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PLLA Honeycomb-Like Pattern on Fluorinated Ethylene Propylene as a Substrate for Fibroblast Growth

机译:氟化乙烯丙烯上的PLLA蜂窝状图案作为成纤维细胞生长的基材

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摘要

In this study, we present the surface patterning of a biopolymer poly(l-lactide) (PLLA) for fibroblast growth enhancement. The patterning is based on a self-organized pore arrangement directly fabricated from a ternary system of a solvent-nonsolvent biopolymer. We successfully created a porous honeycomb-like pattern (HCP) on a thermally resistant polymer—fluorinated ethylene propylene (FEP). An important preparation step for HCP is activation of the substrate in Ar plasma discharge. The polymer activation leads to changes in the surface chemistry, which corresponds to an increase in the substrate surface wettability. The aim of this study was to evaluate the influence of the PLLA concentration in solution on the surface morphology, roughness, wettability, and chemistry, and subsequently, also on fibroblast proliferation. We confirmed that the amount of PLLA in solution significantly affects the material surface properties. The pore size of the prepared layers, the surface wettability, and the surface oxygen content increased with an increasing amount of biopolymer in the coating solution. The optimal amount was 1 g of PLLA, which resulted in the highest number of cells after 6 days from seeding; however, all three biopolymer concentrations exhibited significantly better results compared to pristine FEP. The cytocompatibility tests showed that the HCP promoted the attachment of cell filopodia to the underlying substrate and, thus, significantly improved the cell–material interactions. We prepared a honeycomb biodegradable support for enhanced cell growth, so the surface properties of perfluoroethylenepropylene were significantly enhanced.
机译:在这项研究中,我们介绍了生物聚合物聚(L-丙交酯)(PLLA)的表面图案,用于成纤维细胞生长增强。图案化基于由溶剂 - 非溶剂生物聚合物的三元系统直接制成的自组织孔布置。我们在耐热聚合物 - 氟化乙烯丙烯(FEP)上成功地创造了多孔蜂窝状图案(HCP)。 HCP的重要制备步骤是在AR等离子体放电中的衬底的激活。聚合物活化导致表面化学的变化,其对应于基板表面润湿性的增加。本研究的目的是评估PLLA浓度在溶液对表面形态,粗糙度,润湿性和化学的影响,以及随后的成纤维细胞增殖。我们证实,溶液中PLLA的量显着影响了材料表面性质。制备层的孔径,表面润湿性和表面氧含量随涂布溶液中的生物聚合物的增加而增加。最佳量为1g plla,从播种后6天后导致最多的细胞数量;然而,与原始FEP相比,所有三种生物聚合物浓度明显更好。细胞相容性试验表明,HCP促进了细胞丝透舱菌对底层基质的附着,因此显着改善了细胞材料相互作用。我们制备了蜂窝可生物降解的载体,用于增强细胞生长,因此全氟丙烯的表面性质显着提高。

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