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Nonthermal Plasma Technology as a Versatile Strategy for Polymeric Biomaterials Surface Modification: A Review

机译:非热等离子体技术作为聚合物生物材料表面改性的多功能策略:综述

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摘要

In modern technology, there is a constant need to solve very complex problems and to fine-tune existing solutions. This is definitely the case in modern medicine with emerging fields such as regenerative medicine and tissue engineering. The problems, which are studied in these fields, set very high demands on the applied materials. In most cases, it is impossible to find a single material that meets all demands such as biocompatibility, mechanical strength, biodegradability (if required), and promotion of cell-adhesion, proliferation, and differentiation. A common strategy to circumvent this problem is the application of composite materials, which combine the properties of the different constituents. Another possible strategy is to selectively modify the surface of a material using different modification techniques. In the past decade, the use of nonthermal plasmas for selective surface modification has been a rapidly growing research field. This will be the highlight of this review. In a first part of this paper, a general introduction in the field of surface engineering will be given. Thereafter, we will focus on plasma-based strategies for surface modification. The purpose of the present review is twofold. First, we wish to provide a tutorial-type review that allows a fast introduction for researchers into the field. Second, we aim to give a comprehensive overview of recent work on surface modification of polymeric biomaterials, with a focus on plasma-based strategies. Some recent trends will be exemplified. On the basis of this literature study, we will conclude with some future trends for research.
机译:在现代技术中,有一个不断的需要解决非常复杂的问题和微调现有解决方案。这绝对是现代医学的案例,具有再生医学和组织工程等新兴领域。在这些领域研究的问题,在应用材料上设定了非常高的要求。在大多数情况下,不可能找到一个符合所有要求的单一材料,例如生物相容性,机械强度,生物降解性(如果需要)和促进细胞 - 粘附,增殖和分化。规避该问题的常见策略是应用复合材料,其结合了不同成分的性质。另一种可能的策略是使用不同的修改技术选择性地修改材料的表面。在过去十年中,使用非热等离子体用于选择性表面改性是一种快速增长的研究领域。这将是本次审查的亮点。在本文的第一部分,将给出表面工程领域的一般介绍。此后,我们将专注于基于等离子体的表面改性策略。目前审查的目的是双重。首先,我们希望提供一个教程类型的审查,允许将研究人员快速介绍进入该领域。其次,我们的目标是全面概述近期聚合物生物材料表面改性的工作,重点是基于等离子体的策略。将举例说明最近的一些趋势。在这项文献研究的基础上,我们将以一些未来的研究趋势得出结论。

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