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Plasma Surface Modification of Biomedical Polymers: Influence on Cell-Material Interaction

机译:生物医学聚合物的等离子体表面改性:对细胞-材料相互作用的影响

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摘要

Polymers are commonly used in industry because of their excellent bulk properties, such as strength and good resistance to chemicals. Their surface properties are for most application inadequate due to their low surface energy. A surface modification is often needed, and plasma surface modification is used with success the past decades. In the past few years, also plasma surface modification for biomedical polymers has been investigated. For biomedical polymers, the surface properties need to be altered to promote a good cell adhesion, growth and proliferation and to make them suitable for implants and tissue engineering scaffolds. This review gives an overview of the use of plasma surface modification of biomedical polymers and the influence on cell-material interactions. First, an introduction on cell-material interaction and on antibacterial and antifouling surfaces will be given. Also, different plasma modifying techniques used for polymer surface modification will be discussed. Then, an overview of literature on plasma surface modification of biopolymers and the resulting influence on cell-material interaction will be given. After an overview of plasma treatment for improved cell-material interaction, plasma polymerization and plasma grafting techniques will be discussed. Some more specialized applications will be also presented: the treatment of 3D scaffolds for tissue engineering and the spatial control of cell adhesion. Antibacterial and antifouling properties, obtained by plasma techniques, will be discussed. An overview of research dealing with antibacterial surfaces created by plasma techniques will be given, antifouling surfaces will be discussed, and how blood compatibility can be improved by preventing protein adhesion.
机译:聚合物由于其出色的体积特性(例如强度和良好的耐化学性)而在工业中得到普遍使用。由于它们的低表面能,它们的表面性质对于大多数应用来说是不足的。通常需要表面改性,并且在过去的几十年中成功地使用了等离子体表面改性。在过去的几年中,还研究了生物医学聚合物的等离子体表面改性。对于生物医学聚合物,需要改变其表面性质,以促进良好的细胞粘附,生长和增殖,并使它们适合植入物和组织工程支架。这篇综述概述了生物医学聚合物的等离子体表面改性的使用以及对细胞-材料相互作用的影响。首先,将介绍细胞与材料之间的相互作用以及抗菌和防污表面。同样,将讨论用于聚合物表面改性的不同等离子体改性技术。然后,将概述有关生物聚合物的等离子体表面改性及其对细胞-材料相互作用的最终影响的文献。在对用于改善细胞-材料相互作用的等离子体处理的概述之后,将讨论等离子体聚合和等离子体接枝技术。还将介绍一些更专业的应用:组织工程用3D支架的治疗和细胞粘附的空间控制。将讨论通过等离子体技术获得的抗菌和防污性能。将概述有关血浆技术产生的抗菌表面的研究概况,讨论防污表面,以及如何通过防止蛋白质粘附来改善血液相容性。

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