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Surface grafting of carboxylic groups onto thermoplastic polyurethanes to reduce cell adhesion

机译:羧基表面接枝到热塑性聚氨酯上以减少细胞粘附

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摘要

The interaction of polymers with other materials is an important issue, being their surface properties clearly crucial. For some important polymer applications, their surfaces have to be modified. Surface modification aims to tailor the surface characteristics of a material for a specific application without affecting its bulk properties. Materials can be surface modified by using biological, chemical or physical methods. The aim of this work was to improve the reactivity of the thermoplastic polyurethane (TPU) material (Elastollan®) surface and to make its surface cell repellent by grafting carboxylic groups onto its surface. Two TPU materials were studied: a polyether-based TPU and a polyester-based TPU. The grafting efficiency was evaluated by contact angle measurements and by analytical determination of the COOH groups. Scanning electron microscopy (SEM) of the membranes surface was performed as well as cell adhesion tests. It was proved that the surfaces of the TPUs membranes were successfully modified and that cell adhesion was remarkably reduced.
机译:聚合物与其他材料的相互作用是一个重要的问题,因为它们的表面性能显然至关重要。对于某些重要的聚合物应用,必须对其表面进行改性。表面改性旨在针对特定应用定制材料的表面特性,而不影响其整体性能。可以使用生物,化学或物理方法对材料进行表面改性。这项工作的目的是提高热塑性聚氨酯(TPU)材料(Elastollan®)表面的反应性,并通过将羧基接枝到其表面上来使其表面具有细胞排斥性。研究了两种TPU材料:基于聚醚的TPU和基于聚酯的TPU。通过接触角测量和COOH基团的分析确定来评估接枝效率。进行膜表面的扫描电子显微镜(SEM)以及细胞粘附测试。事实证明,TPU膜的表面已成功改性,并且细胞粘附力显着降低。

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