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β-Phase poly(vinylidene fluoride) films encouraged more homogeneous cell distribution and more significant deposition of fibronectin towards the cell-material interface compared to α-phase poly(vinylidene fluoride) films

机译:与α相聚偏二氟乙烯薄膜相比,β相聚偏二氟乙烯薄膜鼓励更均匀的细胞分布和纤连蛋白向细胞-材料界面的更显着沉积

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摘要

The piezoelectric response from p-phase poly(vinylidene fluoride) (PVDF) can potentially be exploited for biomedical application. We hypothesized that α and β-phase PVDF exert direct but different influence on cellular behavior. α- and β-phase PVDF films were synthesized through solution casting and characterized with FT-IR, XRD, AFM and PFM to ensure successful fabrication of a and p-phase PVDF films. Cellular evaluation with L929 mouse fibroblasts over one-week was conducted with AlamarBlue~® metabolic assay and PicoGreen~® proliferation assay. Immunostaining of fibronectin investigated the extent and distribution of extracellular matrix deposition. Image saliency analysis quantified differences in cellular distribution on the PVDF films. Our results showed that β-phase PVDF films with the largest area expressing piezoelectric effect elicited highest cell metabolic activity at day 3 of culture. Increased fibronectin adsorption towards the cell-material interface was shown on β-phase PVDF films. Image saliency analysis showed/that fibroblasts on β-phase PVDF films were more homogeneously distributed than on α-phase PVDF firms. Taken collectively, the different molecular packing of α and β-phase PVDF resulted in differing physical properties of films, which in turn induced differences in cellular behaviors. Further analysis of how α and β-phase PVDF may evoke specific cellular behavior to suit particular application will be intriguing.
机译:来自p相聚偏二氟乙烯(PVDF)的压电响应可潜在地用于生物医学应用。我们假设α和β相PVDF对细胞行为具有直接但不同的影响。通过溶液浇铸合成了α相和β相PVDF膜,并通过FT-IR,XRD,AFM和PFM对其进行了表征,以确保成功制备a相和p相PVDF膜。使用AlamarBlue®代谢检测和PicoGreen®增殖检测对L929小鼠成纤维细胞进行了为期一周的细胞评估。纤连蛋白的免疫染色研究了细胞外基质沉积的程度和分布。图像显着性分析量化了PVDF薄膜上细胞分布的差异。我们的结果表明,在培养的第3天,具有最大面积表达压电效应的β相PVDF膜引起最高的细胞代谢活性。在β相PVDF膜上显示出纤连蛋白向细胞-材料界面的吸附增加。图像显着性分析显示/β相PVDF膜上的成纤维细胞比α相PVDF膜上的成纤维细胞分布更均匀。总体而言,α相和β相PVDF的分子堆积不同会导致薄膜的物理特性不同,从而引起细胞行为的差异。有趣的是,对α相和β相PVDF如何引起特定细胞行为以适合特定应用的进一步分析。

著录项

  • 来源
    《Materials science & engineering》 |2014年第1期|345-353|共9页
  • 作者单位

    School of Materials Science and Engineering, Nanyang Technological University, N4.1 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, N4.1 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Computer Engineering, Nanyang Technological University, N4 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, N4.1 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Computer Engineering, Nanyang Technological University, N4 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, N4.1 50 Nanyang Avenue, Singapore 639798, Singapore;

    School of Materials Science and Engineering, Nanyang Technological University, N4.1 50 Nanyang Avenue, Singapore 639798, Singapore;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Poly(vinylidene fluoride); Polymorphism; Cell-material interaction; Biomaterial;

    机译:聚偏二氟乙烯;多态性细胞-物质相互作用;生物材料;

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