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首页> 外文期刊>Reactive & Functional Polymers >Surface modification of a synthetic polyurethane by plasma glow discharge: Preparation and characterization of bioactive monolayers
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Surface modification of a synthetic polyurethane by plasma glow discharge: Preparation and characterization of bioactive monolayers

机译:通过等离子辉光放电对合成聚氨酯进行表面改性:生物活性单层的制备和表征

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摘要

In the present study, a surface functionalization of a synthetic polyurethane was carried out by using biofunctional moieties to obtain a material with the appropriate mechanical properties and processing conditions and, at the same time, the advantages of a bioactive material. The polyurethane (PU) was synthesised from poly(e-caprolactone) diol,1,6-diisocy-anatohexane and 1,4-cyclohexane dimethanol as chain extender. PU films were grafted with acrylic acid using argon plasma. The carboxyl groups formed were used to covalently bind model biomimetic/bioactive macromolecules (gelatine and poly (t-lysine). All characterizations (attenuated total reflection Fourier transform infrared spectroscopy, ATR-FTIR; X-ray photoelectron spectroscopy, XPS; atomic force microscopy, AFM; scanning electron microscopy, SEM) confirmed the surface changes at each stage of treatment, both in morphology and in chemical composition. Besides, achieved treatment allowed to obtain a very thin layer of both PAA and macromolecules. Moreover, preliminary in vitro tests were performed using NIH-3T3 fibroblasts as cell model. Both materials showed to support cell adhesion and growth, with poly (l-lysine) performing better in activating cellular processes, as it can be seen by cell shape, which appears elongated on poly (l-lysine) coating, whereas on gelatine, cells are more spherical and not uniformly distributed on the polymer surface.
机译:在本研究中,通过使用生物功能部分对合成聚氨酯进行表面功能化,以获得具有适当机械性能和加工条件以及生物活性材料优点的材料。聚氨酯(PU)是由聚(ε-己内酯)二醇,1,6-二异环氧基-正己烷和1,4-环己烷二甲醇作为扩链剂合成的。使用氩等离子体将PU膜接枝丙烯酸。所形成的羧基用于共价结合模型仿生/生物活性大分子(明胶和聚(t-赖氨酸)。所有特征(衰减全反射傅立叶变换红外光谱,ATR-FTIR; X射线光电子能谱,XPS;原子力显微镜) ,AFM;扫描电镜,SEM)证实了在每个处理阶段的表面变化,无论是形态还是化学组成,此外,所进行的处理还可以得到非常薄的PAA和大分子层。我们使用NIH-3T3成纤维细胞作为细胞模型进行了研究。两种材料均显示出支持细胞黏附和生长的特性,其中聚(l-赖氨酸)在激活细胞过程中表现更好,从细胞形状可以看出,在聚( l-赖氨酸)涂层,而在明胶上,细胞更球形,并且不均匀分布在聚合物表面。

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