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Plasma and chemical-induced graft polymerization on the surface of starch-based biomaterials aimed at improving cell adhesion and proliferation

机译:在淀粉基生物材料表面上的等离子体和化学诱导的接枝聚合旨在改善细胞粘附和增殖。

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摘要

Plasma and chemical induced graft polymerization of acrylic monomers on starch-based biomaterials has been performed with the aim to improve cell adhesion and proliferation on the surface of the polymers, in order to adequate their properties for bone tissue engineering scaffolding applications. Plasma and chemical surface activation was aimed to induce the polymerization of acrylic polar monomers being carried out by applying a radio frequency plasma and expose the samples to a mixture of Ar/O2, or by immersion in a H2O2/(NH4)2S2O8 solution with UV radiation, respectively. Both procedures were followed by the graft polymerization of the corresponding monomers. Polymer grafting was analyzed by Fourier transformed infrared spectroscopy (FTIR) and X-ray photoelectron spectroscopy (XPS) and by contact angle measurements. Properties such as mechanical performance, swelling degree, and degradation behavior, as well as bioactivity, have been studied and compared for the different activation methods. Finally, preliminary cell adhesion and proliferation tests were performed, using goat bone marrow cells, showing a remarkable improvement with respect to original non-surface modified starch-based biomaterials.
机译:等离子体和淀粉基生物材料的丙烯酸类单体的化学诱导接枝聚合法已经改善细胞粘附和增殖的聚合物的表面上,以足够的骨组织工程支架的应用程序属性的目的进行的。等离子体和化学表面活化的目的,以诱导通过施加射频等离子体正在开展丙烯酸极性单体的聚合并暴露样品的Ar / O 2的混合物,或通过在H 2 O 2与UV /(NH4)2S2O8溶液浸渍辐射,分别。两个程序如下由相应的单体的接枝聚合。聚合物接枝物通过傅里叶变换红外光谱(FTIR)和X-射线光电子能谱(XPS),并通过接触角测量进行分析。如机械性能,溶胀度和降解行为,以及生物活性的特性,进行了研究,对不同的激活方法相比。最后,进行了初步的细胞粘附和增殖的测试中,使用山羊骨髓细胞,示出相对于原始的非表面改性淀粉类的生物材料的显着的改善。

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