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Evaluation of mechanism of non-thermal plasma effect on the surface of polypropylene films for enhancement of adhesive and hemo compatible properties

机译:评价聚丙烯薄膜表面非热等离子体效应的机理,以增强粘合剂和血液相容性

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The hydro-carbon based polymers have attracted attention of scientists for its use in bio-medical field as various implants due to inherent flexibility. However, they have poor surface properties; particularly they have low surface energy (SE). Hence, blood components (platelets, blood proteins, etc.)-polymer surface interaction is the major concern when it comes in contact with blood. Thus, surface modification is required to develop the perfect antithrombogenic property without affecting the materials bulk. The present study describes the improvement in adhesive and blood compatible properties of polypropylene (PP) by low temperature (non-thermal) plasma of various gases such as Ar, O-2, air and Ar + O-2 for biomedical applications. The changes in surface morphological, chemical and hydrophilic modification induced by the gaseous plasma treatment were analyzed by atomic force microscopy (AFM), X-ray photo electron spectroscopy (XPS), electron spin resonance (ESR) spectroscopy and contact angle measurements, respectively. Moreover, the stability of plasma effect was also studied for the different storage conditions. Variation in adhesive strength of the plasma treated PP film was studied by T-Peel and Lap-Shear strength tests. The blood compatibility of the surface modified PP films was investigated by in vitro analysis. It was found that gaseous plasma treatment improved the blood compatibility as well as adhesive strength of the PP films without affecting materials bulk which may be due to the significant morphological and chemical changes induced by the gaseous plasma treatment. Among the various gaseous plasma treatments, Ar + O-2 mixture has provided remarkable physico-chemical changes compared with other plasma treatments studied. (C) 2015 Elsevier B.V. All rights reserved.
机译:基于烃的聚合物由于其固有的柔韧性而在生物医学领域用作各种植入物而引起了科学家的注意。但是,它们的表面性能差。特别是它们的表面能(SE)低。因此,血液成分(血小板,血液蛋白质等)-聚合物表面相互作用是与血液接触时的主要问题。因此,需要进行表面改性以发展出理想的抗血栓形成特性而不影响材料的体积。本研究描述了生物医学应用中各种气体(例如Ar,O-2,空气和Ar + O-2)的低温(非热)等离子体对聚丙烯(PP)的粘合和血液相容性的改善。分别通过原子力显微镜(AFM),X射线光电子能谱(XPS),电子自旋共振(ESR)光谱和接触角测量分析了气态等离子体处理引起的表面形态,化学和亲水改性的变化。此外,还研究了不同存储条件下等离子体效应的稳定性。通过T-Peel和搭接剪切强度测试研究了等离子体处理的PP膜的粘合强度的变化。通过体外分析研究了表面改性PP膜的血液相容性。发现气态等离子体处理改善了PP膜的血液相容性以及粘合强度,而没有影响材料的体积,这可能是由于气态等离子体处理引起的显着的形态和化学变化。在各种气态等离子体处理中,与其他研究的等离子体处理相比,Ar + O-2混合物提供了显着的物理化学变化。 (C)2015 Elsevier B.V.保留所有权利。

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