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首页> 外文期刊>Polymer Degradation and Stability >Honeycomb-patterned poly(L-lactic) acid on plasma-activated FEP as cell culture scaffold
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Honeycomb-patterned poly(L-lactic) acid on plasma-activated FEP as cell culture scaffold

机译:蜂窝状仿形聚(L-乳酸)酸血浆激活的FEP作为细胞培养支架

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The main aim of our work was to design a simple approach for preparation of a specific pattern with a honeycomb-like structure on a solid polymer substrate and to evaluate its cytocompatibility. We have chosen poly-(L-lactic) acid (PLLA) as a source material for formation of the honeycomb-like pattern and perfluorethylenepropylene (FEP) as underlying substrate material. The PLLA pattern formation was induced by improved phase separation with application of a dip-coating technique. Surface morphology, chemistry and wettability of the patterned structure were strongly affected by the initial pretreatment parameters of the FEP substrate, i.e., by the plasma power and exposure time. The pattern formation was unsuccessful without plasma pretreatment. Surface morphology of the PLLA pattern was studied by both of atomic force and scanning electron microscopies. Surface chemistry was analyzed by energy dispersive spectroscopy. The wettability and ability to change electrolyte flow, which might be important for cell-material interaction, were studied by goniometry and zeta-potential, respectively. Due to the morphology and roughness of the prepared pattern, human cells derived from osteosarcoma (U-2 OS) were chosen to evaluate the material cytocompatibility WST-1 assay. Moreover, morphology of cells growing on the honeycomb-like pattern was studied in detail by fluorescence and scanning electron microscopies. We have been able to determine such combination of substrate plasma pre-treatment and honeycomb-like pattern formation on the basis of different amount of target material (PLLA) that led to construction of an excellent scaffold for U-2 OS cell culture.
机译:我们作品的主要目的是设计一种在固体聚合物基材上用蜂窝状结构制备特定模式的简单方法,并评估其细胞偶联性。我们已经选择了聚 - (L-乳酸)酸(PLLA)作为形成蜂窝状的图案和全氟丙烯(FEP)作为底层基底材料的源材料。通过施加浸涂技术改善的相分离诱导PLLA图案形成。图案化结构的表面形态,化学和润湿性受到FEP衬底的初始预处理参数的强烈影响,即通过等离子体功率和暴露时间。没有等离子体预处理,图案形成不成功。通过原子力和扫描电子显微镜研究了PLLA图案的表面形态。通过能量分散光谱分析表面化学。通过焦管法和Zeta-潜力分别研究了改变电解质流量的润湿性和改变电解质流动的能力,这对于细胞材料相互作用。由于制备的图案的形态和粗糙,选择了源自骨肉瘤(U-2 OS)的人细胞以评价材料细胞偶联性WST-1测定。此外,通过荧光和扫描电子显微镜详细研究了生长在蜂窝状图案上的细胞的形态学。我们能够基于不同量的靶材料(PLLA)来确定这种基底等离子体预处理和蜂窝状样图案形成的这种组合,其导致U-2 OS细胞培养的优异支架的构建。

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