析表征,材料结构,等离子处理以及处理后的均匀组成相关的问题。利用对采用不同等离子体表面改性策略处理的三维(3D)聚(ε-己内酯)支架的分析结果,给出了具体示例和解决方案,很好地说明了这些挑战。值得注意的是,这些策略中的许多策略都导致3D支架具有极强的亲水性,并增强了人类Saos-2成骨细胞的生长和增殖,这对于包括组织工程和先进生物医学设备在内的应用是有希望的结果。

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