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Hydrophilic surface modification of acrylate-based biomaterials

机译:丙烯酸酯类生物材料的亲水性表面改性

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Acrylic polymers have proved to be excellent with regard to cell adhesion, colonization and survival, in vitro and in vivo. Highly ordered and regular pore structures thereof can be produced with the help of polyamide templates, which are removed with nitric acid. This treatment converts a fraction of the ethyl acrylate side groups into acrylic acid, turning poly(ethyl acrylate) scaffolds into a more hydrophilic and pH-sensitive substrate, while its good biological performance remains intact. To quantify the extent of such a modification, and be able to characterize the degree of hydrophilicity of poly(ethyl acrylate), poly(ethyl acrylate) was treated with acid for different times (four, nine and 17 days), and compared with poly(acrylic acid) and a 90/10%wt. EA/AAc copolymer (P(EA-co-AAc)). The biological performance was also assessed for samples immersed in acid up to four days and the copolymer, and it was found that the incorporation of acidic units on the material surface was not prejudicial for cells. This surface modification of 3D porous hydrophobic scaffolds makes easier the wetting with culture medium and aqueous solutions in general, and thus represents an advantage in the manageability of the scaffolds.
机译:丙烯酸聚合物在体外和体内的细胞粘附,定植和存活方面均被证明是极好的。可以借助聚酰胺模板制备高度有序且规则的孔结构,该聚酰胺模板可用硝酸除去。该处理将一部分丙烯酸乙酯侧基转化为丙烯酸,将聚丙烯酸乙酯支架转变为更具亲水性和pH敏感性的底物,同时保持其良好的生物学性能。为了量化这种修饰的程度并能够表征聚丙烯酸乙酯的亲水性程度,将聚丙烯酸乙酯用酸处理了不同的时间(四天,九天和十七天),并与(丙烯酸)和90/10%wt。 EA / AAc共聚物(P(EA-co-AAc))。还评估了浸泡在酸中长达四天的样品和共聚物的生物学性能,发现在材料表面掺入酸性单元不会损害细胞。 3D多孔疏水支架的这种表面修饰通常使得更容易用培养基和水溶液润湿,因此在支架的可管理性方面表现出优势。

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