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首页> 外文期刊>Biomacromolecules >Cellulose Nanofiber Alignment Using Evaporation-Induced Droplet-Casting, and Cell Alignment on Aligned Nanocellulose Surfaces
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Cellulose Nanofiber Alignment Using Evaporation-Induced Droplet-Casting, and Cell Alignment on Aligned Nanocellulose Surfaces

机译:使用蒸发诱导的液滴铸造的纤维素纳米纤维对齐,以及对准纳米纤维素表面的细胞比对

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摘要

This work investigates droplet-evaporated cellulose nanofiber (CNF) alignment and cell responses on CNF surfaces. Surfaces of unmodified (u-), anionic (a-), and cationic (c-) CNFs were fabricated using an evaporation-induced droplet casting method and characterized in terms of degree of orientation. Circular variance (CV) values obtained using Cytospectre software to analyze the degree of orientation from AFM images showed a significantly higher degree of orientation on c- and u-CNF/surfaces (average CV 0.27 and 0.24, respectively) compared to a-CNF surfaces (average CV 0.76). Quantitative analysis of surface roughness plots obtained from AFM images confirmed the difference between the direction of alignment versus the direction perpendicular to alignment. AFM images as well as observations during droplet evaporation indicated c-CNF alignment parallel to a dry-boundary line during droplet evaporation. Fibroblasts were cultured on the u-, a-, and c-CNF surfaces with or without a fibronectin (FN) coating for 48 h, and the cell response was evaluated in terms of cell viability, proliferation, morphology, and degree of orientation. Cell viability and proliferation were comparable to that on a control surface on the a-CNF and c-CNF surfaces. Although an FN coating slightly enhanced cell growth on the studied surfaces, uncoated a-CNF and c-CNF surfaces were able to support cell growth as well. The results showed cell orientation on aligned c-CNF surfaces, a finding that could be further utilized when guiding the growth of cells. We also showed that the alignment direction of c-CNFs and thus the cell orientation direction can be controlled with a contact-dispensing technique.
机译:该工作研究了在CNF表面上的液滴蒸发的纤维素纳米纤维(CNF)对准和细胞响应。使用蒸发诱导的液滴浇铸方法制造未修饰(U-),阴离子(A-)和阳离子(C-)CNF的表面,并以取向程度为特征。使用CytopectRe软件获得的圆形方差(CV)与A-CNF表面相比,使用CytopectStre软件分析来自AFM图像的取向程度(分别的平均CV 0.27和0.24)显示出明显较高程度的取向程度(平均CV 0.76)。从AFM图像获得的表面粗糙度图的定量分析证实了对准方向与垂直于对准的方向之间的差异。 AFM图像以及在液滴蒸发期间观察结果,指示在液滴蒸发期间平行于干边线的C-CNF对准。在具有或没有纤连蛋白(Fn)涂层的U-,A-和C-CNF表面上培养成纤维细胞,在48小时内培养,并且在细胞活力,增殖,形态和取向度方面评价细胞响应。细胞活力和增殖与A-CNF和C-CNF表面上的对照表面上的相当。尽管FN涂层略微增强所研究的表面上的细胞生长,但是未涂覆的A-CNF和C-CNF表面也能够支持细胞生长。结果显示在对准的C-CNF表面上的细胞取向,在引导细胞生长时可以进一步使用的发现。我们还表明,C-CNFS的对准方向和因此可以用接触分配技术控制细胞取向方向。

著录项

  • 来源
    《Biomacromolecules 》 |2017年第12期| 共18页
  • 作者单位

    Tampere Univ Technol BioMediTech Inst Korkeakoulunkatu 3 Tampere 33720 Finland;

    Tampere Univ Technol BioMediTech Inst Korkeakoulunkatu 3 Tampere 33720 Finland;

    Tampere Univ Technol Lab Automat &

    Hydraul Korkeakoulunkatu 3 Tampere 33720 Finland;

    VTT Tech Res Ctr Finland Biologinkuja 7 Espoo 02150 Finland;

    Tampere Univ Technol BioMediTech Inst Korkeakoulunkatu 3 Tampere 33720 Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
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